电容去离子
光催化
海水淡化
卤水
吸附
废水
膜
饮用水净化
化学工程
污染
反渗透
碳纳米管
水处理
环境友好型
材料科学
化学
废物管理
环境工程
纳米技术
环境科学
有机化学
催化作用
生态学
工程类
生物
生物化学
作者
Gui Ye,Zhiyong Yu,Yiming Li,Lei Li,Li Song,Li Gu,Xuebo Cao
标识
DOI:10.1016/j.watres.2019.03.058
摘要
Many current treatments for brine wastewaters are energy-intensive, chemical-intensive, and involve independent process in the removal of salts and contaminants. We demonstrate that through the integration of capacitive deionization and photocatalysis reactions within carbon nanotubes (CNTs) based membrane system, we are able to realize the purification and desalination of wastewaters via single-step, energy-efficient, and environmentally friendly route. We firstly designed the membrane system consisting of graphitic carbon nitride (g-C3N4), CNTs membrane, and poly(vinyl alcohol)-formaldehyde (PVF) foam. Then, two identical membrane systems were used as permeable electrodes and photocatalytic microreactors to construct the flow-through setup. The tests of the setup with a variety of dye solution, antibiotics solution, and actual wastewaters prove that wastewaters passing through the setup promptly turn to clean water with significantly decreased salinity. This is because the setup can use C3N4 modified CNTs membrane to adsorb organic contaminants and inorganic ions and decompose contaminants via photocatalysis reactions. In addition, by discharging the setup, its adsorption capacity towards salts is easily recovered. Consequently, the flow-through setup is observed to exhibit stable performance for concurrent removal of organic contaminants and inorganic salts in multiple cycles.
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