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首页> 外文期刊>Biomass & bioenergy >Optimization of hydrothermal pretreatment of wheat straw for production of bioethanol at low water consumption without addition of chemicals
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Optimization of hydrothermal pretreatment of wheat straw for production of bioethanol at low water consumption without addition of chemicals

机译:优化小麦秸秆水热预处理以生产低耗水而无需添加化学药品的生物乙醇

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摘要

In the IBUS process (Integrated Biomass Utilization System) lignocellulosic biomass is converted into ethanol at high dry matter content without addition of chemicals and with a strong focus on energy efficiency. This study describes optimization of continuous hydrothermal pretreatment of wheat straw at pilot scale (up to 100 kg h ~1) where six different pretreatment conditions have been investigated; all pretreatment conditions have been evaluated with regards to recovery of sugars after pretreatment (both C5 and C6) and convertibility of the cellulosic part of the fibers into ethanol.rnThe experiments show that the optimum pretreatment parameters are 195 ℃ for 6-12 min. At these conditions, a total of app. 70% of the hemicellulose is recovered, 93-94% of the cellulose is recovered in the fibers and app. 89% of the cellulose in the fibers can be converted into ethanol by commercial cellulase mixtures - increasing to 92% when adding a commercial xylanase.
机译:在IBUS过程(生物质综合利用系统)中,木质纤维素生物质以高干物质含量转化为乙醇,而无需添加化学药品,并且非常注重能源效率。这项研究描述了在中试规模(最大100 kg h〜1)下对麦草进行连续水热预处理的优化方法,其中研究了六个不同的预处理条件。对所有预处理条件进行了评估,包括预处理后的糖回收率(C5和C6)以及纤维的纤维素部分转化为乙醇的能力。实验表明,最佳预处理参数为195℃,持续6-12分钟。在这些条件下,共有app。回收了70%的半纤维素,回收了纤维和应用中93-94%的纤维素。纤维中89%的纤维素可通过商业纤维素酶混合物转化为乙醇-添加商业木聚糖酶时可增加至92%。

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