膜蒸馏
结垢
膜
膜污染
化学工程
化学
催化作用
废水
碳纳米管
材料科学
环境工程
纳米技术
有机化学
海水淡化
环境科学
生物化学
工程类
作者
Zhongsen Yan,Xiaolei Chen,Shulei Bao,Haiqing Chang,Hongliang Liu,Gongduan Fan,Qiankun Wang,Xianzhi Fu,Fangshu Qu,Heng Liang
标识
DOI:10.1016/j.seppur.2022.122207
摘要
• Photothermal and Fenton-like catalytic properties membrane was firstly fabricated for MD. • In situ Fenton-like reactions effectively degrade the membrane foulant. • Co-MoS 2 /CNT/PTFE maintains excellent performances in the three cycle tests. • In situ oxidation of S O 4 ∙ - , · OH and 1 O 2 rendered membrane fouling control. Intensive energy dependence and membrane fouling are the inherent limitations of membrane distillation (MD) process for the application. Solar energy is promising sustainable energy for both alleviating the energy shortage and activating the Fenton-like reaction for various pollutants degradation. By in situ integrating Fenton-like and photothermal MD processes, the restriction of energy dependence and membrane fouling on the MD process might be effectively liberated. In this study, Co-MoS 2 /CNT was introduced to PTFE membrane modification through vacuum filtration, which simultaneously endowed the membrane with optothermal effect and Fenton-like activation abilities. The membrane was evaluated in a dye wastewater treatment under the irradiation of 1 kW/m 2 light density. Results showed that the degradation degree of RhB can reach 80% within 1 hour on the feed side, while the permeate flux maintains at 2.43 kg/(m 2 ·h) with an initial feed temperature of 35℃. In addition, the flux of the Co-MoS 2 /CNT/PTFE membrane can be maintained above 95% after three fouling-cleaning cycles, indicating that the modified membrane has a good self-cleaning performance. This work provides a low carbon option which improving mass transfer effect and fouling control ability for dye wastewater treatment by MD using solar energy.
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