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Structural Analysis of Alkaline Pretreated Rice Straw for Ethanol Production

机译:乙醇生产碱预处理稻草的结构分析

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摘要

Rice straw (RS) is an abundant, readily available agricultural waste, which shows promise as a potential feedstock for Asian ethanol production. To enhance release of glucose by enzymatic hydrolysis, RS was pretreated with aqueous ammonia (27% w/w) at two pretreatment temperatures: room temperature and 60°C. Statistical analysis indicated similarity of enzymatic glucose production at both pretreatment temperatures after 3-day incubation. Chemical composition, FTIR, and EDX analyses confirmed the retention of glucan and xylan in the pretreated solid, but significant reduction of lignin (60.7% removal) and silica. SEM analysis showed the disorganized surfaces and porosity of the pretreated RS fibers, thus improving cellulose accessibility for cellulase. The crystallinity index increased from 40.5 to 52.3%, indicating the higher exposure of cellulose. With 10% (w/v) solid loadings of pretreated RS, simultaneous saccharification and fermentation yielded a final ethanol concentration of 24.6 g/L, corresponding to 98% of maximum theoretical yield. Taken together, aqueous ammonia pretreatment is an effective method to generate highly digestible pretreated RS for bioethanol production and demonstrates potential application in biorefinery industry.
机译:稻草(RS)是一种丰富,易于采购农业废物,其作为亚洲乙醇生产的潜在原料表示承诺。为了通过酶水解增强葡萄糖的释放,在两个预处理温度下用氨水(27%w / w)预处理Rs:室温和60℃。统计分析表明酶促葡萄糖产生在3天孵育后的预处理温度下的相似性。化学成分,FTIR和EDX分析证实了葡聚糖和木聚糖在预处理的固体中保持,但显着降低了木质素(除去60.7%)和二氧化硅。 SEM分析显示预处理RS纤维的紊乱表面和孔隙率,从而提高了纤维素酶的纤维素可接近性。结晶性指数从40.5增加到52.3%,表明纤维素曝光更高。具有预处理Rs的10%(w / v)固体载体,同时糖化和发酵产生的最终乙醇浓度为24.6g / l,相当于最大理论产率的98%。氨水预处理是一种有效的方法,用于生成高度消化的预处理Rs的生物乙醇生产,并证明了生物颗粒工业的潜在应用。

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