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Ying Khoo, P. Goh, W. Lau, A. Ismail, M. Abdullah, Nor Ghazali, N. Yahaya, Norbaya Hashim, Ahmad Othman, Alias Mohammed, Nirmala Kerishnan, Muhammad Yusoff, Noor Hashim, J. Karim, N. Abdullah (2022)
Removal of emerging organic micropollutants via modified-reverse osmosis/nanofiltration membranes: A review.Chemosphere
L. Nghiem, A. Schäfer, M. Elimelech (2006)
Role of electrostatic interactions in the retention of pharmaceutically active contaminants by a loose nanofiltration membraneJournal of Membrane Science, 286
Sewoon Kim, K. Chu, Y. Al-Hamadani, C. Park, Min Jang, Do-Hyung Kim, Miao Yu, Jiyong Heo, Y. Yoon (2018)
Removal of contaminants of emerging concern by membranes in water and wastewater: A reviewChemical Engineering Journal, 335
F H Frimmel (1998)
201Journal of Contaminant Hydrology, 35
Dongli Wei, Jia-chen Li, Zhongshan Chen, Lijun Liang, Junping Ma, Mingzhi Wei, Y. Ai, Xiangke Wang (2020)
Understanding bisphenol-A adsorption in magnetic modified covalent organic frameworks: Experiments coupled with DFT calculationsJournal of Molecular Liquids, 301
Jinkai Xue, Seyed Samaei, Jianfei Chen, Ariana Doucet, K. Ng (2021)
What have we known so far about microplastics in drinking water treatment? A timely reviewFrontiers of Environmental Science & Engineering, 16
H. El-Salam, H. Askalany (2017)
Synthesis and characterization of crystalline poly(N-(2-hydroxyethyl)aniline) microspheresHigh Performance Polymers, 29
Xiaotong Cao, Jianquan Luo, J. Woodley, Y. Wan (2016)
Bioinspired Multifunctional Membrane for Aquatic Micropollutants Removal.ACS applied materials & interfaces, 8 44
Y. Yavuz, A. Koparal (2006)
Electrochemical oxidation of phenol in a parallel plate reactor using ruthenium mixed metal oxide electrode.Journal of hazardous materials, 136 2
M. Muhamad, M. Salim, W. Lau, Z. Yusop, T. Hadibarata (2016)
The Removal of Bisphenol A in Water Treatment Plant Using Ultrafiltration Membrane SystemWater, Air, & Soil Pollution, 227
Liming Yu, Jie Cheng, Haosen Yang, Jie Lv, Peilong Wang, Jianrong Li, X. Su (2021)
Simultaneous adsorption and determination of bisphenol compounds in water medium with a Zr(IV)-based metal-organic frameworkMicrochimica Acta, 188
Haiguang Zhang, X. Quan, Xinfei Fan, Gang Yi, Shuo Chen, Hongtao Yu, Yongsheng Chen (2018)
Improving Ion Rejection of Conductive Nanofiltration Membrane through Electrically Enhanced Surface Charge Density.Environmental science & technology, 53 2
J. Jang, J. Woo, JaeYeol Lee, Chang-Soo Han (2016)
Ambivalent Effect of Thermal Reduction in Mass Rejection through Graphene Oxide Membrane.Environmental science & technology, 50 18
X. Loh, M. Sairam, A. Bismarck, J. Steinke, A. Livingston, Kang Li (2009)
Crosslinked integrally skinned asymmetric polyaniline membranes for use in organic solventsJournal of Membrane Science, 326
Haofei Guo, Zhikan Yao, Zhe Yang, Xiao-hua Ma, Jianqiang Wang, C. Tang (2017)
A One-Step Rapid Assembly of Thin Film Coating Using Green Coordination Complexes for Enhanced Removal of Trace Organic Contaminants by Membranes.Environmental science & technology, 51 21
Yanbiao Liu, Han Liu, Zhi Zhou, Tianren Wang, C. Ong, C. Vecitis (2015)
Degradation of the Common Aqueous Antibiotic Tetracycline using a Carbon Nanotube Electrochemical Filter.Environmental science & technology, 49 13
M. Muhamad, M. Salim, W. Lau, Z. Yusop (2016)
A review on bisphenol A occurrences, health effects and treatment process via membrane technology for drinking waterEnvironmental Science and Pollution Research, 23
A. Zaky, B. Chaplin (2014)
Mechanism of p-substituted phenol oxidation at a Ti4O7 reactive electrochemical membrane.Environmental science & technology, 48 10
Haofei Guo, Xianhui Li, Wulin Yang, Zhikan Yao, Ying Mei, L. Peng, Zhe Yang, Senlin Shao, C. Tang (2021)
Nanofiltration for drinking water treatment: a reviewFrontiers of Chemical Science and Engineering, 16
M. Umar, F. Roddick, L. Fan, H. Aziz (2013)
Application of ozone for the removal of bisphenol A from water and wastewater--a review.Chemosphere, 90 8
Jorge García-Ivars, L. Martella, Manuele Massella, C. Carbonell-Alcaina, M. Alcaina-Miranda, M. Iborra-Clar (2017)
Nanofiltration as tertiary treatment method for removing trace pharmaceutically active compounds in wastewater from wastewater treatment plants.Water research, 125
K. Kimura, G. Amy, J. Drewes, T. Heberer, Tae-Uk Kim, Y. Watanabe (2003)
REJECTION OF ORGANIC MICROPOLLUTANTS (DISINFECTION BY-PRODUCTS, ENDOCRINE DISRUPTING COMPOUNDS, AND PHARMACEUTICALLY ACTIVE COMPOUNDS) BY NF/RO MEMBRANESJournal of Membrane Science, 227
Haosen Yang, Bin Wang, Jing-Hao Liu, Jie Cheng, Liming Yu, Jiamei Yu, Peilong Wang, Jianrong Li, X. Su (2020)
Sensitive and Selective Detection of Bisphenol Compounds in a Fluorescent Metal-Organic FrameworkSensors and Actuators B-chemical, 314
Xinfei Fan, Huimin Zhao, Yanming Liu, X. Quan, Hongtao Yu, Shuo Chen (2015)
Enhanced permeability, selectivity, and antifouling ability of CNTs/Al2O3 membrane under electrochemical assistance.Environmental science & technology, 49 4
Lei Jin, S. Yu, S. Yu, W. Shi, X. Yi, Nan Sun, Y. Ge, Chao Ma (2012)
Synthesis of a novel composite nanofiltration membrane incorporated SiO2 nanoparticles for oily wastewater desalinationPolymer, 53
Haofei Guo, Yu Deng, Zhi-Peng Tao, Zhikan Yao, Jianqiang Wang, Chun-er Lin, Tong Zhang, Bao-ku Zhu, C. Tang (2016)
Does Hydrophilic Polydopamine Coating Enhance Membrane Rejection of Hydrophobic Endocrine-Disrupting Compounds?Environmental Science and Technology Letters, 3
G. Tissot, Á. Anglada, Petros Dimitriou‐Christidis, L. Rossi, J. Arey, C. Comninellis (2012)
Kinetic experiments of electrochemical oxidation of iohexol on BDD electrodes for wastewater treatmentElectrochemistry Communications, 23
Danyang Liu, J. Cabrera, Lijuan Zhong, Wenjing Wang, Dingyuan Duan, Xiaomao Wang, Shuming Liu, Yuefeng Xie (2020)
Using loose nanofiltration membrane for lake water treatment: A pilot studyFrontiers of Environmental Science & Engineering, 15
X Chen (2016)
5696Nanoscale, 8
H. Kuramitz, M. Matsushita, Shunitz Tanaka (2004)
Electrochemical removal of bisphenol A based on the anodic polymerization using a column type carbon fiber electrode.Water research, 38 9
W. Duan, Avner Ronen, S. Walker, D. Jassby (2016)
Polyaniline-Coated Carbon Nanotube Ultrafiltration Membranes: Enhanced Anodic Stability for In Situ Cleaning and Electro-Oxidation Processes.ACS applied materials & interfaces, 8 34
A. Schäfer, İme Akanyeti̇, A. Semiao (2011)
Micropollutant sorption to membrane polymers: a review of mechanisms for estrogens.Advances in colloid and interface science, 164 1-2
Jae-Hyuk Kim, P. Park, Chung‐Hak Lee, H. Kwon (2008)
Surface modification of nanofiltration membranes to improve the removal of organic micro-pollutants (EDCs and PhACs) in drinking water treatment: Graft polymerization and cross-linking followed by functional group substitutionJournal of Membrane Science, 321
H Kuramitz (2001)
37Chemosphere, 45
Shuo Wei, Lei Du, Shuo Chen, Hongtao Yu, X. Quan (2020)
Electro-assisted CNTs/ceramic flat sheet ultrafiltration membrane for enhanced antifouling and separation performanceFrontiers of Environmental Science & Engineering, 15
X Huang (2015)
8725Journal of Materials Chemistry. A, Materials for Energy and Sustainability, 3
M. Shin, Wansuk Choi, Sung Park, Sungkwon Jeon, Seungkwan Hong, Jung Lee (2021)
Critical review and comprehensive analysis of trace organic compound (TOrC) removal with polyamide RO/NF membranes: Mechanisms and materialsChemical Engineering Journal, 427
Ying Cai, Jun Wu, Jian Lu, Jianhua Wang, Cui Zhang (2021)
Fate of microplastics in a coastal wastewater treatment plant: Microfibers could partially break through the integrated membrane systemFrontiers of Environmental Science & Engineering, 16
Y. Zhang, C. Causserand, P. Aimar, J. Cravedi (2006)
Removal of bisphenol A by a nanofiltration membrane in view of drinking water production.Water research, 40 20
Jianhua Chen, Xia Huang, Duu-Jong Lee (2008)
Bisphenol A removal by a membrane bioreactorProcess Biochemistry, 43
Jie Zhang, D. Shu, Tianren Zhang, Hongyu Chen, Haimin Zhao, Yongsheng Wang, Zhenjie Sun, Shaoqing Tang, Fang Xueming, Xiufang Cao (2012)
Capacitive properties of PANI/MnO2 synthesized via simultaneous-oxidation routeJournal of Alloys and Compounds, 532
L. Nghiem, A. Schäfer, M. Elimelech (2003)
Removal of natural hormones by nanofiltration membranes: measurement, modeling, and mechanisms.Environmental science & technology, 38 6
Yanming Zhang, K. Pagilla (2010)
Treatment of malathion pesticide wastewater with nanofiltration and photo-Fenton oxidationDesalination, 263
B. Zhao, K. Neoh, E. Kang, K. Tan (2000)
Concurrent N-Alkylation and Doping of Polyaniline by Alkyl HalidesChemistry of Materials, 12
J. Grooth, D. Reurink, J. Ploegmakers, W. Vos, K. Nijmeijer (2014)
Charged micropollutant removal with hollow fiber nanofiltration membranes based on polycation/polyzwitterion/polyanion multilayers.ACS applied materials & interfaces, 6 19
Nanofiltration (NF) has attracted increasing attention for wastewater treatment and potable water purification. However, the high-efficiency removal of micropollutants by NF membranes is a critical challenge. Owing to the adsorption and subsequent diffusion, some weakly charged or uncharged micropollutants, such as bisphenol A (BPA), can pass through NF membranes, resulting in low removal rates. Herein, an effective strategy is proposed to enhance the BPA removal efficiency of a crosslinked polyaniline/carbon nanotube NF membrane by coupling the membrane with electro-assistance. The membrane exhibited a 31.9% removal rate for 5 mg/L BPA with a permeance of 6.8 L/(m2·h·bar), while the removal rate was significantly improved to 98.1% after applying a voltage of 2.0 V to the membrane. Furthermore, when BPA coexisted with humic acid, the membrane maintained 94% removal of total organic carbon and nearly 100% removal of BPA at 2.0 V over the entire filtration period. Compared to continuous voltage applied to the membrane, an intermittent voltage (2.0 V for 0.5 h with an interval of 3.5 h) could achieve comparable BPA removal efficiency, because of the combined effect of membrane adsorption and subsequent electrochemical oxidation. Density functional theory calculations and BPA oxidation process analyses suggested that BPA was adsorbed by two main interactions: π–π and hydrogen-bond interactions. The adsorbed BPA was further electro-degraded into small organic acids or mineralized to CO2 and H2O. This work demonstrates that NF membranes coupled with electro-assistance are feasible for improving the removal of weakly charged or uncharged micropollutants.[graphic not available: see fulltext]
Frontiers of Environmental Science & Engineering – Springer Journals
Published: May 1, 2023
Keywords: Nanofiltration; Membrane; Electro-assistance; Adsorption; Bisphenol A
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