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Evaluation of four ionic liquids for pretreatment of lignocellulosic biomass.

机译:评估四种离子液体对木质纤维素生物质的预处理。

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摘要

BACKGROUND: Lignocellulosic biomass is highly recalcitrant and various pretreatment techniques are needed to facilitate its effective enzymatic hydrolysis to produce sugars for further conversion to bio-based chemicals. Ionic liquids (ILs) are of interest in pretreatment because of their potential to dissolve lignocellulosic materials including crystalline cellulose. RESULTS: Four imidazolium-based ionic liquids (ILs) ([C=C2C1im][MeCO2], [C4C1im][MeCO2], [C4C1im][Cl], and [C4C1im][HSO4]) well known for their capability to dissolve lignocellulosic species were synthesized and then used for pretreatment of substrates prior to enzymatic hydrolysis. In order to achieve a broad evaluation, seven cellulosic, hemicellulosic and lignocellulosic substrates, crystalline as well as amorphous, were selected. The lignocellulosic substrates included hybrid aspen and Norway spruce. The monosaccharides in the enzymatic hydrolysate were determined using high-performance anion-exchange chromatography. The best results, as judged by the saccharification efficiency, were achieved with [C4C1im][Cl] for cellulosic substrates and with the acetate-based ILs for hybrid aspen and Norway spruce. After pretreatment with acetate-based ILs, the conversion to glucose of glucan in recalcitrant softwood lignocellulose reached similar levels as obtained with pure crystalline and amorphous cellulosic substrates. IL pretreatment of lignocellulose resulted in sugar yields comparable with that obtained with acidic pretreatment. Heterogeneous dissolution with [C4C1im][HSO4] gave promising results with aspen, the less recalcitrant of the two types of lignocellulose included in the investigation. CONCLUSIONS: The ability of ILs to dissolve lignocellulosic biomass under gentle conditions and with little or no by-product formation contributes to making them highly interesting alternatives for pretreatment in processes where high product yields are of critical importance.
机译:背景:木质纤维素生物质具有高难降解性,需要各种预处理技术以促进其有效的酶促水解以产生糖,以进一步转化为基于生物的化学物质。离子液体(IL)在预处理中令人关注,因为它们具有溶解木质纤维素材料(包括结晶纤维素)的潜力。结果:四种咪唑基离子液体([C = C2C1im] [MeCO2],[C4C1im] [MeCO2],[C4C1im] [Cl]和[C4C1im] [HSO4])众所周知,它们具有溶解能力合成木质纤维素种类,然后在酶促水解之前用于底物的预处理。为了获得广泛的评估,选择了七个纤维素,半纤维素和木质纤维素底物,包括结晶的和无定形的。木质纤维素底物包括杂交白杨和挪威云杉。使用高效阴离子交换色谱法测定酶解产物中的单糖。用糖化效率来判断,最好的结果是用[C4C1im] [Cl]处理纤维素底物,用乙酸酯类ILs混合白杨和挪威云杉。用基于乙酸盐的IL预处理后,顽固的软木木质纤维素中葡聚糖的葡萄糖转化率达到了与纯结晶和无定形纤维素底物相似的水平。木质纤维素的IL预处理所产生的糖产量可与酸性预处理相媲美。用[C4C1im] [HSO4]进行的异质溶解在白杨中获得了可喜的结果,这是本研究中包括的两种木质纤维素的顽固性较低的结果。结论:IL在温和的条件下溶解木质纤维素生物质的能力,且几乎没有副产物或几乎没有副产物的形成,使其成为在高产量至关重要的过程中进行预处理的非常有趣的替代方法。

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