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Process analysis of superheated steam pre-treatment of wheat straw and its relative effect on ethanol selling price

机译:麦草过热蒸汽预处理的工艺分析及其对乙醇售价的影响

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Existing bioethanol operations rely on starch-based substrates, which have been criticized for their need to displace food crops in order to be produced. As an alternative to these first generation biofuels, the use of agricultural residues is being considered to create more environmentally-benign second generation, or cellulosic biofuels. Recalcitrance of these substrates to fermentation requires extensive pre-treatment processes, which often consume more energy than can be extracted from the ethanol that they produce, so one of the priorities in developing cellulosic ethanol is an effective and efficient pre-treatment method. This study examines the use of superheated steam (SS) as a process medium by which wheat straw lignocellulosic material is pre-treated. Following enzymatic hydrolysis, it was found that 47% of the total glucose could be liberated from the substrate, and the optimal conditions for pre-treatment were 15 min in hot water (193 kPa, 119?C) followed by 2 min in SS. Furthermore, a preliminary relative economic analysis showed that the minimum ethanol selling price (MESP) was comparable to that obtained from steam explosion, a similar process, while energy consumption was 22% less. The conclusion of the study is that SS treatment stands to be a competitive pre-treatment technology to steam explosion.
机译:现有的生物乙醇操作依赖于淀粉基基质,而淀粉基基质由于需要替代粮食作物才能生产而受到批评。作为这些第一代生物燃料的替代品,正在考虑使用农业残留物来生产对环境更有益的第二代或纤维素生物燃料。这些底物难于发酵需要大量的预处理过程,通常消耗的能量比从其产生的乙醇中提取的能量要多,因此开发纤维素乙醇的优先事项之一是一种有效的高效预处理方法。这项研究探讨了使用过热蒸汽(SS)作为预处理麦秸木质纤维素材料的过程介质。酶水解后,发现可以从底物中释放出总葡萄糖的47%,预处理的最佳条件是在热水(193 kPa,119°C)中15分钟,然后在SS中2分钟。此外,初步的相对经济分析表明,最低乙醇销售价格(MESP)与通过类似方法蒸汽爆破获得的最低价格相当,而能耗却降低了22%。研究的结论是SS处理是蒸汽爆炸的一种竞争性预处理技术。

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