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Effect of Biological Pretreatment of Water Hyacinth on Enzymatic Hydrolysis for Bioethanol Production

机译:水葫芦的生物预处理对酶水解生产生物乙醇的影响

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The key to success in increasing the glucose yield lies in the need to optimize the pretreatment process. The expectation is that lignocellulosic materials will be more easily hydrolyzed by the cellulase enzymes and produce a high yield of glucose. To improve the digestibility of water hyacinth in the enzymatic hydrolysis process and improve glucose production release, it is necessary to optimize of a pretreatment process. We evaluated the effects of varying biological pretreatment process conditions such as initial moisture content (IMC), material size, the addition of molasses and Co-factor Mn~(2+) for lignin degradation and the glucose production The results showed that choosing a 70 % IMC can provide increased yields of glucose reached 16.87 %. Selecting material size provides a glucose yield enhancement of 20.02 %. To prevent the degradation of cellulose in the pretreatment process the addition of molasses at a concentration of 2 % gave encouraging results, with the glucose yield reaching 43.91 %. Further, addition of co-factor Mn~(2+) using a concentration of 0.5 % significantly increased the yield of glucose, which reached 66.67 % during 16 days of incubation.
机译:成功提高葡萄糖产量的关键在于需要优化预处理过程。期望木质纤维素材料将更容易被纤维素酶水解并产生高产量的葡萄糖。为了提高水葫芦在酶促水解过程中的消化率并改善葡萄糖的释放,必须优化预处理过程。我们评估了各种生物预处理工艺条件的影响,例如初始水分含量(IMC),材料尺寸,糖蜜的添加和辅酶Mn〜(2+)对木质素降解和葡萄糖生成的影响。结果表明,选择70 %IMC可提供增加的葡萄糖产率,达到16.87%。选择材料尺寸可提高20.02%的葡萄糖产量。为防止纤维素在预处理过程中降解,添加浓度为2%的糖蜜给出了令人鼓舞的结果,葡萄糖收率达到43.91%。此外,添加浓度为0.5%的辅助因子Mn〜(2+)显着提高了葡萄糖的产量,在培养16天后达到了66.67%。

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