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Co-pyrolysis of Lignocellulosic Biomass and Synthetic Polymer

机译:木质纤维素生物质与合成聚合物的共热解

摘要

This project was carried out to determine a simple method to produce high-grade pyrolysis oil by maximizing the use of biomass wastes. In this study, the results of pyrolysis of sugarcane bagasse alone are compared with pyrolysis of sugarcane bagasse and LDPE mixtures. Pyrolysis was carried out in a semi-batch reactor with different temperature range of 350 to 550 oC, different Biomass : Plastic ratio of 9:1, 3:1, 1:1 and 1:3, with heating rate of 20oC/min. The maximum pyrolysis liquid yield of sugarcane bagasse alone was 47.15% at 500 oC. Whereas, when the co-pyrolysis of sugarcane bagasse and LDPE was done yield of liquid product increased to 52.75% with 1:1 blend. The pyrolysis temperature was 500 oC and it was selected based on results from thermo gravimetric analysis of the studied samples. Due to the synergistic effect in the pyrolysis of the biomass/polymer mixtures, higher amounts of liquid products were obtained compared to biomass alone. The physical properties of the liquid obtained were determined by using standard test methods and the chemical composition was analyzed by using FTIR, GC-MS analyzer for its suitability as an alternate fuel.
机译:该项目旨在确定一种通过最大程度利用生物质废物来生产高级热解油的简单方法。在这项研究中,仅将甘蔗渣的热解结果与甘蔗渣和LDPE混合物的热解进行了比较。在半分批反应器中进行热解,温度范围为350至550 oC,不同的生物质:塑料比为9:1、3:1、1:1和1:3,加热速率为20oC / min。仅甘蔗渣在500 oC时的最大热解液产率为47.15%。而甘蔗渣和LDPE的共热解完成后,液体产品的收率在1:1的情况下增加到52.75%。热解温度为500 oC,是根据对研究样品进行热重分析得出的结果选择的。由于生物质/聚合物混合物的热解中的协同作用,与单独的生物质相比,获得了更高量的液体产物。使用标准测试方法确定获得的液体的物理性质,并使用FTIR,GC-MS分析仪分析其化学组成以适合用作替代燃料。

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    Dewangan Ashish Kumar;

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  • 年度 2014
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