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    16mm Biomass Pallets Less Than 10%, Packaging Type : Plastic Bag

    ₹ 15 - ₹ 18 / Kilogram
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    • MOQ5 Ton
    • Packaging TypePlastic Bag
    • Density600-750 Kg/m³
    • ApplicationHeating Fuel
    • Moisture ContentLess Than 10%
    • Supply TypeManufacturer, Exporter, Supplier
    • Preferred Buyer Location All over the world
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    • calendar Member Since 1 Year
    • building Nature of Business Manufacturer
    • gst icon GST No. 24AAJCE0096Q1Z6

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    • Country of OriginIndia
    • ApplicationHeating Fuel
    • Packaging TypePlastic Bag
    • Density600-750 Kg/m³
    • Moisture ContentLess Than 10%
    • Ash ContentLess Than 2%
    • Calorific Value16-19 MJ/kg
    • CompatibilitySuitable For Biomass Boilers
    • Ash Melting TemperatureAbove 1200°C

    Production Biomass pellets are typically produced from a variety of organic materials, including wood, agricultural residues, energy crops, and even some types of waste. The production process involves several key steps.

    • Feedstock Collection: The first step involves the collection of suitable feedstocks, which can include rice straw , rice husk, sugarcane bagasse, sugarcane leaf & stick, Napier bullet grass and other organic materials.
    • Drying: To reduce the moisture content and improve combustion efficiency, the collected feedstock is dried to a specific moisture level.
    • Size Reduction: The dried feedstock is then processed through chippers or grinders to achieve a uniform particle size.
    • Palletisations: The processed material is compressed under high pressure through a pellet mill, resulting in the formation of cylindrical pellets. No binders or chemicals are usually added during this process, as the natural lignin content in the biomass acts as a binding agent.
    • Cooling and Packaging: The newly formed pellets are cooled and then packaged for distribution and use.
    Production Biomass pellets are typically produced from a variety of organic materials, including wood, agricultural residues, energy crops, and even some types of waste. The production process involves several key steps.
        • Feedstock Collection: The first step involves the collection of suitable feedstocks, which can include rice straw , rice husk, sugarcane bagasse, sugarcane leaf & stick, Napier bullet grass and other organic materials.
        • Space Heating: Pellet stoves and pellet boilers are popular choices for residential and commercial space heating due to their efficiency and low emissions.
        • Industrial Processes: Some industries use biomass pellets as a source of heat for drying processes or as a supplementary fuel in manufacturing.
        • Combined Heat and Power (CHP): In combined heat and power systems, biomass pellets are utilized to generate both electricity and useful heat simultaneously.
        • Animal Bedding: In the agricultural sector, biomass pellets are used as bedding material for livestock, providing a comfortable and absorbent surface.

         

      • Production Biomass pellets are typically produced from a variety of organic materials, including wood, agricultural residues, energy crops, and even some types of waste. The production process involves several key steps.

     

    • Renewable Energy Source: They are derived from renewable resources, making them a sustainable alternative to fossil fuels.
    • Reduced Greenhouse Gas Emissions: Biomass pellets produce lower greenhouse gas emissions compared to fossil fuels, contributing to climate change mitigation.
    • Waste Utilization: They can be made from agricultural residues and forestry byproducts, reducing waste and promoting resource efficiency.
    • Energy Efficiency: Biomass pellet combustion is highly efficient, resulting in reduced energy consumption and cost savings.
    • Energy Security: Using locally sourced biomass can enhance energy security by reducing dependence on imported fossil fuels.

     

    • Environmental Impact While biomass pellets have several environmental benefits, their production and use can also raise environmental concerns. These include:

     

    • Land Use Change: Large-scale biomass production may lead to land use changes that can impact ecosystems and biodiversity.
    • Air Quality: Improper combustion or low-quality pellets can emit particulate matter and other pollutants, affecting air quality
    • Sustainable Sourcing: Sustainable forestry and agriculture practices are crucial to ensuring that biomass production remains environmentally friendly.
    • Transportation Emissions: The transport of biomass feedstock over long distances can result in carbon emissions.


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