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Optimization of processing conditions for the pretreatment of wheat straw using aqueous ionic liquid

机译:离子水水溶液预处理麦秸的工艺条件优化

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摘要

Pretreatment of wheat straw with the aqueous ionic liquid, 1-ethyl-3-methylimidazolium acetate, was optimized to maximize fermentable sugars recovery. The optimization process employed a central composite design, where the investigated variables were temperature (130-170°C), time (0.5-5.5. h) and ionic liquid concentration (0-100%). All the tested variables were identified to have significant effects (p<. 0.05) on fermentable sugars recovery. The optimum pretreatment conditions were 158°C, an ionic liquid concentration of 49.5% (w/w), and a duration of 3.6. h. Cellulose and xylan digestibility generally increased with increasing temperature, time and ionic liquid concentration; but, the carbohydrates recovered in the washed solids following pretreatment decreased. Thus, the final optimum conditions for maximizing fermentable sugars from the starting biomass were a compromise between greater digestibility and minimal carbohydrates loss during pretreatment.
机译:优化了使用含水离子液体乙酸1-乙基-3-甲基咪唑鎓盐对小麦秸秆的预处理,以最大限度地提高可发酵糖的回收率。优化过程采用中央复合设计,研究变量为温度(130-170°C),时间(0.5-5.5。h)和离子液体浓度(0-100%)。确定所有测试变量对可发酵糖的回收率均具有显着影响(p <。0.05)。最佳预处理条件为158°C,离子液体浓度为49.5%(w / w),持续时间为3.6。 H。纤维素和木聚糖的消化率通常随温度,时间和离子液体浓度的增加而增加;但是,预处理后在洗涤后的固体中回收的碳水化合物减少了。因此,从起始生物质中最大化可发酵糖的最终最佳条件是在预处理期间较高的消化率和最小的碳水化合物损失之间的折衷。

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