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Biomass pelletizing: Characterization of cow dung assisted solid recovered bio-fuel from agricultural waste

机译:生物质造粒:牛粪的表征来自农业废物的生物燃料

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In this study preparation and characterization of four biomass pellets i.e. bamboo leaf, mustard straw, rice husk and wood mix were carried out with cow dung that is considered to be a potential binder to improve the physicochemical properties of pellets. Initially the samples were dried at 105°C to remove moisture content up to 15% and then pellets were prepared using biomass and cow dung in 1:1. The samples were characterized using FT-IR, compressive strength and TGA analysis during which their compositional, mechanical, thermal and physicochemical properties were analyzed. The energy density of biomass pellets was also calculated. Bamboo leaf being the promising candidate exhibited improved properties compared to other biomass pellets with maximum compressive strength of 11.6MPa and energy density of 19434.8 MJ/m3 along with enhanced structural properties. Whereas wood mix indicated the least compressive strength i.e. 3.73MPa but highest energy density i.e. 20456.5 MJ/m3 and good thermal characteristics. The lignin content present in cow dung is one of the main sources that makes it good biofuel. The experimental results revealed that cow dung is a most suitable binder as it is abundantly available and also increases the durability of biomass pellets comparative to other binders used in different studies.
机译:在这项研究中,用牛粪进行了四种生物质颗粒的制备和表征四种生物质颗粒,竹叶,芥末秸秆,稻壳和木质混合物被认为是潜在的粘合剂,以改善颗粒的物理化学性质。最初将样品在105℃下干燥,以将水分含量除去,高达15%,然后使用生物质和牛粪在1:1中制备颗粒。使用FT-IR,压缩强度和TGA分析表征样品,在此期间分析其组成,机械,热和物理化学性质。还计算了生物质颗粒的能量密度。与其他生物质颗粒相比,竹叶是有前途的候选者表现出改善的性质,其具有11.6MPa的最大抗压强度和19434.8 mj / m的能量密度 3 随着增强的结构性。而木混合物表明压缩强度最小,即3.73MPa,但最高能量密度I.E.20456.5 MJ / m 3 和良好的热特性。牛粪中存在的木质素含量是使其成为生物燃料的主要来源之一。实验结果表明,牛粪是最合适的粘合剂,因为它大量可用,并且还增加了生物量颗粒的耐久性与不同研究中使用的其他粘合剂的耐用性。

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