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Pretreatment of Wheat Straw with Phosphoric Acid and Hydrogen Peroxide to Simultaneously Facilitate Cellulose Digestibility and Modify Lignin as Adsorbents

机译:磷酸和过氧化氢预处理麦草同时促进纤维素的消化和修饰木质素作为吸附剂

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摘要

Effective valorization of lignin is crucial to achieve a sustainable, economic and competitive biorefinery of lignocellulosic biomass. In this work, an integrated process was proposed based on a concentrated phosphoric acid plus hydrogen peroxide (PHP) pretreatment to simultaneously facilitate cellulose digestibility and modify lignin as adsorbent. As a dominant constitutor of PHP pretreatment, H O input and its influence on the overall fractionation/lignin modification performance was thoroughly investigated. Results indicated that wheat straw was fractionated more efficiently by increasing the H O input. H O input had a significant influence on the digestibility of the obtained cellulose-rich fraction whereby almost 100.0% cellulose-glucose conversion can be achieved even with only 0.88% H O input. Besides, the adsorption capacity of lignin on MB was improved (74.3 to 210.1 mg g ) due to the oxidative-modification in PHP pretreatment with H O inputs. Regression analysis indicated that –COOH groups mainly governed the lignin adsorption (R = 0.946), which displayed the considerable adsorption capacities for typical cationic substances. This work shows a promising way to integrate the lignin modification concept into the emerging PHP pretreatment process with the dual goal of both cellulose utilization and lignin valorization.
机译:木质素的有效增值对于实现木质纤维素生物质的可持续,经济和竞争性生物精炼至关重要。在这项工作中,提出了一种基于浓磷酸加过氧化氢(PHP)预处理的集成工艺,以同时促进纤维素的消化率和修饰木质素作为吸附剂。作为PHP预处理的主要组成部分,已深入研究了H O输入及其对整体分馏/木质素修饰性能的影响。结果表明,通过增加H O投入,可以更有效地分馏小麦秸秆。输入的H O对所得富含纤维素的馏分的消化率具有显着影响,从而即使仅输入0.88 H O仍可实现近100.0%的纤维素-葡萄糖转化率。此外,木质素在MB上的吸附能力提高了(74.3至210.1 mg g),这是由于PHP进行了H 2 O预处理后的氧化改性。回归分析表明,–COOH基团主要控制木质素的吸附(R = 0.946),这显示了典型阳离子物质的相当大的吸附能力。这项工作显示了一种将木质素修饰概念整合到新兴的PHP预处理过程中的有前途的方法,其双重目标是纤维素利用和木质素增值。

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