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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Analysis of by-product formation and sugar monomerization in sugarcane bagasse pretreated at pilot plant scale: Differences between autohydrolysis, alkaline and acid pretreatment
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Analysis of by-product formation and sugar monomerization in sugarcane bagasse pretreated at pilot plant scale: Differences between autohydrolysis, alkaline and acid pretreatment

机译:中试规模预处理的甘蔗渣中副产物形成和糖单体分析:自动水解,碱和酸预处理之间的差异

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摘要

Sugarcane bagasse is an interesting feedstock for the biobased economy since a large fraction is polymerized sugars. Autohydrolysis, alkaline and acid pretreatment conditions combined with enzyme hydrolysis were used on lignocellulose rich bagasse to acquire monomeric. By-products found after pretreatment included acetic, glycolic and coumaric acid in concentrations up to 40, 21 and 2.5 g/kg dry weight bagasse respectively. Alkaline pretreated material contained up to 45 g/kg bagasse DW of sodium. Acid and autohydrolysis pretreatment results in a furan formation of 14 g/kg and 25 g/kg DW bagasse respectively. Enzyme monomerization efficiencies of pretreated solid material after 72 h were 81% for acid pretreatment, 77% for autohydrolysis and 57% for alkaline pretreatment. Solid material was washed with superheated water to decrease the amount of by-products. Washing decreased organic acid, phenol and furan concentrations in solid material by at least 60%, without a major sugar loss. (C) 2015 Elsevier Ltd. All rights reserved.
机译:甘蔗渣是生物基经济的有趣原料,因为很大一部分是聚合糖。在富含木质纤维素的甘蔗渣上使用自动水解,碱和酸的预处理条件以及酶水解条件来获得单体。预处理后发现的副产物分别包括乙酸,乙醇酸和香豆酸,其浓度分别高达40、21和2.5 g / kg干重蔗渣。碱预处理的物料含有高达45 g / kg蔗渣DW的钠。酸和自动水解预处理分别导致呋喃形成量为14 g / kg和25 g / kg DW蔗渣。预处理的固体物质在72小时后的酶单体化效率,酸预处理为81%,自水解为77%,碱性预处理为57%。用过热水洗涤固体物质以减少副产物的量。洗涤使固体物质中的有机酸,苯酚和呋喃浓度降低了至少60%,而糖没有大量损失。 (C)2015 Elsevier Ltd.保留所有权利。

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