木质素磺酸盐
渗透汽化
膜
渗透
化学工程
材料科学
化学
膜技术
色谱法
肿胀 的
有机化学
木质素
生物化学
工程类
作者
Saisai Li,Xin Geng,Chao Ma,Xia Zhan,Jiding Li,Ming‐Guo Ma,Jing He,Luying Wang
标识
DOI:10.1016/j.seppur.2021.119294
摘要
Lignosulfonates are a by-product of the agricultural and forestry waste and paper industries. Strengthening the sustainable use of lignosulfonates is a problem to be solved. In this study, hydrophilic agricultural and forestry waste calcium lignosulfonate (CaLS) was combined with single/double-layered MXene, and added to the natural polysaccharide sodium alginate (SA) to prepare a pervaporation me, membrane with a three-component hybrid structure. Characterization experiments such as scanning electron microscopy and contact angle demonstrated that CaLS increased the hydrophilicity and reduced swelling of the membrane, and MXene formed a layered cross-sectional morphology that further reduced swelling. A 90% ethanol aqueous solution was used to evaluate the dehydration performance of the membrane. The results showed that the permeation flux and separation factor of the membrane increased by 74% and 160%, respectively. Compared to the pure SA membrane after CaLS was incorporated. MXene further improved the pervaporation performance of the [email protected]/SA membrane, with the permeation flux of about 938 g·m−2·h−1, and the separation factor of 4612 (two and four times higher than the pure SA membrane, respectively). This study provides a theoretical and technical basis for the development of new separation materials, and will help expand the high-value utilization of lignosulfonates.
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