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首页> 外文期刊>Applied Biochemistry and Biotechnology >Enzymatic Hydrolysis and Ethanol Fermentation of High Dry Matter Wet-Exploded Wheat Straw at Low Enzyme Loading
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Enzymatic Hydrolysis and Ethanol Fermentation of High Dry Matter Wet-Exploded Wheat Straw at Low Enzyme Loading

机译:低酶含量下高干物质湿爆麦秸秆的酶解和乙醇发酵

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摘要

Wheat straw was pretreated by wet explosion using three different oxidizing agents (H2O2, O2, and air). The effect of the pretreatment was evaluated based on glucose and xylose liberated during enzymatic hydrolysis. The results showed that pretreatment with the use of O2 as oxidizing agent was the most efficient in enhancing overall convertibility of the raw material to sugars and minimizing generation of furfural as a by-product. For scale-up of the process, high dry matter (DM) concentrations of 15–20% will be necessary. However, high DM hydrolysis and fermentation are limited by high viscosity of the material, higher inhibition of the enzymes, and fermenting microorganism. The wet-explosion pretreatment method enabled relatively high yields from both enzymatic hydrolysis and simultaneous saccharification and fermentation (SSF) to be obtained when performed on unwashed slurry with 14% DM and a low enzyme loading of 10 FPU/g cellulose in an industrial acceptable time frame of 96 h. Cellulose and hemicellulose conversion from enzymatic hydrolysis were 70 and 68%, respectively, and an overall ethanol yield from SSF was 68%.
机译:使用三种不同的氧化剂(H2 O2 ,O2 和空气)通过湿爆炸预处理麦秸。基于酶促水解过程中释放的葡萄糖和木糖评估了预处理的效果。结果表明,使用O2 作为氧化剂进行预处理对于提高原料到糖的总体转化率以及最大程度地减少糠醛副产物的产生是最有效的。为了扩大工艺规模,将需要15-20%的高干物质(DM)浓度。但是,高DM水解和发酵受限于材料的高粘度,对酶的更高抑制作用以及发酵微生物。湿法爆炸预处理方法在工业上可接受的时间内对含有14%DM和10 FPU / g纤维素的低酶负载的未洗涤浆液进行酶水解和同时糖化和发酵(SSF)均可获得相对较高的收率帧96小时。酶促水解的纤维素和半纤维素转化率分别为70%和68%,SSF的总乙醇产率为68%。

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