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    Bio Coal from Waste (Capacity: 100 MT/Day)

    Bio Coal from Waste (Capacity: 100 MT/Day)
    Bio Coal from Waste (Capacity: 100 MT/Day)
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      BIO COAL FROM WASTE (CAPACITY: 100 MT/DAY)

      [EIRI/EDPR/4541] J.C.: 2758XL


      INTRODUCTION

      Bio coal briquettes are one of the best alternatives to conventional coal. As we all know with an increased population it’s becoming more difficult to manage resources day by day. To understand the importance of bio coal briquettes let us first discuss the energy crisis. 

      In today’s world the energy crisis is the major concern. The limited natural resources that are used to power industrial society are diminishing as the demand rises. These natural resources such as conventional coal are in limited supply. While they do occur naturally, it can take thousands of years to replenish. Clearly demands are increasing but supply is limited! So we need to look for an alternative and that’s bio coal briquette. Demand for coal briquettes in the world is increasing day by day as it’s an eco-friendly option to choose.

      India in October 2021 faced a power crisis due to the dwindling supply of coal which is the primary source of electricity generation. Coal reserves are critically low in 12 states. This was due to the heatwaves across the country. Moreover, the increasing demand of electrical devices has raised the need for more electricity generation. The unexpected demand for energy has once again brought the country’s coal shortage to the forefront. The coal shortage was largely blamed on low supply of coal from mines. As per the data from the Union Ministry of Coal, this year, the production by Coal India Ltd has increased by 23 percent, from Singareni Collieries Company Ltd by 34.2 percent and from captive mines by 40 percent. The major role of bio coal briquettes is to tackle the energy crisis. I know that most of you don’t feel connected to reality unless the price of gas goes up or there are lines at the gas station. So we should amidst that ongoing energy crisis is getting worse, despite many efforts. But in recent years, it is observed that there has been a huge push to move toward clean energy sources. No doubt those bio coal briquettes are one of them. This alternative to conventional coal is not only great for the environment, but they’re also safer to use and have lots of different benefits.

      Bio coal briquettes are a biofuel substitute to coal and charcoal. They’re made from organic biomass. Briquettes are mostly used in the developing world, where cooking fuels are not as easily available. Also there has been a move to the use of briquettes in the developed world. Where they are used to heat industrial boilers in order to produce electricity from steam. The briquettes are co fired with coal in order to create the heat supplied to the boiler. Connect with our biogas consultants here.

      Bio coal briquettes, mostly made of green waste and other organic materials, are commonly used for electricity generation, heat, and cooking fuel. These compressed compounds contain various organic materials, including rice husk, bagasse, ground nut shells, municipal solid waste, agricultural waste. The composition of the coal briquettes varies by area due to the availability of raw materials. The raw materials are gathered and compressed into briquette in order to burn longer and make transportation of the goods easier. 

      Bio-coal development is becoming important due to many factors including the rising cost of oil, natural gas and electricity and the scarcity of fossil fuels. The need to find alternatives to fossil fuels and reduce Greenhouse Gas emissions has prompted interest in Bio-coals by energy specialists around the world. Bio Coal Briquetting is the process of converting solid agricultural waste into high density and energy concentrated fuel briquettes. These Briquettes also called as White Coal are ready substitute of Coal/wood in industrial boiler and brick kiln for thermal application. Bio-Coal Briquetting plants are of various sizes which converts agricultural waste into solid fuels. Briquettes are ready substitute of Coal/wood in industrial boiler and brick kiln for thermal application. This development can significantly reduce greenhouse gases and heating costs and sustainably assist the development of rural communities.

      Groundnut Shell is identified as ideal biomass for Bio-coal production due to low moisture contents, high net energy yield per hectare and low cost of production. These types of Shells are most favorably viewed, as it easily adapts to marginal soils and arid climates with minimal fertility and management requirements. Crushed Ground Nut Shells have a high Calorific value, hence, they are in most demand nowadays in the market. Ramit Bio-Coal (www.biocoalindia.com) having factories at Mumbai, Ahamadabad and Rajkot is specialized in making Bio-Coal from Ground Nut Shells. Bio-Coal made from Ground Nut Shells by Ramit Bio Coal is a viable energy option suitable for widespread application as it is energetically efficient, economical, convenient and user friendly. 


      COST ESTIMATION

      Plant Capacity            100 MT/Day  

      Land & Building (10,000 sq.mt.)    Rs. 5.55 Cr    

      Plant & Machinery                    Rs. 2.12 Cr 

      Working Capital for 1 Month    Rs. 1.77 Cr 

      Total Capital Investment          Rs. 10.35 Cr 

      Rate of Return                          22%

      Break Even Point                      71%


      CONTENTS

      INTRODUCTION

      BRIQUETTES ARE CHEAPER THAN COAL.

      RAW MATETRIAL FOR BIO COAL BRIQUETTES

      BIO COAL TECHNIQUE

      PROPERTIES OF BIOCOAL

      B.I.S. SPECIFICATION

      DIFFERENCE BETWEEN COAL AND BRIQUETTE

      DIFFERENE BETWEEN BRIQUETTE AND PELLETS

      IMPORTANCE OF NAPIER GRASS AS COMPARE TO OTHER BIOMASS

      OTHER THAN THIS BIO COAL BRIQUETTES USES IN VARIOUS 

      INDUSTRIES LIKE:-

      ADVANTAGE OF BIO COAL

      SALIENT FEATURE OF BIO COAL

      TABLE: COMPARATIVE COST OF STEAM GENERATION

      PROCESS FLOW DIAGRAM OF BIOCOAL

      CALORIFIC VALUE OF RAW MATERIALS

      COMPOSITION OF BIOMASS BRIQUETTESWITH OTHER FOSSIL FUEL

      BIOMASS CO-FIRING FOR COAL POWER PLANT

      COAL POWER PLANTS THAT SUCCESSFULLY CO-FIRED BIOMASS

      SKEWED DEMAND-SUPPLY

      GOVERNMENT INTERVENTION

      BIOMASS ELECTRICITY

      SPS BAKSHI, THE HEAD OF THE PLANT, SAID:

      MARKET OVERVIEW OF BIO COAL

      OPTION OF BIOMASS

      1. RICE HUSK

      2. SAW DUST

      3. BAGASSE

      4. GROUNDNUT SHELL

      5. AGRICULTURAL WASTE

      6. FOREST WASTE

      7. WOOD BIOMASS

      MARKETABILITY OF BIO COAL

      BOILERS:

      FURNACE & FOUNDRIES:

      BRICK KILNS:

      RESIDENTIAL & COMMERCIAL HEATING:

      TRAINING AND VIABILITY

      MARKET AND CONSUMERS

      PRESENT MANUFACTURERS & EXPORTERS OF BIO COAL BRIQUETTES

      COAL BRIQUETTES

      MANUFACTURING PROCESS OB BIO COAL

      PROCESS FLOW DIAGRAM

      TESTING METHOD AND STANDARD

      A) GCV (GROSS CALORIFIC VALUE):

      B) MOISTURE CONTENT:

      C) ASH CONTENT:

      D) HGI (HARDGROVE GRINDABILITY INDEX):

      E) FINES %:

      PRINCIPLES OF PLANT LAYOUT

      STORAGE LAYOUT:

      EQUIPMENT LAYOUT:

      SAFETY:

      PLANT EXPANSION:

      FLOOR SPACE:

      UTILITIES SERVICING:

      BUILDING:

      MATERIAL-HANDLING EQUIPMENT:

      RAILROADS AND ROADS:

      MAJOR PROVISIONS IN ROAD PLANNING FOR MULTIPURPOSE SERVICE ARE:

      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. TOTAL LOAD:

      8. LAND AREA/MAN POWER RATIO:

      PROJECT IMPLEMENTATION SCHEDULES

      INTRODUCTION

      PROJECT HANDLING

      PROJECT SCHEDULING

      PROJECT CONSTRUCTION SCHEDULE

      TIME SCHEDULE

      BIO COAL SUBSIDY

      FOR BIO COAL SUBSIDING

      SUPPLIERS OF PLANT AND EQUIPMENTS FOR BIO COAL BRIQUETTES

      SUPPLIERS OF HAMMER MILLS

      SUPPLIERS OF MATERIAL HANDLING EQUIPMENTS

      SUPPLIERS OF RAW MATERIAL

      SUPPLIERS OF RICE HUSK

      SUPPLIERS OF SAW DUST

      SUPPLIERS OF COCONUT SHELL


      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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