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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Fractionating pretreatment of sugarcane bagasse by aqueous formic acid with direct recycle of spent liquor to increase cellulose digestibility-the Formiline process
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Fractionating pretreatment of sugarcane bagasse by aqueous formic acid with direct recycle of spent liquor to increase cellulose digestibility-the Formiline process

机译:直接用废液循环利用甲酸水溶液对甘蔗渣进行分馏预处理,以提高纤维素的消化率-福米林工艺

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摘要

A lignocellulose pretreatment process was developed with formic acid delignification (FAD) followed by alkaline deformylation (AD), which was termed as Formiline process. In FAD, more than 80% of lignin and hemicellulose were removed, but cellulose formylation also happened. Formic acid concentration (FAC) was the most important factor affecting delignification and cellulose formylation. Increasing FAC could enhance degree of delignification but also increased cellulose formylation. The presence of formyl group could inhibit the enzymatic hydrolysis of cellulose; however, removing formyl group with a small loading of alkali well recovered cellulose digestibility. The spent liquor could be directly recycled for delignification thus significantly decreasing energy consumption in solvent recovery. The Formiline-pretreated substrates showed an excellent enzymatic digestibility and could be very well converted to ethanol by simultaneous saccharafication and fermentation (SSF). The final ethanol concentrations were 55.4 and 80.1. g/L respectively at initial solid consistencies of 15% and 20%.
机译:开发了一种木质纤维素预处理工艺,其中先进行甲酸脱木素作用(FAD),然后进行碱甲酰化(AD),这被称为Formiline工艺。在FAD中,超过80%的木质素和半纤维素被去除,但是纤维素甲酰化也发生了。甲酸浓度(FAC)是影响去木质素和纤维素甲酰化的最重要因素。增加FAC可以增强去木质素度,但也可以增加纤维素甲酰化。甲酰基的存在可以抑制纤维素的酶促水解。然而,用少量碱除去甲酰基可很好地恢复纤维素的消化率。废液可直接循环用于脱木素,从而显着降低溶剂回收中的能耗。经福米林预处理的底物显示出极好的酶消化率,并且可以通过同时糖化和发酵(SSF)很好地转化为乙醇。最终乙醇浓度为55.4和80.1。初始固含量为15%和20%时分别为g / L。

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