首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of microwave-assisted ionic liquid/acidic ionic liquid pretreatment on the morphology, structure, and enhanced delignification of rice straw
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Effect of microwave-assisted ionic liquid/acidic ionic liquid pretreatment on the morphology, structure, and enhanced delignification of rice straw

机译:微波辅助离子液/酸性离子液体预处理对稻草形态,结构和增强乳化的影响

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In the present study, was investigated an environmentally friendly method for pretreating lignocellulosic rice straw (RS) by using 1-butyl-3-methylimidazolium chloride ([Bmim]Cl) as an ionic liquid (IL) and 1-butyl-3-methylimidazolium hydrogen sulfate ([Bmim]HSO4) as an acidic-IL (Acidic-IL) under microwave irradiation (microwave-[Bmim]Cl and microwave-[Bmim]HSO4). The conversion of lignocellulosic biomass into simple sugars requires both efficient pretreatment and hydrolysis enzymes to produce biofuels and specialty chemicals. Therefore, the applied [Bmim]Cl, [Bmim]HSO4, microwave-[Bmim]Cl, and microwave-[Bmim]HSO4 to improve hydrolysis yields. Structural analyses of the pretreated solids were performed to understand the synergistic effects of [Bmim]Cl, and [Bmim]HSO4 pretreatment under microwave irradiation (microwave-[Bmim]Cl and microwave-[Bmim]HSO4) on the efficiencies of enzymatic hydrolyses. The results of a chemical composition analysis of untreated and all pretreated RS samples by using the difference pretreatment methods showed that significant lignin removal was achieved using microwave-[Bmim]Cl (57.02 +/- 1.24%), followed by [Bmim]Cl only (41.01 +/- 2.67%), microwave[Bmim]HSO4 (20.77 +/- 1.79%), and [Bmim]HSO4-only (16.88 +/- 1.14%). The highest glucan yield and xylan conversion achieved through the enzymatic saccharification of microwave-[Bmim]Cl-regenerated cellulose was consistent with the observations obtained from a structural analysis, which indicated a more disrupted, amorphous structure, with lowered crystallinity index (CrI) and lateral order index (LOI) of cellulose polymers. Thus results demonstrated that the pretreatment of lignocellulosic biomass with [Bmim]Cl under microwave irradiation has potential as an alternative method for pretreating lignocellulosic materials.
机译:在本研究中,通过使用使用1-丁基-3-甲基咪唑氯化物([BMIM] Cl)作为离子液体(IL)和1-丁基-3-甲基咪唑鎓来研究一种环保方法在微波辐射下作为酸性-IL(酸性-IL)的硫酸氢([Bmim] HSO4)(微波 - [Bmim] Cl和微波 - [Bmim] HSO 4)。将木质纤维素生物质转化为简单的糖,需要有效的预处理和水解酶来生产生物燃料和特种化学品。因此,所施加的[Bmim] Cl,[Bmim] HSO4,微波 - [Bmim] Cl,和微波 - [Bmim] HSO4,以改善水解产率。进行预处理固体的结构分析以了解[Bmim] Cl,[Bmim] HSO4预处理在微波辐射(微波 - [Bmim] Cl和微波 - [Bmim] HSO4)上的协同作用对酶水解的效率。通过使用差异预处理方法的未处理和所有预处理的RS样品的化学成分分析结果表明,使用微波 - [Bmim] Cl(57.02 +/- 1.24%)实现了显着的木质素去除,然后仅实现[Bmim] Cl (41.01 +/- 2.67%),微波[Bmim] HSO4(20.77 +/- 1.79%)和[Bmim] HSO4-ock(16.88 +/- 1.14%)。通过微波-βCl-再生纤维素的酶促糖化实现的最高葡聚糖产率和木聚糖转化与从结构分析中获得的观察结果一致,这表明更易于破坏的无定形结构,具有降低的结晶性指数(CRI)和纤维素聚合物的横向阶指数(LOI)。因此,结果表明,在微波辐射下对[BMIM] CL的木质纤维素生物质的预处理具有作为预处理木质纤维素材料的替代方法。

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