蒸馏水
光催化
膜蒸馏
蒸馏
化学工程
多孔性
微尺度化学
吸附
热解
介孔材料
饮用水净化
水处理
材料科学
膜
化学
光热治疗
纳米技术
环境工程
色谱法
环境科学
有机化学
复合材料
海水淡化
催化作用
数学教育
工程类
生物化学
数学
作者
Chengjie Song,Dianpeng Qi,Yu Han,Ying Xu,Hongbo Xü,Shijie You,Wei Wang,Ce Wang,Yen Wei,Jun Ma
标识
DOI:10.1021/acs.est.9b07903
摘要
Solar distillation is emerging as a robust and energy-effective tool for water purification and freshwater production. However, many water sources contain harmful volatile organic compounds (VOCs), which can evaporate through the photothermal evaporators and be collected together with distilled water, or even be enriched in the distilled water. In view of the penetration of volatile organic compounds, herein, we rationally demonstrate a dual-scale porous, photothermal/photocatalytic, flexible membrane for intercepting volatile organic compounds during solar distillation, which is based on a mesoporous oxygen-vacancy-rich TiO2-x nanofibrous membrane (m-TiO2-x NFM). The dual-scale porous structure was constructed by micrometer-sized interconnected tortuous pores formed by the accumulation of m-TiO2-x nanofibers and nanometer-sized pores in the m-TiO2-x individual nanofibers. Consequently, the membrane can sustainably in situ intercept VOCs by providing more photocatalytic reactive sites for collision (mainly by mesopores) and longer tortuous channels for prolonging VOC retention (mainly by micrometer-sized pores); thus, it results in less than 5% of phenol residual in distilled water. As a proof of concept, when the m-TiO2-x NFM is employed to purify practical river water in an evaporation prototype under real solar irradiation, complex volatile natural organic contaminants can be effectively intercepted and the produced distilled water meets the drinking water standards of China. This development will promote the application prospects of solar distillation.
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