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Optimization of clean fractionation process applied to switchgrass to produce pulp for enzymatic hydrolysis

机译:优化用于柳枝to生产酶水解浆的清洁分馏工艺

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The purpose of this study was to fractionate switchgrass (SG) to obtain hemicellulose-, lignin-rich fractions and highly digestible pulp, using a clean fractionation (CF) approach. The main objective was to produce highest glucose yield in the enzymatic hydrolysis of pulp. Effects of processing factors such as time (10-50. min), temperature (120-160 °C), catalyst concentration (0.21-0.93% w/w sulfuric acid) and organic solvent mixture composition (7-43% w/w methyl isobutyl ketone) were evaluated. Response surface methodology and central composite design were used for process optimization and statistical analyses. High lignin (75-93%) and xylan (83-100%) removal from biomass were obtained, leaving solid pulp rich in glucan (78-94%). High enzymatic hydrolysis glucose yields (more than 90%) were obtained for selected optimal conditions. Pulp can be used for ethanol production while separated xylan and lignin fractions can be used as a feedstock for value-added products which suggests the applicability of clean fractionation technology in a biorefinery concept.
机译:这项研究的目的是使用清洁分馏(CF)方法分馏柳枝switch(SG),以获得富含半纤维素,木质素的馏分和高度易消化的果肉。主要目的是在纸浆的酶促水解中产生最高的葡萄糖产量。工艺因素的影响,例如时间(10-50分钟),温度(120-160°C),催化剂浓度(0.21-0.93%w / w硫酸)和有机溶剂混合物组成(7-43%w / w)评估甲基异丁基酮)。响应面方法和中央复合设计用于流程优化和统计分析。从生物质中去除了高木质素(75-93%)和木聚糖(83-100%),剩下的固体纸浆富含葡聚糖(78-94%)。对于选定的最佳条件,获得了较高的酶促水解葡萄糖产率(超过90%)。纸浆可用于生产乙醇,而分离的木聚糖和木质素馏分可用作增值产品的原料,这表明清洁分馏技术在生物精炼概念中的适用性。

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