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Microwave assisted hydrothermal as greener pretreatment of brewer's spent grains for biobutanol production

机译:微波炉辅助水热源作为Brewer的Biobutanol生产颗粒的绿色预处理

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A microwave assisted hydrothermal pretreatment technology has been developed to recover fermentable sugars from brewer's spent grain. Microwave hydrothermal pretreatment is considered as a greener pretreatment, as no acid or alkali are used as catalysts. An experimental design was planned to analyze the effect of pretreatment conditions (temperature and time). The objective was to maximize hemicellulosic sugar recovery in the liquid fraction and glucose recovery in enzymatic hydrolysis (referred to untreated BSG), as well as to minimize inhibitors in the liquid fraction to ensure ABE (acetone, butanol and ethanol) fermentability. Optimal conditions were 192.7 degrees C and 5.4 min, resulting in 64% hemicellulosic sugar recovery, 70% glucose recovery in enzymatic hydrolysate and 2.4 g/L total inhibitors. The liquid fraction obtained under optimal conditions was fermented with Clostridium beijerinckii, reaching a butanol concentration as low as 1 g/L. The butanol concentration could be improved by operating at higher solid loadings in pretreatment, which would increase fermentable sugar concentration. Enzymatic hydrolysis of pretreated BSG yielded a sugar solution, which was also fermented, resulting in a butanol concentration and overall yield of 8.3 g/L and 46 kg/t BSG, respectively.
机译:已经开发了一种微波炉辅助水热预处理技术,以从酿酒师的谷物中恢复可发酵的糖。微波水热预处理被认为是更环保的预处理,因为没有酸或碱用作催化剂。计划实验设计分析预处理条件(温度和时间)的效果。目的是最大化液体馏分中的半纤维素糖回收和酶水解中的葡萄糖回收(提及未处理的BSG),以及最小化液体级分中的抑制剂,以确保ABE(丙酮,丁醇和乙醇)发酵性。最佳条件为192.7摄氏度和5.4分钟,导致64%的半纤维素糖回收率,酶水解酸盐和2.4g / L总抑制剂中的70%葡萄糖回收。在最佳条件下获得的液体馏分用梭菌牛氏蛋白CcCHII发酵,达到低至1g / L的丁醇浓度。通过在预处理的预处理中的较高固体载荷下操作可以提高丁醇浓度,这会增加可发酵的糖浓度。预处理的BSG的酶水解产生了糖溶液,其也发酵,得到丁醇浓度和8.3g / L和46kg / t BSG的总收率。

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