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Enhancing Lignocellulosic Biomass Hydrolysis by Hydrothermal Pretreatment, Extraction of Surface Lignin, Wet Milling and Production of Cellulolytic Enzymes

机译:通过水热预处理增强木质纤维素生物质水解,提取表面木质素,湿磨和纤维素酶的生产

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摘要

Acetone and ethanol extraction of lignin deposits from the surface of hydrothermally (liquid hot water) pretreated beech wood biomass alleviates the lignin inhibitory effects during enzymatic hydrolysis of cellulose to glucose and boosts the enzymatic digestibility to high values (approximate to 70 %). Characterization of the extracted lignins (FTIR, pyrolysis/GC-MS, differential thermogravimetry, gel permeation chromatography) indicated high purity, low molecular weight, and features that suggest that it consists mainly of fragments of the native wood lignin partially depolymerized and recondensed on the biomass surface during the hydrothermal pretreatment. The pyrolysis products of the extracted surface lignins suggest their high potential as a feedstock for the production of high added value phenolic compounds. When the enzymatic hydrolysis of the pretreated and extracted biomass solids was assisted by mild wet milling, near complete cellulose digestibility (>= 95 %) could be achieved. In the context of the biorefinery and whole-biomass valorization concept, it was also shown that the hydrothermally (hemicellulose-deficient) pretreated and delignified biomass solids could be also successfully used for the production of crude cellulase from Trichoderma reesei cultures, providing a simple and low-cost method for the complementary production of cellulases by utilizing fractions of the integrated hydrolysis process.
机译:丙酮和乙醇萃取木质素沉积物从水热水(液体热水)预处理的山毛榉木生物量减轻了在酶纤维素的酶水解中的木质素抑制作用,并提高了高值的酶消化率(近似为70%)。提取的木质素的表征(FTIR,热解/ GC-MS,差动热重试,凝胶渗透色谱)表明它主要由部分脱色并恢复的天然木质木质素的片段组成的高纯度,低分子量和特征。水热预处理期间的生物质表面。提取的表面木质素的热解产物表明它们的高潜力作为生产高附加值酚类化合物的原料。当通过温和的湿铣削辅助预处理和提取的生物质固体的酶水解时,可以实现接近完全的纤维素消化率(> = 95%)。在生物遗料和全生物量算法概念的背景下,还表明,水热(半纤维素缺陷)预处理和脱烃的生物质固体也可以成功地用于从Trichoderma Reesei培养物中生产粗纤维素酶,提供简单的和利用集成水解过程的级分来互补生产纤维素酶的低成本方法。

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