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半连续式水热体系对木质纤维素废物的多级溶解和水解。

Multi-level dissolution and hydrolysis of lignocellulosic waste with a semi-flow hydrothermal system.

机构信息

School of Environment, Beijing Normal University, Beijing 100875, China.

School of Environment, Beijing Normal University, Beijing 100875, China.

出版信息

Bioresour Technol. 2016 Aug;214:496-503. doi: 10.1016/j.biortech.2016.04.135. Epub 2016 May 2.

Abstract

The hydrothermal process is efficient in lignocellulosic conversion and is beneficial to potential bioethanol production. In batch- and flow-type processes, concurrent dissolution and hydrolysis of lignocellulose result in product loss and inhibitory intermediates. Therefore, multi-level hydrothermal conversion of corn stalks was implemented with a semi-flow system to provide different residence times to undissolved compounds and facilitate dissolution or hydrolysis at respective optimal conditions. First-stage dissolution dissolved amorphous hemicellulose and lignin at 195-200°C. Xylan, acid soluble lignin, and part of Klason lignin were dissolved without affecting glucan. In second-stage dissolution, the crystallinity of the undissolved materials suddenly decreased at 245-250°C. The cellulose dissolution ratio was higher than 75%. Soluble sugars were obtained after the hydrolysis of dissolved cellulose at 280°C. The results provide significant information on the multi-level hydrothermal process and its potential applications for recovering valuable chemicals from lignocellulosic waste.

摘要

水热过程在木质纤维素转化方面效率很高,有利于潜在的生物乙醇生产。在分批式和流动式工艺中,木质纤维素的同时溶解和水解会导致产物损失和抑制性中间产物的形成。因此,采用半连续流系统对玉米秸秆进行多级水热转化,为未溶解的化合物提供不同的停留时间,并在各自的最佳条件下促进溶解或水解。第一级溶解在 195-200°C 下溶解无定形半纤维素和木质素。木聚糖、酸溶性木质素和部分 Klason 木质素溶解,而不影响葡聚糖。在第二级溶解中,245-250°C 时未溶解物质的结晶度突然下降。纤维素的溶解率高于 75%。在 280°C 下溶解纤维素水解后可获得可溶性糖。这些结果为多级水热过程及其从木质纤维素废物中回收有价值化学品的潜在应用提供了重要信息。

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