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三种脱木质素预处理方法对硬木的效果:水解产率、综合质量平衡及木质素特性

Performance of three delignifying pretreatments on hardwoods: hydrolysis yields, comprehensive mass balances, and lignin properties.

作者信息

Bhalla Aditya, Cai Charles M, Xu Feng, Singh Sandip K, Bansal Namita, Phongpreecha Thanaphong, Dutta Tanmoy, Foster Cliff E, Kumar Rajeev, Simmons Blake A, Singh Seema, Wyman Charles E, Hegg Eric L, Hodge David B

机构信息

1Department of Biochemistry & Molecular Biology, Michigan State University, East Lansing, MI 48824 USA.

2DOE Great Lakes Bioenergy Research Center (GLBRC), Michigan State University, East Lansing, MI 48824 USA.

出版信息

Biotechnol Biofuels. 2019 Sep 9;12:213. doi: 10.1186/s13068-019-1546-0. eCollection 2019.

Abstract

BACKGROUND

In this work, three pretreatments under investigation at the DOE Bioenergy Research Centers (BRCs) were subjected to a side-by-side comparison to assess their performance on model bioenergy hardwoods (a eucalyptus and a hybrid poplar). These include co-solvent-enhanced lignocellulosic fractionation (CELF), pretreatment with an ionic liquid using potentially biomass-derived components (cholinium lysinate or [Ch][Lys]), and two-stage Cu-catalyzed alkaline hydrogen peroxide pretreatment (Cu-AHP). For each of the feedstocks, the pretreatments were assessed for their impact on lignin and xylan solubilization and enzymatic hydrolysis yields as a function of enzyme loading. Lignins recovered from the pretreatments were characterized for polysaccharide content, molar mass distributions, β-aryl ether content, and response to depolymerization by thioacidolysis.

RESULTS

All three pretreatments resulted in significant solubilization of lignin and xylan, with the CELF pretreatment solubilizing the majority of both biopolymer categories. Enzymatic hydrolysis yields were shown to exhibit a strong, positive correlation with the lignin solubilized for the low enzyme loadings. The pretreatment-derived solubles in the [Ch][Lys]-pretreated biomass were presumed to contribute to inhibition of enzymatic hydrolysis in the eucalyptus as a substantial fraction of the pretreatment liquor was carried forward into hydrolysis for this pretreatment. The pretreatment-solubilized lignins exhibited significant differences in polysaccharide content, molar mass distributions, aromatic monomer yield by thioacidolysis, and β-aryl ether content. Key trends include a substantially higher polysaccharide content in the lignins recovered from the [Ch][Lys] pretreatment and high β-aryl ether contents and aromatic monomer yields from the Cu-AHP pretreatment. For all lignins, the C NMR-determined β-aryl ether content was shown to be correlated with the monomer yield with a second-order functionality.

CONCLUSIONS

Overall, it was demonstrated that the three pretreatments highlighted in this study demonstrated uniquely different functionalities in reducing biomass recalcitrance and achieving higher enzymatic hydrolysis yields for the hybrid poplar while yielding a lignin-rich stream that may be suitable for valorization. Furthermore, modification of lignin during pretreatment, particularly cleavage of β-aryl ether bonds, is shown to be detrimental to subsequent depolymerization.

摘要

背景

在本研究中,美国能源部生物能源研究中心(BRCs)正在研究的三种预处理方法进行了并列比较,以评估它们对典型生物能源硬木(一种桉树和一种杂交杨树)的处理效果。这些预处理方法包括共溶剂强化木质纤维素分级分离(CELF)、使用潜在生物质衍生成分(赖氨酸胆碱或[Ch][Lys])的离子液体预处理,以及两阶段铜催化碱性过氧化氢预处理(Cu - AHP)。对于每种原料,评估了预处理对木质素和木聚糖溶解以及酶水解产率的影响,这些影响是酶负载量的函数。对预处理回收的木质素进行了多糖含量、摩尔质量分布、β - 芳基醚含量以及硫代酸解解聚反应响应的表征。

结果

所有三种预处理都导致了木质素和木聚糖的显著溶解,CELF预处理溶解了这两种生物聚合物类别的大部分。对于低酶负载量,酶水解产率与溶解的木质素呈现出强烈的正相关。[Ch][Lys]预处理生物质中的预处理衍生可溶物被认为对桉树木质的酶水解有抑制作用,因为对于这种预处理,相当一部分预处理液被带入水解过程中。预处理溶解的木质素在多糖含量、摩尔质量分布、硫代酸解芳香单体产率和β - 芳基醚含量方面表现出显著差异。关键趋势包括从[Ch][Lys]预处理回收的木质素中多糖含量显著更高,以及Cu - AHP预处理中β - 芳基醚含量和芳香单体产率较高。对于所有木质素,通过核磁共振碳谱测定的β - 芳基醚含量与单体产率呈二阶函数相关。

结论

总体而言,本研究中突出的三种预处理方法在降低生物质抗性和实现杂交杨树更高的酶水解产率方面表现出独特的不同功能,同时产生了可能适合增值利用的富含木质素的物流。此外,预处理过程中木质素的改性,特别是β - 芳基醚键的断裂,对后续解聚是有害的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d31/6732840/186a5e7e9338/13068_2019_1546_Fig1_HTML.jpg

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