首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Hydrothermal treatment of wheat straw at pilot plant scale using a three-step reactor system aiming at high hemicellulose recovery, high cellulose digestibility and low lignin hydrolysis
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Hydrothermal treatment of wheat straw at pilot plant scale using a three-step reactor system aiming at high hemicellulose recovery, high cellulose digestibility and low lignin hydrolysis

机译:使用三步反应器系统对中试工厂规模的小麦秸秆进行水热处理,旨在实现高半纤维素回收率,高纤维素消化率和低木质素水解

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A pilot plant (IBUS) consisting of three reactors was used for hydrothermal treatment of wheat straw (120-150 kg/h) aiming at coproduction of bioethanol (from sugars) and electricity (from lignin). The first reactor step was pre-soaking at 80 degrees C, the second extraction of hemicellulose at 170-180 degrees C and the third improvement of the enzymatic cellulose convertibility at 195 degrees C. Water added to the third reactor passed countercurrent to straw. The highest water addition (600 kg/h) gave the highest hemicellulose recovery (83%). With no water addition xylose degradation occurred resulting in low hemicellulose recovery (33%) but also in high glucose yield in the enzymatic hydrolysis (72 g/100 g glucose in straw). Under these conditions most of the lignin was retained in the fibre fraction, which resulted in a lignin rich residue with high combustion energy (up to 31 MJ/kg) after enzymatic hydrolysis of cellulose and hemicellulose. (C) 2007 Elsevier Ltd. All rights reserved.
机译:中试设备(IBUS)由三个反应器组成,用于小麦秸秆的水热处理(120-150 kg / h),目的是联产生物乙醇(由糖类产生)和电(木质素)。反应器的第一步是在80摄氏度下预浸泡,第二次在170-180摄氏度下提取半纤维素,第三次是在195摄氏度下提高酶促纤维素的可转化性。添加到第三反应器中的水与秸秆逆流通过。最高的加水量(600千克/小时)带来最高的半纤维素回收率(83%)。在不加水的情况下,发生了木糖降解,导致半纤维素回收率低(33%),但是在酶促水解中葡萄糖产率也很高(秸秆中葡萄糖为72 g / 100 g)。在这些条件下,大多数木质素保留在纤维级分中,在纤维素和半纤维素酶水解后,产生了富含木质素的残留物,具有高燃烧能(高达31 MJ / kg)。 (C)2007 Elsevier Ltd.保留所有权利。

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