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首页> 外文期刊>Biomass & bioenergy >E-beam irradiation & steam explosion as biomass pretreatment, and the complex role of lignin in substrate recalcitrance
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E-beam irradiation & steam explosion as biomass pretreatment, and the complex role of lignin in substrate recalcitrance

机译:电子束辐照和蒸汽爆炸作为生物质的预处理,以及木质素在底物难降解中的复杂作用

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摘要

Sequential electron beam-steam explosion (EB-SE) pretreatment was applied to hardwood (Birch) and softwood (Pine) substrates in an effort to enhance their enzymatic saccharification. The effect of these two pretreatments on the structure and composition of the individual cell wall components was examined. The combination of these treatments showed a synergistic effect on the conversion of hemicelluloses into water soluble oligomers, and enhanced the overall enzymatic saccharification of wood substrates. Even after the combined pretreatment Pine was more recalcitrant than Birch, which was attributed to differences in the lignin. Model systems created from cellulose and isolated high molecular weight (HMW) lignin fractions were found to inhibit enzymatic conversion of cellulose by 20% over a control. This inhibition is likely related to the unproductive binding of the cellulose enzymes to the HMW lignin. Additionally, the presence of the HMW lignin reduces the swelling capacity of the wood substrate, and thus its accessibility to enzymes. Conversely, low molecular weight lignin fragments were found to be slightly beneficial for enzymatic hydrolysis of cellulose substrates. These results provide insight to the complex interactions between lignin and cellulase enzymes, and highlight the need for pretreatment processes that can effectively cleave lignin into oligomeric fragments.
机译:为了增强酶促糖化作用,对硬木(桦木)和软木(松木)基材进行了连续电子束蒸汽爆炸(EB-SE)预处理。检查了这两种预处理对单个细胞壁成分的结构和组成的影响。这些处理的组合对半纤维素转化为水溶性低聚物显示出协同作用,并增强了木材底物的整体酶促糖化作用。甚至在联合预处理之后,Pine还是比Birch更难分解,这归因于木质素的差异。发现由纤维素和分离的高分子量(HMW)木质素级分创建的模型系统比对照抑制纤维素的酶促转化率为20%。这种抑制可能与纤维素酶与HMW木质素的无效结合有关。另外,HMW木质素的存在降低了木材底物的溶胀能力,并因此降低了其对酶的可及性。相反,发现低分子量木质素片段对于纤维素底物的酶促水解稍微有利。这些结果提供了对木质素和纤维素酶之间复杂相互作用的见解,并突出了对预处理过程的需要,该预处理过程可有效地将木质素裂解为寡聚片段。

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