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Detoxification Of Steam-exploded Corn Straw Produced By An Industrial-scale Reactor

机译:工业规模反应器生产的蒸汽爆玉米秸秆的解毒

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Steam explosion (SE) is widely used in lignocellulose pretreatment. However, steam-exploded corn straw (SECS) cannot be directly used as a solid-state fermentation substrate for Trichoderma reesei owing to the inhibitors released during pretreatment. We investigated the effect of SE conditions on inhibitor production in a 5 m~3 SE reactor and the fermentation enhancement achieved by drying and water-washing of SECS. The results reveal that SE enhanced the fermentability of corn straw and simultaneously produced fermentation inhibitors. Water-washing (corn straw/water 1:5, 60℃, 2 × 30 min) removed 81% of the furfural and 85% of the phenoj compounds from SECS pretreated at 1.6 MPa, which were higher than the 46 and 8.1%, respectively, removed by drying at 105℃ for 2 h. T. reesei YG3 cultures produced high cellulase activity of 41.4 and 81.4 lU/g dry medium on dried and water-washed SECS, respectively, which is higher than the 2.2 lU/g dry medium obtained from com straw.
机译:蒸汽爆炸(SE)被广泛用于木质纤维素预处理。但是,由于在预处理过程中释放出抑制剂,蒸汽爆玉米秸秆(SECS)不能直接用作里氏木霉的固态发酵基质。我们研究了SE条件对5 m〜3 SE反应器中抑制剂生产的影响以及通过SECS的干燥和水洗实现的发酵增强。结果表明,SE增强了玉米秸秆的发酵能力,并同时产生了发酵抑制剂。水洗(玉米秸秆/水1:5,60℃,2×30分钟)在1.6 MPa的压力下从SECS中去除了81%的糠醛和85%的酚类化合物,分别比46%和8.1%高,分别于105℃干燥2 h除去。里氏木霉YG3培养物在干燥和水洗的SECS上分别产生41.4和81.4 lU / g干燥培养基的高纤维素酶活性,高于从玉米秸秆获得的2.2 lU / g干燥培养基。

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