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Precipitate obtained following membrane separation of hydrothermally pretreated rice straw liquid revealed by 2D NMR to have high lignin content

机译:在2D NMR露出的水热预处理稻草液的膜分离后获得的沉淀物具有高木质素含量

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Background Hydrothermal pretreatment of lignocellulosic biomass such as rice straw can dissolve part of the lignin and hemicellulose into a liquid fraction, thus facilitating enzyme accessibility to cellulose in bioethanol production process. Lignin is awaited to be recovered after hydrothermal pretreatment for utilization as value-added chemical, and lignin recovery also means removal of fermentation inhibitors. To recover lignin with high content from the liquid fraction, it is necessary to separate lignin and hemicellulose-derived polysaccharide. Therefore, the following processes were applied: membrane separation with nanofiltration (NF) and enzymatic hydrolysis by hemicellulase. To clarify lignin-concentrated fraction obtained during these processes, the fates of lignin and polysaccharide components were pursued by a solution NMR method and confirmed by compositional analysis of each fraction. Results After hydrothermal pretreatment of rice straw, the NF concentrate of the supernatant of liquid fraction was hydrolyzed by hemicellulase and the resulting black precipitate was recovered. In this black precipitate, the intensity of NMR spectra related to lignin aromatic regions increased and those related to polysaccharides decreased, compared to rice straw, the solid fraction after hydrothermal pretreatment, and the NF concentrate. The lignin content of the black precipitate was 65.8 %. Lignin in the black precipitate included 52.9 % of the acid-insoluble lignin and 19.4 % of the soluble lignin in the NF concentrate of supernatant of liquid fraction. Conclusion A precipitate with high lignin content was obtained from supernatants of the liquid fraction. These results suggested that precipitation of lignin was enhanced from concentrated mixtures of lignin and hemicellulosic polysaccharides by hydrolyzing the polysaccharides. Precipitation of lignin can contribute to lignin recovery from lignocellulosic biomass and, at the same time, allow more efficient ethanol production in the subsequent fermentation process.
机译:背景技术木质纤维素生物质的水热预处理如稻草可以将部分木质素和半纤维素溶解在液体级分中,从而促进生物乙醇生产过程中纤维素的酶可用性。在水热预处理以供增值化学物质进行水热预处理后,可以恢复木质素,并且木质素恢复也意味着去除发酵抑制剂。为了从液体级分中恢复高含量的木质素,是必须分离木质素和半纤维素衍生的多糖。因此,应用了以下方法:用半纤维素酶(NF)与纳米滤膜(NF)分离和通过半纤维素酶分离。为了澄清在这些过程中获得的木质素浓缩的级分,通过溶液NMR方法追踪木质素和多糖组分的释放,并通过每个馏分的组成分析证实。结果稻草水热预处理后,通过半纤维素酶水解液体级分的上清液的NF浓缩物,回收了所得黑色沉淀。在这种黑色沉淀物中,与木质素芳香区有关的NMR光谱的强度增加,与稻草秸秆相比,与多糖的关系减少,水热预处理后的固体级分,NF浓缩物。黑色沉淀物的木质素含量为65.8%。黑蛋白在黑色沉淀物中包括52.9%的酸不溶性木质素和19.4%的液体馏分上清液中的溶解木质素。结论从液体级分的上清液获得高木质素含量的沉淀。这些结果表明,通过水解多糖从木质素和半纤维素多糖的浓缩混合物中提高了木质素的沉淀。木质素的沉淀可以有助于从木质纤维素生物质的木质素回收,同时允许在随后的发酵过程中更有效的乙醇产生。

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