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Ternary ionic liquid–water pretreatment systems of an agave bagasse and municipal solid waste blend

机译:龙舌兰蔗渣和城市固体废物混合物的三元离子液体-水预处理系统

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BackgroundPretreatment is necessary to reduce biomass recalcitrance and enhance the efficiency of enzymatic saccharification for biofuel production. Ionic liquid (IL) pretreatment has gained a significant interest as a pretreatment process that can reduce cellulose crystallinity and remove lignin, key factors that govern enzyme accessibility. There are several challenges that need to be addressed for IL pretreatment to become viable for commercialization, including IL cost and recyclability. In addition, it is unclear whether ILs can maintain process performance when utilizing low-cost, low-quality biomass feedstocks such as the paper fraction of municipal solid waste (MSW), which are readily available in high quantities. One approach to potentially reduce IL cost is to use a blend of ILs at different concentrations in aqueous mixtures. Herein, we describe 14 IL-water systems with mixtures of 1-ethyl-3-ethylimidazolium acetate ([C2C1Im][OAc]), 1-butyl-3-ethylimidazolium acetate ([C4C1Im][OAc]), and water that were used to pretreat MSW blended with agave bagasse (AGB). The detailed analysis of IL recycling in terms of sugar yields of pretreated biomass and IL stability was examined. ResultsBoth biomass types (AGB and MSW) were efficiently disrupted by IL pretreatment. The pretreatment efficiency of [C2C1Im][OAc] and [C4C1Im][OAc] decreased when mixed with water above 40%. The AGB/MSW (1:1) blend demonstrated a glucan conversion of 94.1 and 83.0% using IL systems with ~10 and ~40% water content, respectively. Chemical structures of fresh ILs and recycle ILs presented strong similarities observed by FTIR and 1H-NMR spectroscopy. The glucan and xylan hydrolysis yields obtained from recycled IL exhibited a slight decrease in pretreatment efficiency (less than 10% in terms of hydrolysis yields compared to that of fresh IL), and a decrease in cellulose crystallinity was observed. Conclusions Our results demonstrated that mixing ILs such as [C2C1Im][OAc] and [C4C1Im][OAc] and blending the paper fraction of MSW with agricultural residues, such as AGB, may contribute to lower the production costs while maintaining high sugar yields. Recycled IL-water mixtures provided comparable results to that of fresh ILs. Both of these results offer the potential of reducing the production costs of sugars and biofuels at biorefineries as compared to more conventional IL conversion technologies. Open image in new window Graphical abstract Schematic of ionic liquid (IL) pretreatment of agave bagasse (AB) and paper-rich fraction of municipal solid waste (MSW)
机译:背景技术预处理对于降低生物质的顽固性并提高酶促糖化效率以生产生物燃料是必要的。离子液体(IL)预处理作为一种可以降低纤维素结晶度并去除木质素的预处理方法引起了人们的极大兴趣,木质素是控制酶可及性的关键因素。 IL预处理要实现商业化就需要解决几个挑战,包括IL成本和可回收性。此外,尚不清楚在利用低成本,低质量的生物质原料(如城市固体废物(MSW)的纸屑)时,IL是否可以保持工艺性能,而这些原料很容易获得。一种潜在降低IL成本的方法是在水性混合物中使用不同浓度的IL混合物。本文中,我们描述了14种IL-水系统,其中包含1-乙基-3-乙基咪唑乙酸盐([C 2 C 1 Im] [OAc]),1-丁基的混合物醋酸-3-乙基咪唑鎓盐([C 4 C 1 Im] [OAc])和水用于预处理与龙舌兰蔗渣(AGB)混合的城市固体废弃物。根据预处理生物质的糖产量和IL稳定性对IL回收进行了详细分析。结果IL预处理有效地破坏了两种生物质(AGB和MSW)。 [C 2 C 1 Im] [OAc]和[C 4 C 1 Im]的预处理效率与40%以上的水混合时,[OAc]降低。 AGB / MSW(1:1)混合物在水含量约为10%和40%的IL系统中,葡聚糖的转化率分别为94.1%和83.0%。 FTIR和 1 H-NMR谱图观察到新鲜的IL和回收的IL的化学结构具有很强的相似性。由回收的IL获得的葡聚糖和木聚糖水解产率显示出预处理效率的轻微降低(与新鲜IL相比,水解产率小于10%),并且观察到纤维素结晶度的降低。结论我们的结果表明,混合了诸如[C 2 C 1 Im] [OAc]和[C 4 C 1 < / sub> Im] [OAc]并将MSW的纸质部分与农业残留物(例如AGB)混合,可有助于降低生产成本,同时保持高糖产量。回收的IL-水混合物可提供与新鲜IL相当的结果。与更传统的IL转换技术相比,这两个结果都提供了降低生物精炼厂糖和生物燃料生产成本的潜力。在新窗口中打开图像图形摘要龙舌兰蔗渣(AB)的离子液体(IL)预处理和城市固体废物(MSW)的纸张含量丰富的示意图

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