Constructing zirconium based metal-organic frameworks based electrically-driven self-cleaning membrane for removal of tetracycline: Effect of ligand substitution

被引:0
作者
Yin, Zhonglong [1 ]
Liu, Yulong [1 ]
Zhou, Shihao [1 ]
Yang, Zhen [1 ]
Yang, Weiben [1 ]
机构
[1] Nanjing Normal Univ, Sch Chem & Mat Sci, Jiangsu Prov Key Lab Carbon & Nitrogen Cycle Proc, Nanjing 210023, Peoples R China
关键词
Metal -organic frameworks; Ultrafiltration; Tetracycline degradation; Self-cleaning; Electrocatalytic membrane;
D O I
暂无
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Herein, UiO-66-X (X = H, NH2, Br, NO2) were employed to construct the electrocatalytic membranes by blending with conductive graphite and Polyvinylidene fluoride (PVDF) for removal of tetracycline under low current density of 0.01 mA/cm(2). The physicochemical and electrochemical properties of the fabricated membrane were investigated systematically. Results showed that ligand substitution reduced the molecular weight cutoff (MWCO) and pure water flux of UiO-66-X based membranes in the order of -Br > -NO2 > -NH2 due to the size exclusion effect. In addition, compared with UiO-66, UiO-66 functionalized with electron-donating group (-NH2) endowed the electrocatalytic membrane with superior anti-fouling ability using bovine serum albumin (BSA) as model foulant, and inferior tetracycline removal and self-cleaning property, while the opposite phenomenon occurred for the functionalization of electronic-accepting groups (-Br and -NO2) owing to the promoted electrocatalytic activity and inhibited oxygen evolution side reaction. Notably, UiO-66-NO2/Graphite/PVDF mem-brane removed 99.5 % of tetracycline and flux of fouled membrane was almost fully recovered by electric field for six cycles under low current density of 0.01 mA/cm(2). center dot OH and center dot O(2)( -)radicals played dominant roles in tetracycline removal by electrocatalytic membranes and three degradation pathways of tetracycline were pro-posed according to the liquid chromatography-mass spectrometry. Electrically-driven self-cleaning mechanism was related to the reduced fouling potential of BSA after oxidation degradation. This work gets new insights into the effect of ligand substitution on the performance of Zr-MOFs based electrocatalytic membrane for antibiotics removal.
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页数:13
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