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    Detailed Project Report on Activated Bleaching Earth

    Detailed Project Report on Activated Bleaching Earth
    Detailed Project Report on Activated Bleaching Earth
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      ACTIVATED BLEACHING EARTH

      [EIRI/EDPR/1367]J.C.:137INR, 138US$, 639


      INTRODUCTION

      Bentonite is an absorbent aluminium phyllosilicate, essentially impure clay consisting mostly of montmorillonite. There are different types of bentonite, each named after the respective dominant element, such as potassium (K), sodium (Na), calcium (Ca) and aluminium (Al). Experts debate a number of nomenclatorial problems with the classification of bentonite clays. Bentonite usually forms from weathering of volcanic ash, most often in the presence of water. However, the term bentonite, as well as a similar clay called tonstein, has been used to describe clay beds of uncertain origin. For industrial purposes, two main classes of bentonite exist: sodium and calcium bentonite. In stratigraphy and tephrochronology, completely devitrified (weathered volcanic glass) ash-fall beds are commonly referred to as K-bentonites when the dominant clay species is illite. Other common clay species, and sometimes dominant, are montmorillonite and kaolinite. Kaolinite-dominated clays are commonly referred to as tonsteins and are typically associated with coal.

      Sodium betonies

      Sodium bentonite expands when wet, absorbing as much as several times its dry mass in water. Because of its excellent colloidal properties, it is often used in drilling mud for oil and gas wells and for geotechnical and environmental investigations.

      The property of swelling also makes sodium bentonite useful as a sealant, since it provides a self-sealing, low permeability barrier. It is used to line the base of landfills to prevent migration of leachate, for quarantining metal pollutants of groundwater, and for the sealing of subsurface disposal systems for spent nuclear fuel. Similar uses include making slurry walls, waterproofing of below-grade walls, and forming other impermeable barriers, e.g., to seal off the annulus of a water well, to plug old wells. It is also used to form a barrier around newly planted trees to constrain root growth so as to prevent damage to nearby pipes, footpaths and other infrastructure.

      Sodium bentonite can also be "sandwiched" between synthetic materials to create geo-synthetic clay liners (GCL) for the aforementioned purposes. This technique allows for more convenient transport and installation, and it greatly reduces the volume of sodium bentonite required.

      Sodium bentonite is also used in a variety of pet care items such as cat litter to absorb the odour and surround the feces.

      Various surface modifications to sodium bentonite improve some rheological or sealing performance in geoenviromental applications, for example, the addition of polymers.

      Calcium bentonite

      Calcium bentonite is a useful adsorbent of ions in solution, as well as fats and oils, being a main active ingredient of fuller's earth, probably one of the earliest industrial cleaning agents. Calcium bentonite may be converted to sodium bentonite (termed sodium beneficiation or sodium activation) to exhibit many of sodium bentonite's properties by a process known as "ion exchange" (patented in 1935 by Germans U Hofmann and K Endell). In common usage, this means adding 5–10% of a soluble sodium salt such as sodium carbonate to wet bentonite, mixing well, and allowing time for the ion exchange to take place and water to remove the exchanged calcium.[citation needed] Some properties, such as viscosity and fluid loss of suspensions, of sodium-beneficiated calcium bentonite (or sodium-activated bentonite) may not be fully equivalent to those of natural sodium bentonite. For example, residual calcium carbonates (formed if exchanged cations are insufficiently removed) may result in inferior performance of the bentonite in geosynthetic liners

      Potassium bentonite

      Also known as potash bentonite or K-bentonite, potassium bentonite is a potassium-rich illitic clay formed from alteration of volcanic ash.

      Activated bleaching earth, a highly effective adsorbent essential in the refining process for the purification and decolourisation of edible and non-edible oils, fats, tallow, petroleum jelly, paraffin oil and waxes. As a kind of decolouring agent used for refining Oils. It can absorb and eliminate the pigment, aflatoxin and the carcinogenic substance of 3-4 benzpyrene in vegetable oil, in addition, it has strong ability of oil decolorization, high speed of filtering oil and low oil retention of filter cake. We mine, process and market all types of Bleaching Earth for all type of Fruits Juice, edible oils, non-edible oil and Vanaspati plants. It is used by many refineries in India, Sri Lanka, Africa and Malaysia with quality and consistency.

      Application of our Activated Bleaching Earth: 1. Refining of Vegetable/Edible oils like: Coconut, Cottonseed, Soybean, Sunflower, Rapeseed, Mustard, Peanut, Corn, Olive, Ricebran, Palm, Palm-kernel, Linseed, Castor, Jajoba Canola oils. 2 Refining of hydrogenated vanaspati ghee oils, Margarine shortening. 3. Refining of Animal Fats like tallow oil, fish oil, lard oil. 4. Refining of Mineral Oils like: Paraffins and waxes, Insulating oil, Rolling oil, Transformer Oil, White oil, Waste oil (lubricating oil), Industrial triglycerides and fatty acids used for paints, varnishes and soaps. 5. Other applications like: Solvents (for dry cleaning), Bleaching of sulphur, Effluent treatment plants.


      COST ESTIMATION

      Plant Capacity            90 MT/Day

      Land & Building (15,000 sq.mt.)    Rs. 22.31 Cr

      Plant & Machinery                    Rs. 4.57 Cr

      Working Capital for 2 Months    Rs. 9.73 Cr

      Total Capital Investment          Rs. 38.29 Cr

      Rate of Return                          50%

      Break Even Point                      36%


      CONTENTS

      INTRODUCTION

      TYPES

      SODIUM BETONIES

      CALCIUM BENTONITE

      POTASSIUM BENTONITE

      PRODUCT DESCRIPTION AND APPLICATION

      USES AND APPLICATIONS

      MEDICAL

      IN THAI FARMING

      BENTONITE SLURRY WALLS IN MODERN CONSTRUCTION

      CHEMICAL COMPOSITION

      PHYSICAL PROPERTIES

      SALIENT FEATURES

      BLEACHING EFFICIENCY:

      RETENTION OF OIL:

      ACID VALUE:

      RATE OF FILTRATION:

      CONTACT TIME IN THE BLEACHER:

      GRADES:

      B.I.S. SPECIFICATIONS

      MARKET OVERVIEW

      PROJECTED DEMAND

      PRICING AND DISTRIBUTION

      PRESENT MANUFACTURERS OF ACTIVATED BLEACHING EARTH

      REQUIREMENTS FOR BLEACHING EARTH OF INDIAN ORIGIN USED FOR BLEACHING VEGETABLE OILS

      METHODS OF SAMPLING AND TEST FOR BLEACHING EARTH

      GENERAL PRECAUTIONS

      SCALE OF SAMPLING

      TABLE 1: NUMBER OF CONTAINERS TO BE SELECTED FOR SAMPLING    (CLAUSES 2.2.2 AND 2.2.3.1)

      TEST SAMPLES AND REFEREE SAMPLES

      NUMBER OF TESTS

      CRITERION FOR CONFORMITY

      TABLE 2 CRITERIA FOR CONFORMITY

      QUALITY OF REAGENTS

      MOISTURE CONTENT

      BULK DENSITY

      SIEVE ANALYSIS

      B) APPARATUS

      D) CALCULATION

      BLEACHING EFFICIENCY

      B) REAGENTS

      C) APPARATUS

      D.2.1. CALCULATION

      ASH

      B) APPARATUS

      D) CALCULATION

      PERFORMANCE TEST

      REQUIREMENTS

      TABLE 1 REQUIREMENTS FOR SPENT BLEACHING EARTH

      PACKING AND MARKING

      SAMPLING

      RAW MATERIAL AND ITS PROPERTIES

      MONTHLY RAW MATERIAL REQUIREMENTS

      BLEACHING CLAYS

      NOMENCLATURE

      ACID-ACTIVATION VS. ACID-TREATMENT OF THE CLAY

      OTHER TYPES OF ACTIVATION OF BENTONITES AND OF DIFFERENT INERALS

      NATURE OF THE ACID ACTIVATION OF NON-SWELLING-SMECTITES

      CRYSTAL STRUCTURE OF THE SMECTITE CLAY MINERALS

      THE IMPORTANCE OF THE INTERLAYER EXCHANGEABLE CATIONS

      THE EFFECT OF THE ACID TREATMENTS ON THE CRYSTAL STRUCTURE OF THE SMECTITES

      MANUFACTURING PROCESS

      FLOW DIAGRAM FOR ACTIVATED BLEACHING EARTH

      PRODUCTION PROCESS

      PLANT LAYOUT

      OTHER RELATED INFORMATIONS

      ADSORPTION OF ACID DYES FROM AQUEOUS SOLUTION ON ACTIVATED    BLEACHING EARTH

      MATERIALS AND METHODS

      MATERIALS

      ADSORPTION KINETICS

      TABLE 1: SOME PROPERTIES OF THE ACID DYES USED IN THE PRESENT STUDY A

      FIG. 1: MOLECULAR STRUCTURES OF ACID DYES USED IN THIS STUDY: (A) ACID ORANGE 51, (B) ACID BLUE 9, AND (C) ACID ORANGE 10

      TABLE 2: PROPERTIES OF ACTIVATED BLEACHING EARTH USED IN THIS STUDY A

      CONCLUSIONS

      COMPLETE PLANT SUPPLIERS

      SUPPLIERS OF PLANT AND MACHINERY

      FILTER PRESS

      CONVEYOR BELT

      PULVERISER/GRINDER

      STAINLESS STEEL TANKS

      BALL MILL

      KILN

      DISINTEGRATORS

      JAW CRUSHER

      BUCKET ELEVATORS

      BOILERS

      DIESEL GENERATOR

      SUPPLIER OF RAW MATERIALS

      SULPHURIC ACID

      BENTONITE

      POLYTHENE BAGS


      APPENDIX – A:

      01. PLANT ECONOMICS

      02. LAND & BUILDING

      03. PLANT AND MACHINERY

      04. OTHER FIXED ASSESTS

      05. FIXED CAPITAL

      06. RAW MATERIAL

      07. SALARY AND WAGES

      08. UTILITIES AND OVERHEADS

      09. TOTAL WORKING CAPITAL

      10. TOTAL CAPITAL INVESTMENT

      11. COST OF PRODUCTION

      12. TURN OVER/ANNUM

      13. BREAK EVEN POINT

      14. RESOURCES FOR FINANCE

      15. INSTALMENT PAYABLE IN 5 YEARS

      16. DEPRECIATION CHART FOR 5 YEARS

      17. PROFIT ANALYSIS FOR 5 YEARS

      18. PROJECTED BALANCE SHEET FOR (5 YEARS)

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