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首页> 外文期刊>Green chemistry >Design of a combined ionosolv-organosolv biomass fractionation process for biofuel production and high value-added lignin valorisation
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Design of a combined ionosolv-organosolv biomass fractionation process for biofuel production and high value-added lignin valorisation

机译:生物燃料生产和高附加值木质素瓣膜生物量分馏工艺的组合Ionosolv-Consorosolv生物质分馏工艺

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IonoSolv pretreatment using protic ionic liquids has shown impressive biomass fractionation performance and ionic liquid recyclability. Lignin condensation during ionoSolov pretreatment can lower its economic value and potentially limit the valorisation of lignin to produce high value materials. Organosolv pretreatment is known for generating a high-quality lignin fraction with a large potential for value-added applications. In this study, a hybrid fractionation process was designed based on ionoSolv and organosolv pretreatments, and was tested on two representative feedstocks,Miscanthusand pine. Compared to ionoSolv processing, the hybrid pretreatment displayed an improved fractionation performance by generating a cellulose-rich pulp which was more enzyme-accessible, and by removing a higher proportion of lignin. Saccharification yields reached 89% and 74% forMiscanthusand pine, respectively. The process was also able to maintain its high fractionation performance up to 50 wt% biomass loading. HSQC spectroscopy and GPC were used to characterise the isolated lignin. Alcohol induced alpha-alkoxylation took place during lignin fractionation and obstructed the lignin condensation, resulting in an improved quality lignin. A technoeconomic analysis was conducted for this new hybrid pretreatment, showing lower energy consumption for the IL regeneration step at a high organic solvent concentration, suggesting lower environmental impact and higher economic potential. This ionoSolv-organosolv pretreatment could be a milestone for the development of the current ionoSolv pretreatment at commercial scale.
机译:使用质子离子液体的Ionosolv预处理表明了令人印象深刻的生物质分级性能和离子液体再循环性。 Ionosolov预处理期间的木质素凝结可降低其经济价值,并潜在限制木质素的储度,以产生高价值材料。已知有机溶胶预处理,用于产生高质量的木质素馏分,其具有巨大的增值应用。在这项研究中,基于Ionosolv和Consorosolv预处理设计了一种混合分级过程,并在两个代表性原料中测试了Miscanthus和松树。与Ionosolv加工相比,通过产生富含纤维素的纸浆,杂种预处理显示出改善的分馏性能,该浆料更加易于酶,并且通过除去较高比例的木质素。糖化产量分别达到89%和74%的甲虫松树。该方法还能够将其高分分馏性能保持高达50wt%的生物质负载。 HSQC光谱和GPC用于表征分离的木质素。酒精诱导的α-烷氧基化发生在木质素分级期间发生并阻塞木质素缩合,导致高质量的木质素。对这种新的混合预处理进行了技术经济分析,显示了在高有机溶剂浓度下为IL再生步骤的能量消耗,表明对环境影响和更高的经济潜力。这种Ionosolv-Consorosolv预处理可以是用于在商业规模上进行目前的Ionosolv预处理的里程碑。

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