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Production and characterization of the maximum liquid product obtained from co-pyrolysis of sugarcane bagasse and thermocol waste

机译:从甘蔗甘蔗蔗渣和热凝固废物中获得的最大液体产品的生产和表征

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The current study explores co-pyrolysis of sugarcane bagasse, and thermocol waste in a semi-batch reactor to evaluate the influence of temperature, and blending ratio on yield of products, and reaction time, and thereby characterize the maximum liquid product. The properties of liquid product (bio-oil), and the solid product (bio-char) obtained from thermal sugarcane bagasse, and co-pyrolysis sugarcane bagasse: thermocol waste bio-oil were investigated for physicochemical characterizations. The compositional analysis result of the co-pyrolysis liquid product established the presence of several aromatic compounds. The co-pyrolysis liquid product manifested a higher calorific value, carbon, and hydrogen content as compared to sugarcane bagasse thermal pyrolysis bio-oil. The co-pyrolysis liquid product can be used as a liquid fuel in internal combustion engines, as well as a precursor for value-added chemicals. The properties of bio-char suggested it can be used as a solid fuel, as well as an adsorbent.
机译:目前的研究探索了半间歇反应器中甘蔗渣和热醇废物的共热解,以评估温度、混合比对产物产率和反应时间的影响,从而表征最大液体产物。研究了热法甘蔗渣和共热解甘蔗渣:热法废生物油的液体产物(生物油)和固体产物(生物炭)的物化性质。共热解液体产物的成分分析结果确定了几种芳香族化合物的存在。与甘蔗渣热裂解生物油相比,共热解液体产物表现出更高的热值、碳和氢含量。共热解液体产物可作为内燃机中的液体燃料,以及增值化学品的前体。生物炭的性质表明,它既可以用作固体燃料,也可以用作吸附剂。

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