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    High Carbon Ferrochrome Production Plant (70 MT/Day)

    High Carbon Ferrochrome Production Plant (70 MT/Day)
    High Carbon Ferrochrome Production Plant (70 MT/Day)
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      HIGH CARBON FERROCHROME PRODUCTION PLANT

      [EIRI/EDPR/4631] J.C.: 2848US$


      High Carbon Ferrochrome/Charge Chrome are produced in Submerged Electric Arc Furnace is of stationary and semi-closed top.

      The process adopted is high temperature smelting process, in which chrome ore is reduced with the help of the reductant like coke. The gangue material in the ore is removed by suitable fluxing material. The raw materials like chrome ore, coke and fluxes are selected to obtain desired grade in the output as per the requirement of the customer. All the incoming raw materials are analyzed for quality before feeding into the furnace.

      The charge mix containing chrome, coke and flux is taken into the furnace with the help of computerized batching system. The necessary heat required for a process is provided by electric energy to the charge through the electrodes. At the tip of the electrode electric arcing taken place and generates high heat energy to smelt chrome ore into HC Fe Cr/Charge Chrome with coke (carbon) as reducing agent. In the process of smelting, gangue content in chrome ore forms the slag whose composition and fluidity are maintained by flux addition. 

      Both hot metal and slag are tapped at regular intervals depending upon the power consumption. The slag is granulated. The metal is handled through decantation process and skimming process before cast in the metal casting beds prepared with slag dust and plastic clay. The metal after cooling is handled manually into different size fractions as per the requirement of the customer. This is a continuous process in which charge mix is taken regularly and slag & metal taped at regular intervals. Stage wise inspection is carried out to get the quality product.


      COST ESTIMATION

      Plant Capacity            70 MT/Day  

      Land & Building (1,01,170 sq.mt.)    US$ 19.85 Lac    

      Plant & Machinery                    US$ 42.00 Lac 

      Working Capital for 2 Months    US$ 45.23 Lac 

      Total Capital Investment          US$ 1.10 Cr 

      Rate of Return                          79%

      Break Even Point                      37%


      CONTENTS

      INTRODUCTION

      DEMAND – SUPPLY GAP

      PROJECT BACKGROUND

      PLANT RATING AND CAPACITY

      CHROME ORE

      RAW MATERIAL REQUIREMENT

      WATER

      POWER SUPPLY CONNECTIVITY

      ENVIRONMENTAL ASPECTS

      SOLID WASTE GENERATION

      SOLID WASTE MANAGEMENT

      LIQUID EFFLUENT/WATER POLLUTION MANAGEMENT

      ENERGY CONSERVATION

      IDENTIFICATION OF THE PROJECT & PROJECT PROPONENT

      PROJECT

      A. SMELTER:

      B. BRIQUETTING PLANT:

      NEED FOR THE PROJECT AND IT’S IMPORTANCE TO THE COUNTRY 

      PROJECT DESCRIPTION WITH PROCESS DETAILS 

      RAW MATERIALS REQUIRED ALONG WITH ESTIMATED QUANTITY, LIKELY SOURCE, MARKETING AREA OF FINANCIAL PRODUCT/S, MODE OF TRANSPORT OF RAW MATERIAL AND FINISHED PRODUCT

      ANNUAL REQUIREMENTS OF MAJOR RAW MATERIALS

      A. CHROME ORE

      A. ANTHRACITE

      B. COKE

      C. BAUXITE

      E. QUARTZITE

      TABLE NO.3.3: COMPOSITION OF COMMERCIAL GRADES OF HIGH CARBON FERRO CHROME

      BRIQUETTING PLANT

      DESIGN BASIS 

      PLANT CAPACITY

      FEED

      CHEMICAL ANALYSES OF FEED ORE

      ADDITIVES

      CHARACTERISTICS OF MOLASSES AND HYDRATED LIME

      PRODUCT

      BRIQUETTE CHARACTERISTICS

      PROCESS DESCRIPTION

      SMELTER

      QUANTITY OF WASTES SHOULD BE GENERATED (LIQUID AND SOLID) AND SCHEME FOR THEIR MANAGEMENT / DISPOSAL.

      SOLID WASTE MANAGEMENT

      LIQUID EFFLUENT/WATER POLLUTION MANAGEMENT

      SMELTING OF HC FE-CR FERRO-ALLOY

      FIG 1 SCHEMATICS OF FE-CR SMELTING IN SAF

      ZONES IN A SAF

      FIG 2 SCHEMATIC DIAGRAM OF THE REACTION ZONES IN SUBMERGED ARC FURNACE FOR FE-CR PRODUCTION

      PROCESS REACTIONS

      RAW MATERIALS

      PRODUCTION PROCESS

      THE FOLLOWING ARE THE IMPORTANT CHARACTERISTICS OF PRODUCTION PROCESS OF FE-CR IN A SAF:

      HIGH CARBON FERROCHROME: – SPECIFICATIONS

      USES AND APPLICATION

      RAW MATERIALS

      REDUCTANT

      FLUX

      AGGLOMERATION – BRIQUETTING PROCESS

      METAL RECOVERY PLANT (MRP)

      MARKET OVERVIEW

      KEY MARKET INSIGHTS 

      GLOBAL FERROCHROME MARKET SEGMENT ANALYSIS:

      GLOBAL FERROCHROME MARKET REGIONAL INSIGHTS:

      GLOBAL FERROCHROME MARKET KEY PLAYER

      RISING FOREIGN INVESTMENTS AND MANUFACTURING ACTIVITIES TO BOOST MARKET GROWTH

      DRIVING FACTORS

      HIGH USAGE IN THE STAINLESS STEEL INDUSTRY TO AID MARKET 

      EXPANSION

      RESTRAINING FACTORS

      AVAILABILITY OF SUBSTITUTES TO HINDER MARKET AUGMENTATION

      SEGMENTATION

      BY PRODUCT TYPE ANALYSIS

      HIGH CARBON SEGMENT TO LEAD OWING TO INCREASING USE IN STEEL INDUSTRY

      BY APPLICATION ANALYSIS

      STAINLESS STEEL SEGMENT TO DOMINATE THE MARKET DUE TO HIGH ADOPTION IN CONSTRUCTION INDUSTRY

      REGIONAL INSIGHTS

      KEY INDUSTRY PLAYERS

      STRATEGIC PLANNING ADOPTED BY COMPANIES TO STRENGTHEN THEIR MARKET SHARE

      KEY INDUSTRY DEVELOPMENTS:

      PRESENT MANUFACTURERS

      RAW MATERIAL SUPPLIERS

      SELECTION OF SITE & LOCATION OF PLANT

      ENVIRONEMENTAL MANAGEMENT PLAN

      SOURCES OF POLLUTION

      THE VARIOUS MEASURES PROPOSED TO MITIGATE THE IMPACT OF THESE POLLUTION SOURCES ON THE ENVIRONMENT ARE DISCUSSED BELOW:

      POLLUTION CONTROL MEASURES

      AIR POLLUTION

      WATER POLLUTION

      NOISE POLLUTION

      SOLID WASTE MANAGEMENT

      DISPOSAL OF SLAG FROM FERRO ALLOYS:

      PLANTATION

      SELECTION CRITERIA OF PLANT SPECIES FOR GREEN DEVELOPMENT PLANT

      SPECIFICATIONS/DESIGN DETAILS OF THE SUBMERGED ARC FURNACES (SAF) 

      PLANT LAYOUT

      SUPPLIERS OF PLANT AND MACHINERY

      PACKAGING MACHINE

      D.G. SET

      LABORATORY TESTING EQUIPMENTS

      PRINCIPLES OF PLANT LAYOUT

      PLANT LOCATION FACTORS

      PRIMARY FACTORS

      1. RAW-MATERIAL SUPPLY:

      2. MARKETS:

      3. POWER AND FUEL SUPPLY:

      4. WATER SUPPLY:

      5. CLIMATE:

      SPECIFIC FACTORS

      6. TRANSPORTATION:

      A. AVAILABILITY OF VARIOUS SERVICES AND PROJECTED RATES

      7. WASTE DISPOSAL:

      8. LABOR:

      9. REGULATORY LAWS:

      10. TAXES:

      11. SITE CHARACTERISTICS:

      12. COMMUNITY FACTORS:

      13. VULNERABILITY TO WARTIME ATTACK:

      14. FLOOD AND FIRE CONTROL:

      EXPLANATION OF TERMS USED IN THE PROJECT REPORT

      1. DEPRECIATION:

      2. FIXED ASSETS:

      3. WORKING CAPITAL:

      4. BREAK-EVEN POINT:

      5. OTHER FIXED EXPENSES:

      6. MARGIN MONEY:

      7. TERM LOANS:

      8. TOTAL LOAD:

      9. LAND AREA/MAN POWER RATIO:

      AMENITIES & FACILITIES

      LABORATORY

      REPAIR AND MAINTENANCE SHOP

      STORES

      PLANT OFFICE

      ANCILLARY BUILDINGS

      CANTEEN

      STATUTORY APPROVALS FROM GOVERNMENT

      DOCUMENTS REQUIRED FOR LICENSES 

      LIST OF DOCUMENTS:

      SWOL ANALYSIS

      STRENGTHS

      OPPORTUNITIES

      WEAKNESS

      LIMITATIONS

      ORGANIZATION CHART

      PROJECT CONSULTANT

      IMPLEMENTATION SCHEDULE


      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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