膜
化学工程
正渗透
碳纳米管
废水
材料科学
吸附
浓差极化
纳米复合材料
反渗透
选择性
薄膜复合膜
缓压渗透
环境工程
化学
纳米技术
有机化学
吸附
工程类
催化作用
生物化学
作者
Pengfei Sun,Zhe Yang,Xiaoxiao Song,Jeong Hoon Lee,Chuyang Y. Tang,Hee‐Deung Park
标识
DOI:10.1021/acs.est.1c01968
摘要
Forward osmosis (FO) hybrid systems have the potential to simultaneously recover nutrients and water from wastewater. However, the lack of membranes with high permeability and selectivity has limited the development and scale-up of these hybrid systems. In this study, we fabricated a novel thin-film nanocomposite membrane featuring an interlayer of Ti3C2Tx MXene intercalated with carbon nanotubes (M/C-TFNi). Owing to the enhanced confinement effect on interfacial degassing and increased amine monomer sorption by the interlayer, the resulting M/C-TFNi FO membrane has a greater degree of cross-linking and roughness. In comparison with the thin-film composite (TFC) membrane without an interlayered structure, the M/C-TFNi membrane attained a water flux that was four times higher and a lower specific salt flux. Notably, the M/C-TFNi membrane exhibited excellent concentration efficiency for real municipal wastewater and enhanced rejection of ammonia nitrogen, which breaks the permeability-selectivity upper bound. This study provides a new avenue for the rational design and development of high-performance FO membranes for environmental applications.
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