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    Detailed Project Report on ferric and non ferric alum

    Detailed Project Report on ferric and non ferric alum
    Detailed Project Report on ferric and non ferric alum
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      FERRIC AND NON FERRIC ALUM [CODE NO3667]  

      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.

      Alum are represented by the general formula R1/2 SO4, R2"(SO4)3.24.H2O. Where R and R"are respectively monovalent and trivalent radicals. They are usually the double salts of ammonium, potassium or sodium sulphate with aluminium. Chromium or iron sulphate and are readily prepared by concentrating and cooling a solution containing molecular proportions of the Component Sulphate.

      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.


      COST ESTIMATION

      Plant Capacity            20 MT/Day       
      Land & Building (2000 sq.mt.)      Rs. 1.33 Cr         
      Plant & Machinery                      Rs. 2 Cr     
      Working Capital for 2 Months     Rs. 1 Cr
      Total Capital Investment              Rs. 4.54 Cr
      Rate of Return            27%                   
      Break Even Point             62%                
       
            
      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?    
      TREATMENT TO REMOVE ORGANIC CONTAMINANTS    
      B.I.S. SPECIFICATIONS    
      SPECIFICATIONS OF ALUMINIUM SULPHATE (NON FERRIC)    
      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 %)    
      QUANTITY REQUIRED DAILY FOR 25 TPD ALUM PLANT    
      RAW MATERIALS    
      BAUXITE    
      THE RANGE OF COMPOSITION OF BAUXITES IS USUALLY    
      THE BEST FRENCH WHITE BAUXITE CONTAINS    
      MARKET SURVEY    
      MARKET OVERVIEW OF ALUMINIUM SULPHATE    
      INDIAN DEMAND FOR ALUM    
      INSTALLED CAPACITY PRODUCTION AND CAPACITY UTILIZATION OF ALUM    
      APPARENT CONSUMPTION OF ALUM    
      ESTIMATED DEMAND    
      GLOBAL SCENARIO OF ALUM    
      IMPORTANT GLOBAL MANUFACTURERS    
      PRESENT MANUFACTURERS/SUPPLIERS OF FERRIC & NON FERRIC ALUM    
      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 ALUMINIUM SULPHATE (ALUM)    
      CHEMICAL REACTION    
      HEATING AND COOLING REQUIREMENTS    
      HEATING REQUIREMENT    
      COOLING REQUIREMENT    
      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    
      DETERMINATION OF INSOLUBLE MATTER    
      REAGENTS    
      PROCEDURE    
      CALCULATION    
      DETERMINATION OF PH    
      PROCEDURE    
      DETERMINATION OF HEAVY METALS    
      APPARATUS    
      REAGENTS    
      STANDARD LEAD SOLUTION    
      PROCEDURE    
      DETERMINATION OF IRON    
      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    
      GRAVIMETRIC METHOD    
      REAGENTS    
      PROCEDURE    
      EDTA METHOD    
      REAGENTS    
      ABSOLUTE ALCOHOL    
      ACETIC ACID    
      AMMONIUM ACETATE BUFFER SOLUTION    
      PROCEDURE    
      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    
      SEQUENCES IN ALUM MANUFACTURE    
      BLOCK DIAGRAM TO PRODUCE ALUMINIUM SULPHATE NON FERRIC (17% TO 18%) ALUMINA CONTENT IN GRANULES (2MM TO 4MM) AND FLAKES FORM    
      ALUM (FERRIC AND NON-FERRIC)    
      MANUFACTURING PROCESS    
      WHAT IS ALUM AND HOW DOES IT CONTROL ALGAE?    
      CHEMICAL COMPOSITION OF FERRIC ALUM    
      GRADE 3    
      CHEMICAL COMPOSITION OF NON-FERRIC ALUM    
      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    
      PLANT LAYOUT    
      COMPLETE PLANT SUPPLIERS OF FERRIC & NON-FERRIC ALUM PLANT    
      SUPPLIERS OF RAW MATERIALS    
      SUPPLIERS OF PLANT AND MACHINERY    
      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)    
      BAUXITE    
      SULPHURIC ACID    
      BARIUM SULPHIDE    
      SUPPLIERS OF RAW MATERIALS (GLOBAL)    
      SUPPLIERS OF PLANT & MACHINERY    
      REACTOR    
      EVAPORATORS    
      GRADING SCREEN/ VIBRATING SCREEN    
      COOLING TOWERS    
      BOILERS    
      CRUSHER    
      MATERIAL HANDLING EQUIPMENTS    
      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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