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吸附树脂对碱性黑液中木质素的吸附去除及其对玉米秸秆纤维素酶水解性能的影响。

Adsorption Study of Lignin Removal from Recycled Alkali Black Liquor by Adsorption Resins for Improved Cellulase Hydrolysis of Corn Straw.

机构信息

College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China.

出版信息

Molecules. 2020 Sep 29;25(19):4475. doi: 10.3390/molecules25194475.

Abstract

Previous studies showed that aromatic compounds such as lignin, phenols, and furans were main inhibitors of cellulase hydrolysis in recycled alkali black liquor (RBL), which should be removed to improve alkali utilization. In this study, three polymeric resins, XAD-4, XAD-16N, and XAD-7HP, were evaluated for their abilities to remove lignin from alkali black liquor recycled at the third time. Adsorption conditions of adsorbent dose and equilibrium time, isotherms, and kinetics were investigated. Of three tested adsorbents, XAD-16N was the most efficient, which can remove 89.84% of lignin after adsorption at an adsorbent-to-solution ratio of 1:4 for 2.5 h. Pseudo-second-order model was efficient to represent XAD-16N and XAD-7HP adsorption kinetics. Adsorption behavior of XAD-4 on RBL was fitted better to Langmuir model, while XAD-16N and XAD-7HP adsorption were more consistent with Freundlich model. The cellulase hydrolysis rate of corn straw treated with RBL after XAD-16N adsorption combined with ozone was 86.89%, which was only 0.89% lower than that of sodium hydroxide combined with ozone treatment. Structure characterization proved that the damage of XAD-16N adsorbed RBL to corn straw was similar to that of sodium hydroxide. It indicated that adsorption was effective in inhibitor removal from RBL to improve alkali utilization.

摘要

先前的研究表明,木质素、酚类和呋喃等芳香族化合物是回收碱法黑液(RBL)中纤维素水解的主要抑制剂,应加以去除以提高碱的利用率。本研究评估了三种聚合树脂 XAD-4、XAD-16N 和 XAD-7HP 去除第三次回收碱法黑液中木质素的能力。考察了吸附剂用量和平衡时间、等温线和动力学的吸附条件。在三种测试的吸附剂中,XAD-16N 的效率最高,在吸附剂与溶液比为 1:4 并吸附 2.5 小时后,可去除 89.84%的木质素。拟二阶模型能够有效地表示 XAD-16N 和 XAD-7HP 的吸附动力学。XAD-4 对 RBL 的吸附行为更符合 Langmuir 模型,而 XAD-16N 和 XAD-7HP 的吸附则更符合 Freundlich 模型。经 XAD-16N 吸附与臭氧处理后的玉米秸秆用 RBL 处理的纤维素水解率为 86.89%,仅比氢氧化钠与臭氧处理低 0.89%。结构特征证明,XAD-16N 吸附的 RBL 对玉米秸秆的破坏与氢氧化钠相似。这表明吸附在去除 RBL 中的抑制剂以提高碱的利用率方面是有效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8325/7584022/926417eaebbb/molecules-25-04475-g001.jpg

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