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Enzymatic hydrolysis of lignocellulosic biomass from low to high solids loading

机译:木质纤维素生物质的酶水解从低至高固体载荷

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摘要

Solid state enzymatic hydrolysis (SSEH) has many advantages, such as higher sugar concentration, lower operating costs, and less energy input. It should be a potential approach for the industrial application of lignocellulosic ethanol. The purpose of this work is to review the enzymatic hydrolysis of lignocellulosic biomass from low to high solids loading and introduce its both challenges and perspectives. The limitations of SSEH, including inhibition effects, water constraint, and rheology characteristic, are summarized firstly. Various strategies for overcoming these limitations are proposed correspondingly. Fed batch process and its feeding strategy to improve the SSEH efficiency are then discussed. Finally, several intensification-methods, hydrolysis reactor, and pilot-and demonstration-scale operations of SSEH are described. In-depth analysis of main limitations and development of novel intensification methods and reactors should provide an effective way to achieve large-scale implementation of SSEH.
机译:固态酶水解(SSEH)具有许多优点,例如糖浓度较高,运行成本较低,能量输入较少。它应该是木质纤维素乙醇工业应用的潜在方法。这项工作的目的是回顾木质纤维素生物质的酶水解,从低到高固体载荷,并引入其挑战和观点。首先总结了SSEH,包括抑制作用,水约束和流变学特征的局限性。相应地提出了克服这些限制的各种策略。然后讨论了提高SSWE效率的补馈批处理及其进料策略。最后,描述了几种强化方法,水解反应器和SSEH的试验和演示规模操作。深入分析了新颖的强化方法和反应堆的主要局限性和开发应提供有效的方法来实现SSEH的大规模实施。

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