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Integration of decentralized torrefaction with centralized catalytic pyrolysis to produce green aromatics from coffee grounds

机译:分散式烘焙与集中催化热解相结合,从咖啡渣中产生绿色芳香剂

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The aim of this work was to integrate decentralized torrefaction with centralized catalytic pyrolysis to convert coffee grounds into the green aromatic precursors of terephthalic acid, namely benzene, toluene, ethylbenzene, and xylenes (BTEX). An economic analysis of this bioproduct system was conducted to examine BTEX yields, biomass costs and their sensitivities. Model predictions were verified experimentally using pyrolysis GC/MS to quantify BTEX yields for raw and torrefied biomass. The production cost was minimized when the torrefier temperature and residence time were 239 degrees C and 34 min, respectively. This optimization study found conditions that justify torrefaction as a pretreatment for making BTEX, provided that starting feedstock costs are below $58 per tonne. (C) 2015 Published by Elsevier Ltd.
机译:这项工作的目的是将分散焙烧与集中催化热解相结合,以将咖啡渣转化为对苯二甲酸的绿色芳香族前体,即苯,甲苯,乙苯和二甲苯(BTEX)。对这种生物产品系统进行了经济分析,以检查BTEX的产量,生物质成本及其敏感性。使用热解GC / MS对模型预测进行了实验验证,以量化原始和烘焙生物质的BTEX产量。当烘烤器温度和停留时间分别为239摄氏度和34分钟时,生产成本降至最低。这项优化研究发现,只要起始原料成本低于每吨58美元,就可以将焙干作为制备BTEX的预处理的理由。 (C)2015由Elsevier Ltd.出版

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