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首页> 外文期刊>Industrial Crops and Products >Biorefining fractionation of the Camellia oleifera Abel. hull into diverse bioproducts with a two-stage organosolv extraction
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Biorefining fractionation of the Camellia oleifera Abel. hull into diverse bioproducts with a two-stage organosolv extraction

机译:山茶油的生物精制分级。通过两步有机溶剂萃取将船体加工成多种生物产品

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摘要

This study developed a two-stage organosolv extraction process for the production of diverse components from lea oil fruit hull (TOFH) - a common lignocellulosic byproduct of tea oil processing industry. Results showed that a mild aqueous ethanol organosolv (AEO) extraction isolated 83.8% of tea saponin and 81.5% of tannin from the TOFH. Further, a severe atmospheric glycerol organosolv (AGO) extraction recovered the residual tea saponin and tannin. Meantime, the AGO process removed 40% of the hemicellulose and 35% of the lignin. The solid residual after the two-stage AEO-AGO extraction had a high cellulose hydrolyzability (>95%), much higher than that (only 40%) of one-step AEO extracted solid residual. Structural features of these undissolved solids were characterized by SEM, AFM and FT-IR. The two-stage organosolv extraction showed good potential in biorefining of the agroforestry biomass into value added bioproducts. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项研究开发了一种两阶段的有机溶剂提取工艺,用于从茶油加工业中常见的木质纤维素副产品-豆油果壳(TOFH)中生产各种成分。结果表明,温和的乙醇有机溶剂水溶液(AEO)萃取可从TOFH中分离出83.8%的茶皂素和81.5%的单宁。此外,严重的大气甘油有机溶剂(AGO)萃取回收了残留的茶皂素和单宁酸。同时,AGO工艺去除了40%的半纤维素和35%的木质素。两步AEO-AGO萃取后的固体残留物具有较高的纤维素水解性(> 95%),远高于一步一步AEO萃取的固体残留物的纤维素水解度(仅40%)。这些未溶解的固体的结构特征通过SEM,AFM和FT-IR表征。两阶段有机溶剂萃取显示出在将农林业生物质生物转化为增值生物产品方面的良好潜力。 (C)2016 Elsevier B.V.保留所有权利。

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