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A comparison of various lignin-extraction methods to enhance the accessibility and ease of enzymatic hydrolysis of the cellulosic component of steam-pretreated poplar

机译:各种木质素提取方法的比较,以提高蒸汽处理过的杨树纤维素成分的可及性和酶水解的容易性

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BackgroundCurrent single-stage delignification-pretreatment technologies to overcome lignocellulosic biomass recalcitrance are usually achieved at the expense of compromising the recovery of the polysaccharide components, particularly the hemicellulose fraction. One way to enhance overall sugar recovery is to tailor an efficient two-stage pretreatment that can pre-extract the more labile hemicellulose component before subjecting the cellulose-rich residual material to a second-stage delignification process. Previous work had shown that a mild steam pretreatment could recover?>65% of the hemicellulose from poplar while limiting the acid-catalysed condensation of lignin. This potentially allowed for subsequent lignin extraction using various lignin solvents to produce a more accessible cellulosic substrate. ResultsA two-stage approach using steam and/or solvent pretreatment was assessed for its ability to separate hemicellulose and lignin from poplar wood chips while providing a cellulose-rich fraction that could be readily hydrolysed by cellulase enzymes. An initial steam-pretreatment stage was performed over a range of temperatures (160–200?°C) using an equivalent severity factor of 3.6. A higher steam temperature of 190?°C applied over a shorter residence time of 10?min effectively solubilized and recovered 75% of the hemicellulose while enhancing the ability of various solvents [deep eutectic solvent (DES), ethanol organosolv, soda/anthraquinone (soda/AQ) or a hydrotrope] to extract lignin in a second stage. When the second-stage treatments were compared, the mild DES treatment (lactic acid and betaine) at 130?°C, removed comparable amounts of lignin with higher selectivity than did the soda/AQ and organosolv pretreatments at 170?°C. However, the cellulose-rich substrates obtained after the second-stage organosolv and soda/AQ pretreatments showed the highest cellulose accessibility, as measured by the Simon’s staining technique. They were also the most susceptible to subsequent enzymatic hydrolysis. Conclusions The second-stage pretreatments varied in their ability to solubilize and extract the lignin component of steam-pretreated poplar while enhancing the enzymatic hydrolysis of the resulting cellulose-rich residual fractions. Although DES extraction was more selective in extracting lignin from the steam-pretreated substrates, the organosolv and soda/AQ post treatments disrupted the cellulose structure to a greater extent while enhancing the ease of enzymatic hydrolysis. Open image in new window Graphical abstract Effective hemicellulose removal via steam pretreatment followed by subsequent lignin extraction under acidic, alkaline or solvolytic conditions results in a highly accessible, more readily hydrolysed cellulose fraction.
机译:背景技术当前的克服木质纤维素生物质难降解性的单阶段去木质素预处理技术通常以损害多糖组分特别是半纤维素级分的回收为代价。一种提高总体糖回收率的方法是定制一个有效的两阶段预处理,该预处理可以在将富含纤维素的残留材料进行第二阶段的脱木素处理之前,预先提取较不稳定的半纤维素成分。先前的工作表明,温和的蒸汽预处理可以从杨树中回收> 65%的半纤维素,同时限制了酸催化木质素的缩合。这潜在地允许随后使用各种木质素溶剂提取木质素以产生更易接近的纤维素底物。结果评估了使用蒸汽和/或溶剂预处理的两步法从杨木屑中分离半纤维素和木质素的能力,同时提供了易于被纤维素酶水解的富含纤维素的馏分。初始蒸汽预处理阶段是在一定温度范围(160–200°C)下进行的,等效严重度系数为3.6。在较短的停留时间10分钟内施加190°C的较高蒸汽温度,可有效溶解和回收75%的半纤维素,同时增强各种溶剂的能力[深低共熔溶剂(DES),乙醇有机溶剂,苏打/蒽醌(碱或水溶助长剂]在第二阶段中提取木质素。当比较第二阶段的处理时,温和的DES处理(乳酸和甜菜碱)在130°C的温度下除去了相当数量的木质素,选择性比在170°C的苏打/ AQ和有机溶剂预处理高。但是,第二步有机溶剂和苏打/ AQ预处理后获得的富含纤维素的底物,如通过Simon染色技术测得的纤维素可及性最高。它们也最易于随后的酶水解。结论第二阶段预处理在溶解和提取经过蒸汽预处理的杨树中的木质素成分的能力方面有所不同,同时增强了所得富含纤维素的残留部分的酶促水解。尽管DES提取在从蒸汽预处理的底物中提取木质素的选择性更高,但是有机溶剂和苏打/ AQ后处理在更大程度上破坏了纤维素结构,同时增强了酶促水解的容易性。在新窗口中打开图像图形摘要通过蒸汽预处理有效除去半纤维素,然后在酸性,碱性或溶剂分解条件下进行木质素提取,可得到高度可得的,更容易水解的纤维素馏分。

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