Friday, October 19, 2012

CHAPTER ON FLY ASH FOR GRADUATE ( CIVIL ENGINEERING ) COURSE STUDENTS

CHAPTER ON FLY ASH FOR GRADUATE ( CIVIL ENGINEERING ) COURSE STUDENTS Subhash Chandra Sr Head AUD NTPC Limited Noida Office

Fly Ash - A Resource Material

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1. Fly ash Introduction

1. 1. General 1. 2. Production and Regularity 1. 3. History of Fly Ash Utilization 1. 4. Properties of Fly Ash 1. 5. Geo - scientific Properties 1. 6. Chemical Properties 1. 7. Quality of Fly Ash as per BIS, ASTM

2. Main avenues for use of fly ash

2. 1Cement concrete and ballista 2. 2Fill Material - Road and embankments construction 2. 3Reclaim desert 2. 4Mine filling 2. 5Bricks, blocks and tiles Manufacturing 2. 6Agricultural soil 2. 7Ash Dykes 2. 8Autoclaved Aerated Concrete 2. 9Lightweight aggregates 2. 10Cenosphere

3. Legal Issues - Ash Utilization

4. Ultra Successful examples

5. Conclusion

1Fly Ash Introduction 1. 1General

The Fly ash talk sounds its own significance i. e. material which flies along with gases and ash - a residue of burnt material. This alias is used for residue of slate which is used as pulverized fuel for engendering of electricity in close power station. In present life style electricity has become one of the most important part of month to stretch of human life. For engendering of electricity jet is stretching to be used as a large source of fuel in many countries in the World including India. In the process of electricity generation, immense quantity of fly ash gets produced and becomes available as a by - product of pitch - based power stations.

Fig. 1: Fly Ash mound Fig. 2: Fly Ash - microscopic look

1. 2Production and Categorization

In lukewarm power station, pulverized sable is fed into boiler furnace, following burning; the lighter and more valuable particles fly along with sweltry flue gases which are passed through Electrostatic Precipitators ( ESP ). In ESP these particles are arrested and forasmuch as taken out either pneumatically to a storage silos in dry framework or sluiced through with water and sent to ash ponds. The particles effortless in ESP are called Fly Ash. It is consequently disimpassioned by either using electrostatic precipitators, baghouses or a combination of both.

There are four categories of Ash normally available from a sable based roasting power station. a. Fly Ash: This old softie of ash is composed from individual rows of Electro - Static Precipitators ( ESP ) in dry form. This is characterized by comparatively lower carbon content and higher faith. Faithfulness of fly ash is more in subsequent field of ESP as compared to initial fields. This ash comprises about 80 % of total ash produced in a station. b. Bottom Ash: This gracious of ash is light at the bottom of Boiler furnace as a decision of sooty burning animation. This is characterized by comparatively higher carbon content and coarse size. This comprises about 20 % of total ash produced in a station. c. Lagoon Ash: The slurry formed abutting mixing ash with water is pumped to the nearby ash ponds wherein water gets done in away. The ash accordingly stored in ash ponds is called Pool Ash. d. Mound Ash: Fly ash conveyed in dry profile and deposited dry in mounds.

1. 3History of Fly Ash Utilization

Utilization of fly ash is not a new phenomenon rather it is about seven decades senescent. The fly ash became available in starless based melting power station in the year 1930 in USA. In order to find out its properties, scientist started research activities and in the year 1937, R. E. Davis and his associates at university of California published research details on use of fly ash in cement concrete. This research had laid foundation for its specification, testing & usages. The research had established that fly ash possesses specific property called as pozzolanic property which was matching to volcanic ash and deserves to appropriate in lime / cement concrete works.

The pozzolanic property of a substance is defined as - A Siliceous or Siliceous and Aluminous material, which in itself possesses truncated or no cementitious value but will, in finely divided embodiment and in the matter of moisture, chemically behave with calcium hydroxide at ordinary temperatures to cut compounds possessing cementitious properties.

The pozzolana term came from Roman city. About 2, 000 years ago, Roman used volcanic ash along with lime and fawn to produce mortars, which possesses superior strength characteristics & resistances to corrosive water. The best variety of this volcanic ash was obtained from the locality of pozzoli and inasmuch as the volcanic ash had acquired the pseudonym of Pozzolana. The investigations had also established that the geo - technical properties of fly ash are agnate or better than many of the soils and can be utilized for structural fill & rampart construction substituting soil.

In India, to establish more uses of fly ash produced from Indian sombre, research activities were sustained at various research institutes of Council of Scientific and Industrial Research ( CSIR ) like Central Condominium Research Institute, Roorkee, Central Institute for Mining Fuel Research Institute, Dhanbad, Central Road Research Institute, New Delhi etc and other Institutes like National Council for Cement & Crash pad Materials, Ballabhgarh, IIT Kanpur, IIT Chennai, NTPC ( R&D ) etc. Studies have extensive that fly ash can be used in manufacture clay ash bricks, fly ash lime / cement bricks and other condo products, in agriculture, road embankments construction and fill applications.

1. 4Properties of Fly Ash

Fly ash is mosaic material having wide radius of chemical, certain and mineralogical compositions. The chemical composition of fly ash depends on the type of melanoid burnt in boiler furnace, oil firing, oxygen flow temperature of furnace, degree of pulverization of onyx, efficiency of ESP etc. Corporeal properties of fly ash agnate as excellence or particle size, reactivity with lime / cement etc depends on design and efficiency of boiler, embers process, charcoal grinding techniques swamped, process of ash collection and handling method and efficiency of Electrostatic Precipitator etc.

1. 5Geo - practical Properties

The majority of fly ash particles are glassy, solid or cave, slightly to highly porous and spherical in shape. The specific purport cascade within the gamut of 2. 1 to 2. 6 and dry density is commonly originate to be in the compass of 950 - 1200 kg / m3 depending on the degree of compaction. The particle size of fly ash often ranges from 1 micron to 100 micron in calibre of glassy spheres and 7 to 300 microns in calibre for angular carbon particles. In terms of soil grain size analysis, most fly ash particles fall within the silt radius, with small percentages in the fine neutral and clay sizes.

Table 1: Geo - scientific properties of Fly Ash

Specific accent g / cc1. 90 - 2. 55 PlasticityNon Plastic Proctor compaction - Extreme dry density ( g / cc ) 0. 90 - 1. 60 Culminating moisture content ( % ) 38. 0 - 18. 0 Angle of internal friction ( o ) 300 - 400 Cohesion ( kg / cm2 ) Negligible Compression index0. 05 - 0. 4 Permeability ( cm / sec ) 105 - 103 Particle size aligning Clay size subdivision ( % ) Silt size sector ( % ) Buff size meed ( % ) Gravel size measure ( % ) 1 - 10 8 - 85 7 - 90 0 - 10 Coefficient of uniformity3. 1 - 10. 7

1. 6Chemical Properties

The main constituents of most of the fly ashes are Silica ( SiO2 ), alumina ( ( Al2O3 ), ferric oxide ( Fe2O3 ) and calcium oxide ( CaO ). The other minor constituent of the fly ash are MgO, Na2O, K2O, SO3, MnO, TiO2 and unburnt carbon. There is wide radius of variation in the principal constituents - Silica ( 25 - 60 % ), Alumina ( 10 - 30 % ) and ferric oxide ( 5 - 25 % ). When the number of these three principal constituents is 70 % or more and reactive calcium oxide is less than 10 % - technically the fly ash is considered as Siliceous fly ash and also called as Class F fly ash. Corresponding type of fly ash is produced by burning of anthracite or bituminous murky. Siliceous fly ash characteristically contains a large part of silicate glass of high silica content and crystalline phases of low reactivity mullite, electromagnet and quartz. The active constituents of this type of fly ash is siliceous or alumino - silicate glass. If the quota of these three constituents is equal or less than 70 % and reactive calcium oxide is not less than 10 %, fly ash will be considered as Calcareous fly ash and also called as Class C fly ash. This type of fly ash is commonly produced by burning of lignite or sub - bituminous atramentous and possesses self longitude property coincidental to cement.

Viand 2: Chemical composition

ComponentBituminous Sub bituminous Lignite

SiO2 ( % ) 20 - 6040 - 6015 - 45 Al2O3 ( % ) 5 - 3520 - 3020 - 25 Fe2O3 ( % ) 10 - 404 - 104 - 15 CaO ( % ) 1 - 125 - 3015 - 40 LOI ( % ) 0 - 150 - 30 - 5

1. 7Quality of Fly Ash as per BIS, ASTM

To profit by fly ash as a Pozzolana in cement concrete and cement ballista, Bureau of Indian Standards ( BIS ) has formulated IS: 3812 Part - 1 2003. In this code quality requirement for siliceous fly ash and calcareous fly ash with regard its chemical and palpable composition has been urgent. These requirements are addicted as below.

Handout 3: Chemical Requirements of fly ash as a Pozzolana in cement concrete and cement catapult as per Bureau of Indian Standards ( BIS )

S. No. CharacteristicsRequirements Siliceous fly ashCalcareous fly ash 1Silicon dioxide ( SiO2 ) + Aluminium oxide ( Al2O3 ) + Iron oxide ( Fe2O3 ), in percent my mass, minimum7050 2Silicon dioxide in percent my mass, minimum3525 3Reactive silica in percent my mass, minimum ( Wanton test ) 2020 4Magnesium Oxide ( MgO ), in percent my mass, max. 5. 05. 0 5Total sulphur as sulphur trioxide ( SO3 ), in percent my mass, max. 3. 03. 0 6Available alkalis as sodium oxide ( Na2O ), in percent my mass, max. 1. 51. 5 7Total chlorides in percent my mass, max0. 050. 05 8Loss on Ignition, in percent my mass, max. 5. 05. 0

Feed 4: Certain Requirements of fly ash as a Pozzolana in cement concrete and cement trebuchet as per Bureau of Indian Standards ( BIS )

S. No. CharacteristicsRequirements Siliceous fly ash and Calcareous fly ash 1Fineness - Specific surface in m2 / kg by Blaine ' s permeability method, Min. 320

2Particles retained on 45 micron IS sieve ( wet sieving ) in percent, Max. ( Random Examination ) 34 3Lime reactivity - Average compressive strength in N / mm2, Min4. 5

4Compressive strength at 28 days in N / mm2, Min. Not less than 80 percent of the strength of corresponding plain cement ballista cubes 5Soundness by autoclave investigation - Expansion of specimen in percent, Max. 0. 8

ASTM International for fly ash: ASTM International C - 618 - 03 specifies the chemical composition and unfeigned requirements for fly ash to be used as mineral admixture in concrete. The standards requirements are apt as below.

Subsistence 5: Chemical Requirements of fly ash as a Pozzolana in cement concrete and cement ballista as per ASTM International

S. No. CharacteristicsRequirements Class F ( Siliceous fly ash ) Class C ( Calcareous fly ash ) 1Silicon dioxide ( SiO2 ) + Aluminium oxide ( Al2O3 ) + Iron oxide ( Fe2O3 ), in percent my mass, minimum7050 2Sulfur trioxide ( SO3 ), max. Percent5. 05. 0 3Moisture content, max., percent3. 03. 0 4Loss on ignition, max., percent6. 06. 0

Take out 6: Unaffected Requirements of fly ash as a Pozzolana in cement concrete and cement catapult as per ASTM International

S. No. CharacteristicsRequirements for class F & class C fly ash 1Fineness - amount retained when wet - sieved on 45 micron ( No. 325 ) sieve, Max., percent. 34

2Strength exertion brochure oWith portland cement, at 7 days, min., percent of control oWith portland cement, at 28 days, min., percent of control75c

75c 3Water requirement, max., percent of control105

4Soundness Autoclave expansion or contraction, max., percent0. 8 5Uniformity requirements: The density and uprightness of individual samples shall not vary from the average established by ten recent tests, or by all past tests if the amount is less than ten, by more than Density ( max. ) variation from average percent. Percent retained on 45 micron ( no. 325 ), max variation, scale points from average

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2Main avenues for use of fly ash

2. 1Cement concrete and arbalest 2. 2Fill Material - Road and embankments construction 2. 3Reclaim dry 2. 4Mine filling 2. 5Bricks, blocks and tiles Manufacturing 2. 6Agricultural soil 2. 7Ash Dykes 2. 8Autoclaved Aerated Concrete ( AAC ) 2. 9Lightweight aggregates 2. 10Cenosphere

2. 1Using fly ash in cement concrete and ballista

Portland Pozzolana Cement fly ash based is manufactured either by intimately intergrinding Portland cement clinker and fly ash with addition of gypsum or calcium sulphate or by intimately and uniformly blending with OPC and fine fly ash. The pozzolanic property of fly ash makes it suitable as raw material for manufacture of PPC. IS: 1489 Part - 1 - 1991 ( Reaffirmed 2005 ) is BIS specification for this cement. As per the BIS specification, fly ash constituent shall not be less than 15 percent and not more than 35 percent by mass of Portland Pozzolana Cement.

Portland Pozzolana cement produces less heat of hydration and offer greater resistance to the attack of productive waters than Ordinary Portland Cement. It is particularly useful in nautical and hydraulic construction and other mass construction structures. This cement is equivalent to Ordinary Portland cement on the basis of the 28 days and supreme compressive strength. Use of fly ash in cement manufacturing helps to conserve coarse material commensurate lime stone, clay etc and also conserve atramentous required for clinkerization for manufacture of cement clinker. During this process generation of CO2 is also played out, therefrom, eco - friendly.

It may be noted that, Bureau of Indian Standard also permits use of Fly ash up to 5 % as a Performance Improver in the manufacturing of 33 grade, 43grade and 53grade of Ordinary Portland Cement.

2. 1. 1How fly ash woks with cement?

Fly ash being a pozzolanic material is establish to be useful for part replacement of Ordinary Cement in cement concrete and Catapult. In the concrete, cement chemically reacts with water and produces strength bearing gels called as C - H - S gels that binds other component together and maintain strength to concrete and creates strength bearing materials. The reaction process is called ' hydration ' of cement. In this process some amount of lime [Ca ( OH ) 2] is also liberated. Fly ash available in concrete reacts with this lime and forms more homogeneous strength bearing gel which provides strength to concrete. As we know Ordinary Portland Cement ( OPC ) is a product of four principal mineralogical phases. These phases are Tricalcium Silicate - C3S ( 3CaO. SiO2 ), Dicalcium Silicate - C2S ( 2CaO. SiO2 ), Tricalcium Aluminate - C3A ( 3CaO. Al2O3 ) and Tetracalcium alumino - ferrite - C4AF ( 4CaO. Al2O3Fe2O3 ). The where and hardening of the OPC takes hole as a termination of reaction between these principal compound and water [H2O ( H ) ] as shown under:

2C3S + 6H = C3S2H3 + 3CH ( tricalcium silicate ) water ( C - S - H gel ) ( Calcium hydroxide ) 2C2S + 4H = C3S2H3 + CH ( dicalcium silicate ) ( water ) ( C - S - H gel ) ( Calcium hydroxide )

The hydration products from C3S and C2S are identical but amount of calcium hydroxide ( lime ) released is higher in C3S as compared to C2S. The reaction of C3A with water takes zone in corporeality of sulphate ions supplied by afterlife of gypsum present in OPC. This reaction is very fast and shown under:

C3A + 3 ( CSH2 ) + 26H =C3A ( CS ) 3H22 ( tricalcium Aluminate ( gypsum ) ( water ) ( ettringite )

C3A + CSH2 + 10H =C3ACSH2

( monosulphoaluminate hydrate ) ( S - SiO2, C - CaO, A - Al2O3, F - Fe2O3 )

Tetracalcium alumino - ferrite forms hydration product uniform to those of consonant of C3A, with iron substituting partially for alumina in the fine structures of ettringite and mono sulpho - aluminate hydrate.

Superior reaction indicate that during the hydration process of cement, lime is released out and remains as redundant in the hydrated cement. This leached out gratuitous lime renders deleterious effects to concrete agnate as make the concrete porous, subsidize chance to the development of micro - cracks, weakening the bond with aggregates and since affects the durability of concrete.

If fly ash is available in the mix, this futile lime becomes the source for pozzolanic reaction with fly ash and forms additional C - S - H gel having agnate binding properties in the concrete as those product by hydration of cement pulp. The reaction of fly ash with undesirable lime continues as long as lime is present in the pores of juice cement. The process is illustrated as below.

2. 1. 2Advantage of use of Fly ash with concrete

Fly ash concrete3 was as early as used in the U. S. for the Hoover Dam, where engineers begin that it allowed for less total cement. It is now used across the world. Consisting largely of silica, alumina and iron, fly ash is a pozzolana substance containing aluminous and silicious material that forms cement in the palpability of water. When mixed with lime and water it forms a compound uniform to portland cement. The spherical shape of the particles reduces internal friction thereby increasing the concrete ' s consistency and workability, permitting longer pumping distances. Improved workability means less water is needed, resulting in less segregation of the compound.

( i ) Pauperized Heat of Hydration

In concrete blend, when water and cement come in contact, a chemical reaction initiates that produces binding material and consolidates the concrete mass. The process is exothermic and heat is released which increases the temperature of the mass. The vast temperature rise of concrete mass exerts temperature stresses and can model to formation of micro cracks. When fly ash is used as part of cementitious material, molecule of heat liberated is low and staggers through pozzolanic reactions and thus reduces micro - cracking and improves soundness of concrete mass. ( ii ) Improved Workability of Concrete Fly ash particles are generally spherical in shape; this gives a ball bearing effect to the mixing of aggregates & cement. This way part mixing is achieved and leads for reduced water requirements for a given slump. The spherical shape helps to reduce friction between aggregates and between concrete and pump line and thus increases workability and improve pumpability of concrete. Fly ash use in concrete increases volume of fines and decreases water content and thus reduces bleeding of concrete. ( iii ) Reduced Permeability & increased corrosion protection Water is essential constituent of concrete preparation. When concrete is hardened, part of the entrapped water in the concrete mass is consumed by cement mineralogy for hydration. Some part of entrapped water evaporates, thus leaving porous channel to the extent of volume occupied by the water. Some part of this porous volume is filled by the hydrated products of the cement paste. The remaining part of the voids consists capillary voids and give way for ingress of water. Similarly, the liberated lime by hydration of cement is water - soluble and is leached out from hardened concrete mass, leaving capillary voids for the ingress of water. Higher the water cement ratio, higher will be the porosity and thus higher will be the permeability. The permeability makes the ingress of moisture and air easy and is the cause for corrosion of reinforcement. Higher permeability facilitate ingress of chloride ions into concrete and is the main cause for initiation of chloride induced corrosion. Additional cementitious material results from reaction between liberated surplus lime and fly ash, blocks these capillary voids and also reduces the risk of leaching of surplus free lime and thereby reduces permeability of concrete. ( iv ) Improved Resistance for Carbonation Phenomena Carbonation phenomenon in concrete occurs when lime of the hydrated Portland Cement react with carbondioxide from atmospheres in the presence of moisture and form calcium carbonate. To a small extent, calcium carbonate is also formed when calcium silicate and aluminates of the hydrated Portland cement react with carbon dioxide from atmosphere. Carbonation process in concrete results in two deleterious effects ( i ) shrinkage ( ii ) Corrosion. Concrete immediately adjacent to steel reinforcement may reduce its resistance to corrosion. The rate of carbonation depends on permeability of concrete, quantity of surplus lime and environmental conditions such as moisture and temperature. When fly ash is available in concrete; it consumes surplus lime by way of pozzolanic reaction, reduces permeability and as a result improves resistance of concrete against carbonation phenomenon.

( v ) Increased Sulphate Resistance

Sulphate attacks in concrete occur due to reaction between sulphate from external origins or from atmosphere with surplus lime leads to formation of etrringite, which causes expansion and results in volume destabilization of the concrete. Increase in sulphate resistance of fly ash concrete is due to continuous reaction between fly ash and leached out lime, which continue to form additional C - S - H gel. This C - S - H gel fills in capillary pores in the cement paste, reducing permeability and ingress of sulphate ions.

( vi ) Reduced alkali - aggregate reaction Certain types of aggregates react with available alkalis and cause expansion and damage to concrete. These aggregates are termed as reactive aggregates. It has been established that use of adequate quantity of fly ash in concrete reduces the amount of alkali aggregate reaction and reduces / eliminates harmful expansion of concrete. The reaction between the siliceous glass in fly ash and the alkali hydroxide of Portland cement paste consumes alkalis thereby reduces their availability for expansive reaction with reactive silica aggregates. ( vii ) Greater long - term strength

The pozzolanic reaction between fly ash and lime liberated from hydration cement continue for longer period & generates additional cementitious gel which provide greater strength to concrete mass.

In a nutshell, it can be summarized that permeability and surplus lime liberated during the hydration of Portland cement are the root causes for deleterious effect on the concrete. Impermeability is the foremost defensive mechanism for making concrete more durable and is best achieved by using fly ash as above. Use of fly ash in concrete saves the cement requirement for the same strength thus saving of raw materials such as limestone, coal etc required for manufacture of cement and thus activity is eco - friendly.

The Indian Standards IS: 456 - 2000 - entitled Plain and Reinforced cement concrete code of practice permits use of fly ash ( conforming to IS: 3812 Part - 1 ) up to 35 % as part replacement of OPC in the concrete. 2. 2Use of Fly ash as a fill material i. e. for road embankment construction and similar projects One of the most significant characteristics of fly ash in its use as a fill material is its strength. Well - compacted fly ash has strength comparable to or greater than soils normally used in earth fill operations. In addition, fly ash possesses self - hardening properties which can result in the development of shear strengths. Significant increases in shear strength can be realized in relatively short periods of time and it can be very useful in the design of embankments6.

Construction of road embankments using fly ash, involves encapsulation of fly ash in earthen core or with RCC facing panels. Since there is no seepage of rain water into the fly ash core, leaching of heavy metals is also prevented. When fly ash is used in concrete, it chemically reacts with cement and reduces any leaching effect. Even when it is used in stabilization work, a similar chemical reaction takes place which binds fly ash particles. Moisture content of pond ash to be nearer to OMC after having been taken out from pond and stored for one or two days.

Use of fly ash in the construction of road embankment of the second Nizamuddin Bridge in New Delhi, has amply demonstrated its suitability as a material for road / embankment construction. The site proximity to the river Yamuna posed a challenge to use the conventional material; moreover, the embankment of 7 to 8 metre height was to be constructed for a stretch of about two kilometers in a flood zone.

The construction work has been completed in a record time. The on - site quality control was maintained with simple tests and procedures. These were similar to the corresponding requirements in case of earthworks. No operational or execution problems have been faced on technical aspects, rather the working with fly ash has been found to be easier and better. Further, use of fly ash results in an enormous amount of cost saving.

Advantages of using fly ash for road construction

a ) Fly ash is a lightweight material, as compared to commonly used fill material ( local soils ), therefore, causes lesser settlements. b ) Easy to handle and compact because the material is light and there are no large lumps to be broken down. Can be compacted using either vibratory or static rollers. c ) High permeability ensures free and efficient drainage. After rainfall, water gets drained out freely ensuring better workability than soil. d ) Work on fly ash fills / embankments can be restarted within a few hours after rainfall, while in case of soil it requires much longer period. e ) Conserves good earth, which is precious topsoil, thereby protecting the environment. f ) Higher value of California Bearing Ratio as compared to soil provides for a more efficient design of road pavement. g ) Pozzolanic hardening property imparts additional strength to the road pavements / embankments and decreases the post construction horizontal pressure on retaining walls. h ) Amenable to stabilization with lime and cement. i ) Can replace a part of cement and sand in concrete pavements thus making them more economical than roads constructed using conventional materials.

2. 3Use of Ash in waste land Reclamation

It is a very difficult task to convert a wasteland to greenery. Tata Energy and Resources Institute ( TERI ) had identified certain strains of naturally occurring mycorrhizal fungi that provide nutritional support and high level of stress tolerance to the plants. These were applied to plants on fly ash dumps in Korba Super Thermal Power Station with additional doses of organic and Mycorrhizal fertilizers. The fungi form a reciprocating relationship with the living roots by providing nutrition to plants from the substrate and receive carbon in turn from them. The mycelial network of the Mycorrhizal fungi, accumulate heavy metal from fly ash and retain them in their living cells. In a short period of time, the grey, toxic fly ash laden waste land was converted to that of green vegetation. The technology was successfully replicated in Badarpur and Vijayawada Thermal Power Stations

Waste5 / degraded land / low lying areas near in the vicinity of different TPPs viz. Farakka STPP, Bhusawal TPS, Chandrapur STPP, Harduaganj / Obra / Anpara TPPs of UPRVUNL, NLC and in the State of Jharkhand have been reclaimed and made suitable for crop farming / social forestry / medicinal plants through bulk use of fly ash. Thus Fly Ash has been established to act as excellent soil conditioner / modifier.

2. 4Use of fly ash in Mine filling

Fly ash in back filling of opencast mines and stowing of underground mines can be used. In open cast mines after extraction of coal and completion of mining operation, mines are back - filled with over burden materials and remaining area can be backfilled with ash.

In case of under ground mines the conventional material for back filling is river sand. NTPC has got studies conducted ( including fields trials ) through Central Mining Research Institute, Dhanbad for use of bottom ash from Ramagundam for stowing operation in the under ground mines of Singreni. The study indicates that it is technically feasible to utilize bottom ash in stowing operations. More than 1, 00, 000 tonnes of bottom ash have already been stowed in these underground mines.

2. 5Use of Fly Ash in Bricks and other building product Manufacturing

Fly ash can be used for making a variety of building materials such as Bricks, Blocks, Cellular concrete, Tiles etc. Brick is a basic need for the development works. Several studies show that fly ash brick is a far superior building material than burnt clay brick. The use of fly ash brick provides a stronger, more durable construction that is better protected from efflorescence and salinity with meaningful savings in construction costs. Fly Ash Brick Making Machines used for manufacturing bricks of different sizes from fly ash.

The process of manufacturing lime fly ash bricks is based on the reaction of lime with silica of fly ash to form calcium silicate hydrates ( C - S - H ) which binds the ingredients to form a brick. The quality of bricks8 obtained is highly dependant on the quality of fly ash. The manufacturing of Lime - Fly ash bricks are generally designed such that they stand at par with burnt clay bricks used conventionally. Fly ash bricks have good compressive strength, low water absorption, high density and low shrinkage value as compared to burnt clay bricks. 3. 5. 1Fly ash bricks can be divided into the following types

Clay Fly ash Bricks: Manufacturing process of clay fly ash bricks by manual or extrusion process involves mixing of fly ash ( 20 % - 80 % ) with clay of moderate plasticity. The green bricks are dried under ambient atmospheric conditions or in shed to equilibrium moisture level of below 3 %. Dried bricks are fired in traditional brick kilns at 1000 30 C with a soaking period of 5 - 7 hours at maturing temperature. Fly ash Sand Lime Bricks: In presence of moisture, fly ash reacts with lime at ordinary temperature and forms a compound possessing cementitious properties. After reactions between lime and fly ash, calcium silicate hydrates are produced which are responsible for the high strength of the compound. This process involves homogeneous mixing of raw materials ( generally fly ash, sand and lime ), moulding of bricks and then curing of the green bricks. 3. 5. 2Advanced work: Cold Bonded Lightweight Fly ash Bricks, Blocks and Tiles: The material can be produced in a variety of building blocks, bricks and tiles, depending on local markets and regulations. The mixed raw material is cast in moulds, after which the moulds are processed in a microwave oven for transportation to the building site. Flux Bonded Fly ash Bricks Blocks and Tiles: The process is similar to the one in the conventional tile industry: fly ash is mixed with less than 10 % plastic clay and a few additives and tiles, bricks or blocks are pressed. These shapes are fired in the range of 900C to 1000C to make the final product. More than 85 % of fly ash is used in the process. 3. 5. 2Advantages of fly ash bricks over clay bricks:

1 ) Growing cold crushing strength 2 ) No efflorescence 3 ) Compact construction & Consistent quality 4 ) Better thermal insulation properties 5 ) Availability through out the year. 6 ) Better shape & finish 7 ) Rationalization of Mortar with optional need of Plaster.

Fly ash Bricks v / s Normal Clay Bricks - Comparison

NORMAL CLAY BRICKFLY ASH BRICK Varying colour as per soil Uniform pleasing colour like cement Uneven shape as hand made Uniform in shape and smooth in finish Lightly bonded Dense composition Plastering required No plastering required Heavier in weight Lighter in weight Compressive strength is around 35 kg / cm2Compressive strength is around 100 kg / cm2 More porous Less porous Thermal conductivity 1. 25 - 1. 35 w / m2 C Thermal conductivity 0. 90 - 1. 05 w / m2 C Water absorption 20 - 25 % Water absorption 6 - 12 %

Subhash Chandra Sr Engineer AUD NTPC Limited Noida Office

Normal Clay Brick Fly Ash Brick

3. 5. 3Blocks

Day by day the uses of concrete blocks are gaining importance due to its own importance and advantages, except for its cost. The cost of concrete blocks can be cut drastically with the use of fly ash for its manufacturing. Manufacturing of fly ash blocks requires following ingredients Fly Ash: The fly ash should conform to IS requirement; dry fly ash with lime reactivity more than 60 kg / cm2. Cement: 43 grade Ordinary Portland Cement conforming to IS Sand: sand required for the mix should be free from dirt, impurities and fall in zone II. Coarse Aggregate: Crushed aggregate of maximum nominal size 10 mm.

Manufacturing: The fly ash concrete blocks can be manufactured on machine. Blocks are partially compacted and it requires to attend early strength so that transportation is easy. The fly ash is mix dry with the cement, before adding the raw materials to the mixer. The properly mixed concrete is placed in the block making machine. The blocks extracted from the machine is air dried and then sent for curing. Fly ash concrete requires more period for curing than ordinary concrete.

2. 6Use of Ash in Agriculture Fly Ash consists of practically all the elements present in soil except organic carbon and nitrogen. Thus it was found that this material could be used as an additive material in agriculture applications. In view of the above, some agencies / individuals / institutes at dispersed locations conducted some preliminary studies on the effect and feasibility of fly ash as an input material in agricultural7 applications. It was generally observed that both sandy and clayey soils tend to become loamy in texture. Optimum bulk density in turn improves the soil porosity, the workability of the soil, the root penetration and the moisture retention capacity of the soil. The application of Fly Ash has been found to increase the available water content of loamy sand soil by 120 % and of a sandy soil by 67 %. RRL Bhopal reported that application of Fly Ash increase the porosity of Black Cotton Soil and decreases the porosity of sandy soils and thereby saves irrigation water around by 26 % and 30 % respectively. This improvement in water holding capacity is beneficial to the plants especially under rainfed agriculture. Further, in India most of the Fly Ash produced is alkaline in nature. Hence an application of these to agricultural soil increases the soil PH; it simultaneously adds essential plant nutrients to the soil. Some fly ash is acidic which may be used for reclamation of alkaline soils. Fly ash application helps in reducing surface encrustation, which is a problem in red soils. Studies in this context have revealed the followings. It improves permeability status of soil Improves fertility status of soil ( soil health ) / crop yield Improves soil texture Reduces bulk density of soil Improves water holding capacity / porosity Optimizes ph value Improves soil aeration Reduces crust formation Provides micro nutrients like Fe, Zn, Cu, Mo, B, Mn, etc. Provides macro nutrients like K, P, Ca, Mg, S etc.

Keeping the above important findings in view, pond ash at a dose of 30 - 50 tonne per hectare on one time basis along with recommended dose of fertilizers / manures is recommended for its use agriculture / forestry sector / wasteland management or cultivation of different cereals / pluses / oil seeds / vegetables etc., the repeat application of which can be made after 4 - 5 years as it would have significant residual effect on the yield of succeeding crops over a period of 4 - 5 years. 2. 7Ash Dyke Raising

A number of ash disposal facilities across the country have been designed. Ash dyke9 maintaining is one of them. It can be raised both by dry disposal and wet disposal system. In dry disposal, the fly ash is transported by truck, chute or conveyor at the site and disposed of by constructing a dry embankment ( dyke ). An important aspect of design of ash dykes is the internal drainage system. The seepage discharge from internal surfaces must be controlled with filters that permit water to escape freely and also to hold particles in place and the piezometric surface on the downstream of the dyke. The internal drainage system consists of construction of rock toe, 0. 5m thick sand blanket and sand chimney. After completion of the final section including earth cover the turfing is developed from sod on the downstream slope. 2. 8Autoclaved Aerated Concrete Autoclaved Aerated Concrete ( AAC ) is a precast structural product made with all - natural raw materials. In 1914, the Swedes discovered a mixture of cement, lime, water and sand that expands by adding aluminum powder. The material was further developed to what we know today as autoclaved aerated concrete ( also called autoclaved cellular concrete ). It is an economical, sustainable, solid block that provides thermal and acoustic insulation as well as fire and termite resistance. AAC is available in a variety of forms, ranging from wall and roof panels to blocks and lintels. To manufacture AAC, Portland cement is mixed with lime, silica sand, fly ash, water and aluminum powder or paste and poured into a mold. The reaction between aluminum and concrete causes microscopic hydrogen bubbles to form, expanding the concrete to about five times its original volume. After evaporation of the hydrogen, the now highly closed - cell, aerated concrete is cut to size and formed by steam - curing in a pressurized chamber ( an autoclave ). The result is a non - organic, non - toxic, airtight material that can be used for wall, floor, and roof panels, blocks, and lintels which according to the manufacturers, generate no pollutants or hazardous waste during the manufacturing process AAC may be beneficial in climates where outdoor temperature fluctuates over a 24 - hour period from above to below the indoor temperature conditioned air set point. Advantages of AAC: 1. Light weight construction hence lighter foundation 2. Faster construction 3. Higher thermal and sound insulation 4. Higher resistively to fire 5. Lesser size of structural member i. e. lesser section of beams and columns 2. 9Manufacturing lightweight aggregates from fly ash These are in great demand where stone mining is banned. However it is not true replacement of stone aggregate but good alternative where local requirement are of lower range. Lightweight aggregates have been manufactured by sintering fly ash and crushing the product into suitable sizes. These aggregates possess unique characteristics that make them suitable for high strength and high performance concrete. Concrete produced using these aggregates is around 22 % lighter and at the same time 20 % stronger than normal weight aggregate concrete. Drying shrinkage is around 33 % less than that of normal weight concrete. Moreover, the aggregates possess high durability characteristics required in high performance structures. The importance of the new aggregates lies mostly in the fact that superior qualities are achieved without having to increase the cement content. Thus it is possible to reduce the amount of cement by as much as 20 % without affecting the required strength. The use of lightweight aggregate in concrete has many advantages. These include: ( a ) Reduction of dead load that may result in reduced footings sizes and lighter and smaller upper structure. This may result in reduction in cement quantity and possible reduction in reinforcement. ( b ) Lighter and smaller pre - cast elements needing smaller and less expensive handling and transporting equipment. ( c ) Reductions in the sizes of columns and slab and beam dimensions that result in larger space availability. ( d ) High thermal insulation. ( e ) Enhanced fire resistance. 2. 10Cenosphere - Fly Ash by - product The process of burning coal in thermal power plants produces fly ash containing ceramic particles made largely of alumina and silica. The ceramic particles in fly ash have three types of structures. The first type of particles are solid and are called precipitator. The second type of particles are hollow and are called cenospheres. The third type of particles are called plerospheres, which are hollow particles of large diameter filled with smaller size precipitator and cenospheres. Thus Cenosphere is a by - product of fly ash. A cenosphere is a lightweight, inert, hollow sphere filled with inert air or gas. The color of cenospheres varies from gray to almost white and their density is about 0. 4 - 0. 8 g / cm, which gives them a great buoyancy. These are hard and rigid, light, waterproof, innoxious, and insulative. This makes them highly useful in a variety of products, notably fillers. 3Legal Issues - Ash Utilization United Nations Conference on the Human Environment held at Stockholm in June, 1972, in which India participated, to take appropriate steps for the protection and improvement of human environment. In view of this, parliament passed THE ENVIRONMENT ( PROTECTION ) ACT, 1986 on 23rd May, 1986 for protection and improvement of environment and the prevention of hazards to human beings, other living creatures, plants and property. Consequently Ministry of Environment and Forest, Govt of India has issued Gazette Notification regarding use of Fly Ash, which is as under:

1st Notification - 14. 09. 1999

Use of fly ash, bottom ash or pond ash in the manufacture of bricks and other construction activities. - ( 1 ) No person shall within a radius of fifty kilometers from coal or lignite based thermal power plants, manufacture clay bricks or tiles or blocks for use in construction activities without mixing at least 25 per cent of ash ( fly ash, bottom ash or pond ash ) with soil on weight to weight basis. ' ( 2 ) There shall be a authority for ensuring the use of specified quantity. In case of non - compliance, the said authority may cancel the license of brick kiln or may cancel mining lease ( 3 ) In case of non - availability of ash from thermal power plant in sufficient quantities as certified by the said power plant, the stipulation under para ( 1 ) shall be suitably modified ( waived / relaxed ). ( 4 ) Each coal or lignite based thermal power plant shall constitute a dispute settlement committee. ( 5 ) Annual implementation report providing information about the compliance of provisions in this notification shall be submitted by the 30th day of April every year to the Central Pollution Control Board, concerned State Pollution Control Board / Committee and the concerned Regional Office of the Ministry of Environment and Forests by the coal or lignite based thermal power plants. ( 6 ) Power Plants to issue ash free of cost for ten years. ( 7 ) Use of fly ash, 100 % utilization of Ash by all thermal power stations in - 15 years for existing stations - 9 years for new stations Specifications for use of ash - based products. - ( 1 ) Manufacture of ash - based products such as cement, concrete blocks, bricks, panels or any other material or the use of ash in construction activity such as in road laying, embankments or use as landfill to reclaim low lying areas including back filling in abandoned mines or pitheads or for any other use shall be carried out in accordance with specifications and guidelines laid down by the Bureau of Indian Standards, Indian Bureau of Mines, Indian Road Congress, Central Building Research institute, Roorkee, Central Road Research Institute, New Delhi, Building Materials and Technology Promotion Council, New Delhi, Central Public Works Department, State Public Works Departments and other Central and State Government agencies. ( 2 ) The Central Public Works Department, Public Works Departments in the State / Union Territory Governments, Development Authorities, Housing Boards, National Highway Authority of India and other construction agencies including those in the private sector shall also prescribe the use of ash and ash - based products in their respective schedules of specifications and construction applications, including appropriate standards and codes of practice, within a period of four months from the publication of this notification. ( 3 ) All local authorities shall specify in their respective building bye - laws and regulations the use of ash and ash - based products and construction techniques in building materials, roads, embankments or for any other use within a period of four months from the date of publication of this notification.

2nd Notification - 27. 08. 2003 ( Amendment )

1. Radius for Use of ash for Brick manufacturing increased from 50 km to 100 km 2. Buildings within a radius of 50 Km to use ash based Bricks / Blocks / Tiles in phased manner i. e. 50 % by 31st August 2004 100 % by 31st August 2005 3. Buildings within a radius of 50 to 100 Km 25 % by 31st August 2004 50 % by 31st August 2005 75 % by 31st August 2006 100 % by 31st August 2007 4. It is responsibility of the construction agency either undertaking the construction or approving the design or both to ensure the implementation of the above provision 5. In case of non - compliance, consent order & mining lease of brick kilns to be cancelled. 6. Power plants to maintain month - wise record of ash made available to each brick kiln. 7. Implementing authority shall be Regional Officer of the State PCB or the Pollution Control Committee.

3rdNotification - 03. 09. 2009 ( Amendment )

1. Mandate of compulsory use of fly ash in clay bricks / tile / block within 100 km of TPS - deleted 2. Free issue of fly ash and pond ash to Cement, Ready Mixed Concrete, Asbestos Products etc. - deleted 3. Existing TPS / expansion units in operation to achieve ash utilization levels ( from date of Notification ), as mentioned below: At least 50 % - 1 year, 60 % - 2 years, 75 % - 3 years, 90 % - 4 years, 100 % - 5 years 4. New TPS / expansion units commissioned after this notification At least 50 % - 1 year, 70 % - 2 years, 90 % - 3 years, 100 % - 4 years

5. TPS would be free to sell fly ash to User Agencies subject to: Pond ash - to be given free on - as is where is basis - to manufacturers of Bricks / Blocks and tiles, Farmers, Central / State Road Construction Agencies, PWD and to agencies engaged in Mine filling. At least 20 % of dry ESP fly ash - free of charge to units manufacturing fly ash / clay - fly ash bricks, blocks & tiles on a priority basis over other users. No fly ash to be made available to defaulting users. 6. The amount from sale ( including by subsidiary / sister concern ) to be kept in separate account head and to be utilized only for development of infrastructure / facilities and promotion / facilitation activities for use of fly ash, until 100 % ash utilization is achieved. 7. The amount can be utilized for other development programs as long as 100 % ash utilization level is maintained. 8. TPS to constitute dispute settlement committee which shall include GM of plant, representatives of relevant construction and fly ash brick manufacturing association. 9. Fly ash means all type of ash such as ESP ash, dry fly ash, bottom ash, pond ash and mound ash. 10. Mandatory to use at least 25 % of fly ash within a distance of 50km ( by road ) under the guidance of DGMS

4Major Successful examples World Over The ash generated from Volcanoes was used extensively in the construction of ancient Roman structures i. e. The Aqueduct of Segovia, Spain, Dome of the Pantheon, Insula in Ostia Antica, The Baths of Caracalla, etc. Colosseum ( in the year 100 A. D. ) is a classic example of durability achieved by using volcanic ash. Volcanic Ash acts just like our Fly Ash. In the United States of America more than six million tonnes and in Europe more than nine million tonnes are used annually in cement and concrete. So it is hard to think about concrete construction without considering the use of fly ash. Some of the most prestigious projects of recent times have relied on fly ash concrete, including dams, power stations, offshore platforms, the Channel tunnel, highways, airports, commercial and residential buildings, bridges, pipelines and silos. No wonder that fly ash is used in all sectors of the concrete industry, covering ready - mixed, precast and on - site applications. Fine examples of application of minerals from coal can be seen throughout world: Water Tower Place in Chicago, the Eisenhower Expressway in Chicago, Picasso Tower in Madrid, the Commerzbank Tower in Frankfurt, Puylaurent dam in France, the Channel Fig. 5: Burj Dubai Tunnel between France and United Kingdom, the Underground railway tunnel in Vienna, in the East Bridge in Copenhagen, and the Eindhoven Airport landing strip in the Netherlands. High performance concrete is used in the construction of the world ' s tallest building ( Burj Dubai ) in Dubai, United Arab Emirates: 990 fine aggregate, 810 coarse aggregate, 350 Portland cement, 120 Class F fly ash ( probably exported from India ), 30 Microsilica, 135 water and superplasticizer ( kg / m3 ). India Fly Ash has been used successfully in many prestigious projects in India. Some of them are: Okhla Fly over Bridge, New Delhi, Hanumaan setu, the fly over near Yamuna Bazar, Delhi, Sarita Vihar flyover in Delhi, Noida - Greater Noida Expressway, plant roads at Budge - Budge thermal power station, NH - 6 four laning work near Kolkata, one km long rural road near Raichur in Karnataka etc. Use of Roller Compacted concrete technology using high doses of fly ash for construction of Saddle Dam and upper Dam of Ghatghar pumped storage Scheme near Nashik, have been implemented. 5. Conclusion:

Use of fly ash in various applications imparts several technical and environmental benefits and thus it is eco - friendly. Large quantity of fly ash is being produced every year in power generation process and huge area of agriculture land is being used for its storage / disposal. Since electricity is requirement of every individual, it is the responsibility of every user to make sincere efforts for its gainful utilization and protection of environment. References: - 1. IS 3812 - 2003, Pulverized Fuel Ash specification, part 1for use as pozzolana in cement, cement mortar and concrete. 2. ASTM international C: 618 - 03 Standard specification for coal ash and Raw or Calcined Natural Pozzolana for use in concrete. 3. V M Malhotra and A A Ramezaniapour March 1994, Fly Ash in Concrete. 4. Seminar document, May 1996 Maharshtra India Chapter of ACI, Use of fly ash in concrete. 5. Using fly ash Extracting value from waste Published by INEP. 6. Vimal Kumar and Mukesh Mathur Fly ash in roads and embankment, National seminar and Business Meet in Use of Fly Ash in Roads and Embankment, Allahabad, June 2005, pp. 3 - 15. 7. Chand, S. K. and Rao, Bhuganga D. D. Fly ash disposal or utilization?, International Conference on Fly Ash and Utilization, 1998, Central Board of Irrigation and Power, pp. I - 5, 35 - 40. 8. Bhanumathidas, N. and Kalidas, N. Fly ash for bricks, cement and concrete: The Indian perspective, Paper presented at the plenary session of the CANMET / ACI Conference on Fly ash, Silica fume, Slag and Natural Pozzolanas in Concrete, Chennai, July 2001. 9. Extract from paper ' Technology: Fly ash Disposal and Utilization: The Indian Scenario ' by Rajiv Sinha, Department of Civil Engineering, IIT Kanpur Subhash Chandra Sr Engineer AUD NTPC Limited Noida Office CHAPTER ON FLY ASH FOR GRADUATE ( CIVIL ENGINEERING ) COURSE STUDENTS

Certified Organic Skin Care Tips

This is the unrivaled way to lock up you purchase straight and totally natural and organic skin care products.

# 1: Learn To Read Product Labels

Be aware of the Rule Of Thirds:

The top questioning of the ingredients classify regularly lists the ingredients that hold around 90 - 98 % of the product. Most of this is generally water. Read on to find out why this matters!

The middle poll regularly represents approximately 5 - 8 % of the product.

The bottom wringer represents around 1 - 3 %.

# 2: Natural skin care is not always natural.

There are two definitions of the world natural.

The dictionary stuff: " Existing in or, formed by, nature ".

The cosmetic industry explanation: " Component ingredient derived from a natural substance ".

Manufacturers commonly use the world natural on labels to deceive consumers. For paragon, " Cocamide - DEA derived from coconut oil ".

Cocamide - DEA may well be from coconut oil, but a synthetic chemical called diethanolamine is used in the extraction process. It is confessed to cause cancer. An ingredient is not really natural if it has been distilled in this way.

# 3: Organic doesnt mean what you think.

An organic certification on a product label is the only way to guarantee the integrity of a product. The definition of certified organic is as follows:

" An independent third party guarantee of an organic claim ".

Always look for a logo that guarantees the products integrity.

Certified organic products must contain a minimum of 95 % organic ingredients excluding water and salt / minerals, with a small allowance for natural, non - organic ingredients that must comply with very stringent processing criteria.

There are two definitions of organic:

Organic chemistry is concerned with substances that contain carbon. Carbon is present in all living things. Legally, the cosmetics industry is allowed to label any product that contains carbon as organic. So if it contains petrol, it is organic.

Methylparaben is derived from petrochemicals, which are derived from crude oil, which is derived from living matter. It is a widely used preservative in organic skin care products such as body creams, body wash and deodorants:

So effectively methylparaben can legally be labelled as organic. Now, it is worth noting that a recent study reported traces of methylparaben in human breast cancer tumours.

The second definition of organic is, " The sustainable system of agriculture that uses natural substances & methods to create healthy nutrient rich and fertile soils "

# 4: How much water is in the product?

In personal communication with a leading industry expert, I was told what can actually be meant when companies put 73 % Organic on their labels. Basically manufacturers can place a few organic teabags in a vat of water and let them infuse into the water.

Because the water constitutes 70 + percent of the overall product, the manufacturer is allowed to claim that the product is 73 % organic at the top of the label ( remember # 1 in this article? ).

If you removed the water, the actual organic content of those fancy herbal infusions would probably be less than 0. 05 % of the total product.

# 5: Be aware of inconsistent labelling standards

In some countries, ingredients that are not allowed in certified organic foods ARE allowed in certified organic personal care and cosmetic products. This represents a lack of continuity or consistency in labelling standards.

How can food and cosmetics products have the same certified organic logo when ingredients that are allowed personal care and cosmetics are not allowed in food? Remember that if its on your skin, youre drinking it!

# 6: Miracle ingredients dont exist

Vitamin C, vitamin E, coenzyme Q10, active copper and other ingredients may be touted as miracle ingredients. The fact is that there is no miracle ingredient for the skin or hair, just as there is no magic pill for curing illness and disease.

The quality of the skin is a function of feeding the body and skin high quality nutrients over time and keeping the toxin levels of the body as low as possible.

When you use high quality, certified organic products, ALL the ingredients are active. They are ALL beneficial and they all feed the skin.

# 7: If it harms lab animals it will harm you!

If you read books by Dr Sherry Rogers, M. D, you will discover that in order to give a rat cancer or Parkinsons Disease, it is injected with some of the very same chemicals that you will find in your cleverly labelled organic skin care, personal care and cosmetic products.

Certified Organic personal care products and cosmetics 100 % free of ALL synthetic chemicals are available from an Australian Certified Organic company which has passed the stringent USDA Certified Organic standards for food. What this means to you, the consumer, is that the products are guaranteed synthetic chemical free.

Distributed by Skin Care Products - Natural Skin Care Products

Career choices for young generations is agriculture still a viable option

These days there are several career choices for younger generation, some of these industries are more lucrative than the others and equivalent in this modern times industries allied as agriculture and forestry is still an option. However, does a career in agriculture can be as satisfying in terms of prospects and salaries as one in finance, insurance or engineering? Career paths in agriculture have its own pros and cons and we shall demand these in the following next chapters.

First of all let us start our investigation with the unborn salary conditions. Salaries in agriculture are strikingly lower than in item high palmy industries. This lower figure are supported with a higher job security; large business entities working in this field are often enjoy continuous government funding in order to compensate the high business risks associated with animal husbandry and crop production such as weather conditions, pests and various diseases. Hence, being employed in a private agricultural business entity the employees can always feel the protective hands of the government yet not in that extent as those employed in the public sector.

People working in agriculture also enjoy a very healthy lifestyle involving long walks in the countryside and generally being outdoors on a regular basis. Those who are employed in finance and insurance spend weeks and months in overcrowded office environment surrounded by fluorescent lights and flickering screens. This sort of environment combined with high stress can often lead to serious health implications thus making a career in the agriculture seeming more valuable than are those in the high - flying investment banking.

Should you become fed up with the work in rural settings you can always move to your nearby city and try to find another job there; with your skills you gained being in the management in an agricultural enterprise means that you have acquired a good set of transferable skills. These will always valued well in other industries as well thus you can be sure that a career change will not mean a great difficulty for you at all.

Last but not least, working in the agriculture naturally brings you in the heart of many small rural communities meaning that you will be socially accepted and you can be a useful part of such a community. Working in an office of a multi - national IT - firm can leave you with a strange feeling that you are not more than a number on a spreadsheet.

Having investigated several attributes of an agriculture - related career it is easy to accept that in contrast of lower salaries there are plenty of advantages making this career choice more valuable than the rest. Also, if you are still concerned because of lower salary prospects you can be assured; living in the country is always cheaper than living in a large city, so at the end the day your salary might even have a positive balance compared to one of an IT - executive.

The author is a UK - based agricultural and environmental professional having a keen interest in Crop Production and Soil Science. http: / / www. crop - production. org

Britain ' s Next Top Model S8 E9 Series 8, Episode 9

Recently on Britain ' s Next Top rated Model Season 8, Episode 8 " Series eight, Episode 8 ", The remaining girls try to stay afloat on a catwalk on water. They have to cause with nude males to the second task.

On this occasion ' s Instance name " Series 8, Episode 9 ", The remaining girls indulge in a jail bait house take before ornery business impossible for a stunt drama remonstrance. This duration ' s guest ascertain is Erin O ' Connor.

Britain & Ireland ' s Next Top Model ( formerly Britain ' s Next Top Style ) ( much in want to BNTM, BINTM or Top Model ) may be a British reality television pageantry in which a vast symbol of women compete for the name of Britain ' s Next Top Model and an fair shake to start their career from the modelling industry. It is aired with Sky Living, a British television channel.

As part of the very best Model franchise, it is based about the American TV show America ' s Next Top Model, and it shares a similar format. From series 7 onwards, the show has already been renamed Britain and Ireland ' s Next Top Model while it will include contestants from your Republic of Ireland.

The series features a good number of young female contestants who live together in a very house for several weeks while getting involved in challenges, photo shoots and meetings with members on the modelling industry. Normally, one poor - performing contestant is eliminated each week until the last contestant other is declared " Britain ' s Next Top Model " and makes a modelling contract as well as other prizes.

In a recent BBC occupation interview, Elle Macpherson contrasted the show considering the US version, describing BNTM as " Uniquely Uk, the sense of humour as well as the styling is very Uk... more hybrid backgrounds... and I think that may be really examplatory [sic] associated with what ' s going on in great britain today ".

Each series of Britain ' s Next Top Model features from ten to fourteen assaults and begins with 12 to fourteen contestants. Each episode, one contestant is taken away, though in rare situations a double elimination or no elimination is written by consensus of the judging solar panel. Season 6 saw a live final the place that the public chose the winner on the cycle.

It was originally noted that for series eight that Grace Woodward has been leaving the judging panel to be replaced by Kelly Osbourne and that both Charley Speed and Julien MacDonald would continue on the judging panel. However it was afterwards announced that both Speed and Woodward were leaving the panel to be replaced by male style and former host associated with Make Me a Supermodel, Tyson Beckford, and clothing designer and former star on the Hills, Whitney Port. Previous judges have listed Lisa Butcher, Marie Helvin, Paula Hamilton, Huggy Ragnarsson, industry expert Jonathan Phang and fashion expert Gerry DeVeaux. Usually, an additional guest ascertain will sit in about the panel every week.

After seven successful conditions, BINTM is offering upwards another hearty helping associated with glitz, glamour and girls - - but, after a slightly discouraging last series, do we really need another?

The first episode kicks down with Elle ( and her impossibly long legs ) introducing the 2 main new judges Tyson Beckford and Whitney Port. Welsh fashion designer Julien Macdonald returns as Elle ' s right - hand - diva as well as the scathing Grace Woodward, who plagued the show 2009, is no longer a judge.

Books - The Best Source To Gain Knowledge

Books are considered as the best main squeeze of human being in their loneliness. Books play a requisite role in our life playing the role of a main man, philosopher and a guide. In the market various kinds of books including academic books, beat books, novels, comics, recipe books etc are available in the market enormously.

Technically utterance, a book is a compilation of written, printed, illustrated, or blank sheets, crafted paper, usually fastened calm to flash at one side. The works of literature may also be referred as books. However, a book is termed as a monograph in the library and information science in order to differentiate it from serial periodicals namely magazines, journals or newspapers.

Academic books are the books which are related to the education of school, colleges, universities and higher educational institutes. We have numerous books related to the academics which help students to garner knowledge regarding a particular subject or topic. Such books help students to master upon a subject in his best possibilities. There are various books on all the subjects which we are required to study during our academic years. Discrete Mathmatics By Babu Ram, Determinants Of Successful Teachers By Kukreti, B. R, Metric Spaces By Babu Ram, LIMNOLOGY Welch P S etc are some of the useful books in the field of academic subjects.

In the market, we are available with a wide collection of books related to agriculture, biotechnology, botany, bio informatics science, computer science, engineering, life science, mathematics, medical, physics, business studies, accounts, economics, chemistry etc. All these books provide us lots of knowledge on the specific subject or topic with their data and information. Books on travel, relationship, different places, famous personalities etc are also available in large quantity in the market. From a travel guide to a particular place we can gather knowledge about that place, about its festivals, culture and tradition even without visiting the place in physically.

Discrete Mathmatics by Babu Ram is a very helpful book for the students who are pursuing be / b. Tech. BCA., MCA, M. Sc. ( Mathematics ) gate courses. This book is designed as an introductory course in discrete mathematics. While Metric Spaces By Babu Ram is the book is a text book that would serve the subjects required in the metric spaces for bachelor and master level degrees in the Indian universities. From this book students can gain various knowledge and information regarding metric spaces.

Books are considered as the best friend of a person. We can garner knowledge on various topics and subjects from a book. We can learn about different places, their people, culture, tradition etc from various books, periodicals, magazines etc. Apart from the academic books, there are also books related to travel, relationship, story books, novels etc which are the great sources knowledge.

In the market, we are available with a wide collection of books related to agriculture, biotechnology, botany, bio informatics science, computer science, engineering, life science, mathematics, medical, physics, business studies, accounts, economics, chemistry etc. All these books provide us lots of knowledge on the specific subject or topic with their data and information.

Calcium Deficiency in California Organic Agriculture

Calcium is one of the most important plant nutrients. It is essential for pigpen a strong cell membrane structure, and plays important roles in Nitrogen metabolism, protein formation and Potassium uptake. Calcium deficiencies are typically noted in the growth zones equaling as new top and root growth, and at the bottom end of fruits. Blossom End Poppycock ( BER ) in peppers and tomatoes is an select standard of how wasted cell membranes cut fruit quality and economic performance.

Occasion the information is there, it is surprising how uncultured we are about Calcium take out. Although we have a practical compassionate of its role as a soil amendment, eliminating Calcium deficiency in California agriculture can be challenging. Supplying the crop ' s need for Calcium is not as simple as calculating the soil ' s lime requirements. Nutrient availability is dependent upon many factors beyond total supply such as pH, C. E. C., cation saturation on the CEC, water availability and quality to name a few.

There are two factors that may influence Calcium.

Ca / Mg ratio: Calcium availability may be limited by excess Magnesium. Calcium is located directly under Magnesium in the periodic table of elements describing " similar " electro - chemical characteristics, which play a part in the cation exchange dynamics occurring at the interchange sites in the root zone. I personally believe that there is no magical number for Ca / Mg ratio, but that the grower should pay attention to the crop ' s performance and consider the total amount of Mg as a possible source of interference with Ca uptake. In this approach the laboratory - calculated fertilizer recommendations assume an advisory role, secondary the grower ' s experience in reading his crop ' s response.

Calcium is generally immobile once inside the plant. It moves up from the roots through the Xylem in the column of transpiration water moving up to the leaves, while very little moves down through the phloem. Because of this almost unidirectional flow, a steady supply of available Calcium is required to support cell integrity in new plant growth areas, such as shoots, roots and fruits.

Calcium Carbonate is an excellent choice material for supplying calcium for its relative low cost, chemical purity and the low energy required to disassociate it from its carbonate counterpart. The redox reaction occurs in the presence of the weak carboxylic acids exuded by the roots and micro organisms present in the soils. Reducing the particle size increases the surface area available to be oxidized, increasing the Calcium available for plant use.

Contrary to the lab - analysis calculated approach to nutrition, a small amount of micronized Calcium Carbonate can be much more effective in eliminating Calcium deficiency by balancing counter salts than large amounts of coarse grade liming material. The smaller particles can reach the roots by moving with the water mass flow through soil pores, creating a buffer zone around the roots that effectively balances out risk elements, such as Sodium, Aluminum and excess Magnesium. This explains why it economically makes sense to use a smaller amount of a high grade Calcium fertilizer than applying large volumes of lime that cannot reach the root zone until it is eroded by the environment.

Carp, Ontario - Rich Military History, Agriculture and Drive - In Bingo

Unofficially boasting the second highest UFO sightings unpunctual Roswell. Home to Canada ' s largest nuclear bunker! On again, off again, Carp is once again host to the comic book Ottawa Air Grandstand play! Comic book destination for the Heuristic Aircraft Association ( EAA ) Fly - In / Drive - In Breakfast. A latitude for a Tom Clancy movie shoot staring Ben Affleck and Morgan Freeman.

Intrigued? Well you should be! The Historic Position of Carp has shutout to do with the fish by the same nickname. The seemingly sleepy rural community sits on the northwestern fringe of the city of Ottawa - uncolored a bit ' up the valley ' as they announce in the ( Ottawa ) Valley. This small place, although predominantly a farming community, has some of Canada ' s defined history running through its veins.

The [debatable] secret residence of the four - storey nuclear reflex Diefenbunker, was a massive Federal Government construction project finished in 1961. Now part of Canadian Blasting Police action history, a tour through this administer and steel underground fortress will stimulate your senses with the intrigue of espionage, spies and covert operations. Come prepared to walk up and down stairs.

Carp, in the 1960s and 70s, was noted for the unusual number of UFO sightings. This is not surprising, since the this military bunker was a military commissioned, secure defense communications installation. Department of National Defense ( DND ) personnel would cycle through a tour - of - duty for up to three months inside this bunker facility.

For about 40 glorious seconds in the Tom Clancy suspense movie " The Sum of all Fears ", the Diefenbunker was Mt. Weather, Virginia, USA. The inclined tunnel leading to the huge steel - vault - like doors and locations inside the complex were used as a backdrop for the movie, scripted around a nuclear attack on America.

Nice being picked by Hollywood, but the real enticement to visit this rural Ottawa Village is its local character. Rooted in agriculture, adds that ' country fair ' feel when in June, the Carp Airport hosts the Ottawa Air Show and again in August, the Experimental Aircraft Association ( EAA Chapter 245 ) fly - in breakfast. Both of these Aviation spectacles boast aerial displays, vintage and modern airplanes and always a taste of aerial hot - doggin '. Although hosted on a smaller scale, rivals the big heart and excitement of the Abbotsford BC International Air Show.

It ' s all morning fly - in action surrounding the Annual EAA Chapter 245 fly - in breakfast. Sometimes landing back - to - back the pilots, in their kit - built aircraft, circle, land and taxi to designated parking spots. Over 50 to 60 planes are flown in during this much anticipated event. Pilots eat a hearty breakfast, fuss over their aircraft, catch up on news from other pilots, and some then take off into the wild blue yonder. Others, like August Lehmann, veteran pilot of 49 years, flew in from Dawson Creek, British Columbia, to attend the annual EAA Fly - In / Drive - In Breakfast. Mr. Lehmann, who flew his custom made 2005 Cessna 230 H. P. Cyclone at an average speed of 130 mph, took the opportunity to visit with friends and relatives along his flight path to Carp, Ontario.

One plane that draws a lot of up - close attention is the prop - version replica kit of the Canadian Snowbird Team CT - 114 Tutor jet, right down to the paint. One bi - plane had vintage enthusiasts crowding around for a closer look. Wow! Beautifully lacquered wood throughout the cockpit and on the wings. Lots of photo opportunities everywhere you turned. It was hard for shutterbugs to keep up.

It may start with the Carp Airport, but its charm doesn ' t stop there. It has a few more unique long - standing attractions:

1 ) Home to Canada ' s longest running drive - in Bingo as highlighted on the CBC Show ' On The Road Again ' with Wayne Ronstad. Started in 1954 and still going strong!

2 ) Over 142 years of the Carp Fair, held during the last weekend in September!

3 ) Incredible sunsets and easy access to some of the best Snowmobiling and ATV trails in Canada!

Enough said! C ' mon over! Chat with the locals. Bring your family and friends for a visit to one of Ottawa Valley ' s gems.

Check out additional images of Carp at Flickr. com ( search on ' Carp Charm ' ).

Careers in the Agriculture Industry

Approximately twenty - one million people in the united states work in the agriculture industry. Specific jobs in this industry repeatedly fall within one of the groups listed below.

The farm manager ' s duties vary widely, but he or schoolgirl is generally diligent at once by the farm hotelkeeper and works in dependency with the farm operator. On a big farm, the manager might be responsible for one area of operations, coextensive as feeding the animals. On a smaller farm, the manager ' s tasks gamut from planning the farm ' s yield to assisting in the planting and harvesting activities.

Animal scientists conduct research to develop methods of feeding, housing, and breeding farm livestock. For example, they might develop beef cattle that yield more lean meat, cows that give more milk, or sheep that grow finer wool. They work in laboratories, research stations, or on farms.

Veterinarians work on farms, in labs, and at any institutions in which animals are kept or raised. One must earn the doctor of veterinary medicine degree in order to become a veterinarian.

Agri - business technicians organise, operate and manage farms or agricultural businesses. The main areas of employment in this field are management of an agricultural business, services and distribution. This career offers opportunities to apply business and management expertise to various areas as regards this industry.

Educators are teachers of agriculture that work in high school departments of agriculture education, agricultural colleges, and with the agricultural extension service. Agriculture is such a diversified industry, the opportunities for teaching are great. Many universities, colleges, technical schools, and high schools need teachers of agricultural subjects.

Agricultural consultants, sometimes called agricultural extension workers live and work primarily in farming communities to bring new ideas and technology in agriculture to farmers and farm families.

Landscapers and ground managers work in a field related to the agricultural industry that provides opportunities for employment in a variety of areas which are not on farms. Landscapers and ground managers plan and design gardens, parks, and lawns and supervise the care of trees, plants, and shrubs that are part of these areas. Employment opportunities exist in private homes, schools, office parks, and shopping malls.

Horticulturists and horticultural technicians develop new and improve varieties of bushes, shrubs, trees, and landscape products, as well as fruits and vegetables. They act as consultants to farms on their vegetable crops, or they may direct public botanical gardens. They also often work as landscape contractors serving homeowners or city or state park commissions.

Candle Making Soy Wax, Is It Better Than Paraffin

What ' s all the fuss about candles untrue from soy wax?

With brandnames like Nature Wax, Eco - Soya, and Golden Wax, and when marketed using the terms all natural, clean burning, and renewable, you might get the impression that vegetable based waxes - in particular, soy - based waxes - are far superior and much more environmentally friendly than paraffin based waxes.

Companies monogram their products to wrest a certain image. Wax and candle manufacturers are no diverse. Who could resist Form Romantique, Aroma Naturals, Candle - licious, Perfumed Escapes, or Soy Lucious? ( I think I have floated to pristine beach on a tropical island even now! )

In the United States, annually, more than one billion pounds of wax are used to make candles. By far, paraffin, extracted from petroleum, is the most common type of wax used. Since wax is basically a type of lipid - a fat - there are many sources from which it could be extracted. Prior to the 20th century, animal - derived wax, called tallow, was primarily used. Since the 1990 ' s, there has been an increase in the marketing of vegetable - based waxes.

Are they that much better?

Candles made from soybean wax typically burn longer than candles of the same size made from paraffin.

Soybean wax is more opaque than paraffin wax and so colors tend to appear more vivid.

All candles emit soot, and the emission is mostly a function of the wick. The soot produced by soy candles is whitish, as compared to the dark - colored soot that emanates from paraffin candles.

Are soybeans used to make soybean wax GMO - free ( GMO = Genetically - modified organism )? Probably not. According to the United States Department of Agriculture National Agricultural Statistics Service ( USDA - NASS ), 91 % of the soybeans planted in 2009 and 93 % of the soybeans planted in 2010 were resistant to herbicides or insects or both through biotechnology. ( Reference: Acreage 6 - 30 - 2010, from http: / / www. nass. usda. gov )

Are soybean waxes GMO - free? Soybean waxes are made from natural oils. There are no genetically modified markers present in the natural oils comprising or used to manufacture soy wax products.

Who owns Michael Richards ' patent? It is well known that the method for the manufacturing of soy wax was patented by Michael Richardson. The intellectual rights of this patent were purchased by Cargill, and that company manufactures soybean wax through the company Elevance. Elevance produces a variety of soywaxes; the main ones are C - 1 and C - 3.

Can I buy pure soy wax? Most soy wax products are actually wax blends made from soybeans and other vegetable sources, such as palm. When intended to be used for container candles, the wax is formulated to cause it to adhere well to the sides of the containers. Other soywax blends are made shrink so that they can be removed from molds

Which wax is natural? Soybean oil is extracted from a plant. 18 - 19 % by weight of a soybean is oil. Soybeans are renewable because new plants can be grown in the same fields. Paraffin comes from crude oil. It is a fossil fuel - naturally occurring in the earth. It is renewable, it just takes millions of years to create.

Does " natural " mean " organic? " No. In fact, soybean pesticide use ( nearly all of which are herbicides ) ranks second only to corn. Pesticides, however, are not usually detected in the oil extracted from the soybean. Reference: Economic Research Service of USDA http: / / www. ers. usda. gov / Briefing / SoybeansOilcrops / background. htm

In conclusion then, soybeans are a viable source of oil that can be made into wax for use in candles. As to whether they are as superior to paraffin candles in all the ways that the marketing implies is debatable. Whether you choose to make or purchase candles made from soybean wax is your decision.