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    Detailed Project Report on ferric and non ferric alum production

    Detailed Project Report on ferric and non ferric alum production
    Detailed Project Report on ferric and non ferric alum production
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      FERRIC AND NON FERRIC ALUM PRODUCTION

       [CODE NO.4345] 

      Aluminium sulfate (Al2(SO4)3), commonly called alum, is produced as white crystals which are non-combustible and soluble in water. This dry, hydrate (Al2(SO4)3.14H2O) is 17% Al2O3 and is also sold as a 47% w/w aluminium sulfate solution which is 8% Al2O3. It is also sold in solid form as kibbled, ground or dust.

      Ferric and Non Ferric Alum is marketed in various grades. The cheapest grade called "alum cake". Potash alum also known as alum alumen.

      Ferric alumin is aluminium sulphate containing iron obtained from the bauxite ore. Potash alum is prepared from its naturally occurring minerals such as alunite and Ratinite, but in India these do not occur in appreciable quantities.  Alum was formerly prepared from alum shales by roasting them in year and leaching it out with water. Alum is now produced in India by crystallizing   together equivalent produced in India by Crystallizing together equivalent proportion of potassium sulphate and aluminium sulphate. The solution is concentrated and the crystals are separated out are melted to yield lump alum or recrystalized to obtain large crystals.

      There are two broad categories of Alum as follows: Ferric Alum which is generally made from Bauxite and Iron free Alum (non Ferric Alum), generally made from Alumina. Commercially, hydrated AluminumSulphate is called Alum and is sold under such names as Filler Alum, Commercial Alum, and Paper Maker’s Alum etc. Technical grade AluminumSulphate is provided in two forms: a partially dehydrated solid and an aqueous solution of this material containing about 27% Al2 (SO4)3... The reagent grade Al2 (SO4)3.18H2O is slightly, odorless, colorless monoclinic crystals, having a specific gravity of 1.69. The solid material, `Dry Alum’ is partially crystalline and may be discolored to a brownish-green owing to impurities (chiefly iron) in the ores from which it is made. The solution form, `liquid Alum’ may exhibit a similar discoloration.  The major area of use for Alum is in water treatment and clarification. Its clarifying action is attributed to Aluminum hydroxide formation by hydrolysis. This, in turn, carries down al

      l the colloidal impurities and forms a slimy layer at the bottom. Sizing of Paper the other major areas of use is in sizing of paper. It reacts with sodium resinate to give insoluble Aluminumresinate. For sizing of paper, Alum should be free from Ferric ions or else the paper will be discolored. Ferrous ions do not harm since they form a soluble colorlessresinate which, however, would represent a loss of resinate. Alum imparts certain degree of resistance to penetration by liquids during sizing of paper. Alum is also required in various other industries like Dyes, Food, Petroleum, Pharmaceuticals, fire-proofing, tanning etc.

      COST ESTIMATION

      Plant Capacity                                    20 MT./Day

      Land & Building (2000 sq.mt.)  On Lease

      Plant & Machinery                              Rs. 93 Lac

      Working Capital for 1 Month           Rs. 70 Lac

      Total Capital Investment                  Rs. 2.51 Cr

      Rate of Return                                    24%

      Break Even Point                               73%


      • INTRODUCTION
      • CHARACTERISTICS & SPECIFICATION
      • SPECIFICATION OF ALUM
      • USES & APPLICATIONS
      • APPLICATIONS:
      • USES OF ALUM
      • THE MAIN USES OF ALUM ARE:
      • OTHER MAJOR USES
      • WHAT HAPPENS AT A WATER TREATMENT PLANT?
      • SCREENING:
      • PRE-SEDIMENTATION:
      • MICRO-STRAINING:
      • CHEMICAL PRETREATMENT:
      • SOFTENING:
      • COAGULATION AND FLOCCULATION:
      • SEDIMENTATION:
      • FILTRATION:
      • DISINFECTION:
      • FLUORIDATION:
      • TREATMENT TO REMOVE ORGANIC CONTAMINANTS
      • TESTING:
      • B.I.S. SPECIFICATIONS
      • SPECIFICATIONS OF ALUMINIUM SULPHATE (NON FERRIC)
      • QUALITY CONTROL AND STANDARD IS: 299-1989 (FERRIC ALUM)
      • NON FERRIC ALUM
      • NON FERRIC ALUM - PRODUCT CHARACTERISTICS:
      • NON FERRIC ALUM - PRODUCT APPLICATION:
      • NON FERRIC ALUM - BENEFITS
      • SPECIFICATION OF ALUMINUM SULPHATE
      • (NON-FERRIC ALUM) (SLABE/LUMPS/POWDER)
      • (FERRIC ALUM) (SLABE/LUMPS)
      • FERRIC & NON-FERRIC ALUM PLANT
      • MANUFACTURING PROCESS:
      • THE RAW MATERIALS ARE:
      • FOR FERRIC ALUM:
      • FOR NON FERRIC ALUM (ALUMINUM SULPHATE):
      • SPECIFIC RAW MATERIAL CONSUMPTION (FOR ALUM CONTAINING ALUMINA AS AL2O3 16 %)
      • RAW MATERIALS
      • BAUXITE
      • THE RANGE OF COMPOSITION OF BAUXITES IS USUALLY:
      • THE BEST FRENCH WHITE BAUXITE CONTAINS:
      • MARKET OVERVIEW OF ALUMINIUM SULPHATE
      • ALUMINIUM SULPHATE MARKET, BY PRODUCT TYPE
      • ALUMINIUM SULPHATE MARKET, BY END USER
      • ALUMINIUM SULPHATE MARKET, BY GEOGRAPHY
      • INDIAN DEMAND FOR ALUM
      • PAPER INDUSTRY
      • WATER TREATMENT
      • MISCELLANEOUS APPLICATIONS
      • IMPORTANT GLOBAL MANUFACTURERS
      • PRESENT MANUFACTURERS/SUPPLIERS OF FERRIC & NON FERRIC ALUM
      • TECHNIQUE IN ALUM PRODUCTION
      • PROCESS OUTLINES FOR ALUMINIUM SULFATE MANUFACTURE
      • RAW MATERIALS
      • STEP 1 - REACTING THE RAW INGREDIENTS.
      • STEP 2 - MAKING THE FINAL PRODUCT
      • ENVIRONMENTAL IMPLICATIONS
      • MANUFACTURING PROCESS OF NON FERRIC ALUM
      • MASS BALANCE
      • PROCESS FLOW DIAGRAM WITH MATERIAL BALANCE BASIS: 1 TON
      • DETAILED PROCESS DESCRIPTION
      • (A) BAUXITE PREPARATION SECTION:-
      • (B) REACTION SECTION:-
      • WASTE & EMISSION'S:-
      • PACKING & MARKING:-
      • PACKING:-
      • MARKING:-
      • REQUIREMENT FOR ALUMINIUM SULPHATE (NON FERRIC)
      • METHODS OF TEST FOR ALUM, NON FERRIC (ALUMINIUM SULFATE)
      • QUALITY OF REAGENTS:-
      • PREPARED SAMPLE:-
      • PROCEDURE:-
      • DETERMINATION OF INSOLUBLE MATTER
      • REAGENTS:-
      • PROCEDURE:-
      • DETERMINATION OF PH:-
      • PROCEDURE:-
      • DETERMINATION OF HEAVY METALS:-
      • OUTLINE OF THE METHOD:-
      • APPARATUS:-
      • REAGENTS:-
      • STANDARD LEAD SOLUTION:-
      • PROCEDURE:-
      • DETERMINATION OF IRON:-
      • OUTLINE OF THE METHOD:-
      • APPARATUS:-
      • REAGENTS:-
      • BUTANOLIC POTASSIUM THIOCYANATE SOLUTION:-
      • STANDARD IRON SOLUTION:-
      • PROCEDURE:-
      • TEST FOR CHLORIDES:-
      • REAGENTS:-
      • PROCEDURE:-
      • DETERMINATION OF ARSENIC
      • PROCEDURE:-
      • DETERMINATION OF THE AMMONIUM SALTS
      • OUTLINE OF THE METHOD:-
      • APPARATUS:-
      • REAGENTS:-
      • NESSLER SOLUTION:-
      • STANDARD AMMONIUM CHLORIDE SOLUTION:-
      • PROCEDURE:-
      • DETERMINATION OF ALUMINIUM
      • TWO METHODS ARE PRESCRIBED, NAMELY
      • GRAVIMETRIC METHOD
      • REAGENTS:-
      • PROCEDURE:-
      • EDTA METHOD:-
      • REAGENTS:-
      • ABSOLUTE ALCOHOL
      • ACETIC ACID:-
      • AMMONIUM ACETATE BUFFER SOLUTION:-
      • PROCEDURE:-
      • CALCULATION:-
      • DETERMINATION OF SODIUM:-
      • DETERMINATION OF POTASSIUM:-
      • SAMPLING OF ALUM, NON FERRIC (ALUMINIUM SULPHATE)
      • GENERAL REQUIREMENTS OF SAMPLING:-
      • SCALE OF SAMPLING:-
      • TABLE 2 SCALE OF SAMPLING
      • PREPARATION OF TEST SAMPLES
      • NUMBER OF TESTS
      • CRITERION FOR CONFORMITY
      • BLOCK DIAGRAM TO PRODUCE ALUMINIUM SULPHATE NON FERRIC (17% TO 18%) ALUMINA CONTENT IN GRANULES (2MM TO 4MM) 
      • AND FLAKES FORM
      • CHEMICAL COMPOSITION OF FERRIC ALUM:
      • GRADE 3
      • CHEMICAL COMPOSITION OF NON-FERRIC ALUM:
      • USES:
      • METHOD OF PRODUCING ALUMINIUM SULFATE SOLUTION
      • MATERIAL SAFETY DATA SHEET OF ALUMINIUM SULPHATE
      • HAZARDS IDENTIFICATION
      • EMERGENCY OVERVIEW
      • POTENTIAL HEALTH EFFECTS
      • CARCINOGEN STATUS:
      • COMPOSITION/INFORMATION ON INGREDIENTS
      • FIRST AID MEASURES
      • GENERAL INFORMATION:
      • FIRE FIGHTING MEASURES
      • ACCIDENTAL RELEASE MEASURES
      • HANDLING AND STORAGE
      • PHYSICAL AND CHEMICAL PROPERTIES:
      • STABILITY AND REACTIVITY
      • DISPOSAL CONSIDERATIONS
      • TRANSPORT INFORMATION
      • MATERIAL SAFETY DATA SHEET FOR DRY ALUM
      • COMPLETE PLANT SUPPLIERS OF FERRIC & NON-FERRIC ALUM PLANT
      • ADDRESSES OF PLANT AND MACHINERY SUPPLIERS
      • SUPPLIERS OF RAW MATERIALS
      • TO GET REQUIRED CERTIFICATION & OTHER FORMALITES FOR 
      • EXPORTING NON FERRIC ALUMINIUM SULPHATE
      • ADDRESSES OF CONSULTANTS
      • ADDRESSES OF PILOT PLANT SUPPLIERS
      • SUPPLIERS OF RAW MATERIAL (INDIAN)
      • SUPPLIERS OF BAUXITE
      • SUPPLIERS OF SULPHURIC ACID
      • SUPPLIERS OF BARIUM SULPHIDE
      • SUPPLIERS OF RAW MATERIALS (GLOBAL)
      • OTHERS EQUIPMENTS SUPPLIERS
      • SUPPLIERS OF REACTOR
      • SUPPLIERS OF EVAPORATORS
      • SUPPLIERS OF GRADING SCREEN/ VIBRATING SCREEN
      • SUPPLIERS OF COOLING TOWERS
      • SUPPLIERS OF BOILERS
      • SUPPLIERS OF CRUSHER
      • SUPPLIERS OF MATERIAL HANDLING EQUIPMENTS
      • SUPPLIERS OF LABORATORY TESTING EQUIPMENTS
      • SUPPLIERS OF PLANT AND MACHINERIES (IMPORTED)

      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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