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Developing energy efficient lignin biomass processing: towards understanding mediator behaviour in ionic liquids

机译:开发节能的木质素生物质处理技术:了解离子液体中的介质行为

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摘要

Environmental concerns have brought attention to the requirement for more efficient and renewable processes for chemicals production. Lignin is the second most abundant natural polymer, and might serve as a sustainable resource for manufacturing fuels and aromatic derivatives for the chemicals industry after being depolymerised. In this work, the mediator 2,2′-azino-bis(3-ethylbenthiazoline-6-sulfonic acid) diammonium salt (ABTS), commonly used with enzyme degradation systems, has been evaluated by means of cyclic voltammetry (CV) for enhancing the oxidation of the non-phenolic lignin model compound veratryl alcohol and three types of lignin (organosolv, Kraft and lignosulfonate) in the ionic liquid 1-ethyl-3-methylimidazolium ethyl sulfate, ([C2mim][C2SO4]). The presence of either veratryl alcohol or organosolv lignin increased the second oxidation peak of ABTS under select conditions, indicating the ABTS-mediated oxidation of these molecules at high potentials in [C2mim][C2SO4]. Furthermore, CV was applied as a quick and efficient way to explore the impact of water in the ABTS-mediated oxidation of both organosolv and lignosulfonate lignin. Higher catalytic efficiencies of ABTS were observed for lignosulfonate solutions either in sodium acetate buffer or when [C2mim][C2SO4] (15 v/v%) was present in the buffer solution, whilst there was no change found in the catalytic efficiency of ABTS in [C2mim][C2SO4]–lignosulfonate mixtures relative to ABTS alone. In contrast, organosolv showed an initial increase in oxidation, followed by a significant decrease on increasing the water content of a [C2mim][C2SO4] solution.
机译:环境问题引起人们对化学品生产更高效,可再生过程的要求的关注。木质素是第二种最丰富的天然聚合物,解聚后可以用作化学工业生产燃料和芳族衍生物的可持续资源。在这项工作中,已通过循环伏安法(CV)评估了通常与酶降解系统一起使用的介体2,2'-叠氮基双(3-乙基苯并偶氮啉-6-磺酸)二铵盐(ABTS)的增强作用非酚类木质素模型化合物藜芦醇和三种类型的木质素(有机溶剂,硫酸盐和木质素磺酸盐)在离子液体1-乙基-3-甲基咪唑乙基硫酸盐([[C2mim] [C2SO4])中的氧化。在选择条件下,藜芦醇或有机溶剂木质素的存在增加了ABTS的第二个氧化峰,表明ABTS介导了[C2mim] [C2SO4]中这些分子在高电势下的氧化。此外,使用CV作为一种快速有效的方法来探索水在ABTS介导的有机溶剂和木质素磺酸木质素氧化中的影响。在木质素磺酸盐溶液中,在乙酸钠缓冲液中或当缓冲液中存在[C2mim] [C2SO4](15 v / v%)时,观察到ABTS的催化效率更高,而ABTS的催化效率没有变化。相对于单独的ABTS,[C2mim] [C2SO4]-木质素磺酸盐混合物。相反,有机溶剂显示出最初的氧化增加,然后随着[C2mim] [C2SO4]溶液中水含量的增加而显着下降。

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