Water and humic acid transport in graphene-derived membrane: Mechanisms and implications to functional membrane design

被引:14
作者
Qin, Lanlan [1 ,2 ]
Tobiason, John E. [2 ]
Huang, Haiou [1 ,3 ]
机构
[1] Beijing Normal Univ, Sch Environm, State Key Joint Lab Environm Simulat & Pollut Con, 19 Xinjiekouwai St, Beijing 100875, Peoples R China
[2] Univ Massachusetts, Dept Civil & Environm Engn, Amherst, MA 01003 USA
[3] Johns Hopkins Univ, Bloomberg Sch Publ Hlth, Dept Environm Hlth & Engn, 615 North Wolfe St, Baltimore, MD 21205 USA
基金
中国国家自然科学基金;
关键词
Adsorption; Graphene; Humic acid; Molecular dynamics; Transport; MOLECULAR-DYNAMICS SIMULATION; NANOPOROUS GRAPHENE; OXIDE MEMBRANES; POTENTIAL FUNCTIONS; DESALINATION; ADSORPTION; SEPARATION; HYDROPHILICITY; COMPLEXATION; SUBSTANCES;
D O I
10.1016/j.memsci.2020.118441
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Graphene-derived membranes (GDM) have drawn broad attentions due to their superb water permeation and contaminant retention capabilities. In this paper, the transport of model humic acid (HA) and water through GDM is studied using the molecular dynamics simulation approach. By systematically varying the positions of functional groups and membrane pore dimensions, we find that the introduction of functional groups at the slit edge, the basal plane or the interlayer of bilayer graphene nanosheets reduces water permeation through the membranes to significantly different extents. Comparatively, -COO- at the slit edge of GE nanosheet produces the strongest electrostatic interaction for enhanced HA retention and greater water permeability than graphene oxide membranes. Furthermore, HA adsorbed inside GDM may cause membrane fouling due to pore blocking at the slit entrance or pore constriction inside the slit or the interlayer. Meanwhile, the reversibility of membrane fouling depends upon HA desorption, which is easier for HA anchored via functional groups than stacked via pi-pi interaction onto graphene surfaces. Our findings emphasize that the performance of functional GDM for water treatment is highly dependent upon the specific position of chemical modification, which has been commonly overlooked in previous studies.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] Design and Synthesis of Acid-resistant Zeolite T/NaY Composite Membrane for Water/Ethanol Separation
    Li, Xiangbo
    Zhou, Zhihui
    Chen, Liang
    Kong, Chunlong
    Du, Hongbin
    BULLETIN OF THE KOREAN CHEMICAL SOCIETY, 2019, 40 (06) : 511 - 516
  • [42] Towards a better hydraulic cleaning strategy for ultrafiltration membrane fouling by humic acid: Effect of backwash water composition
    Chang, Haiqing
    Liang, Heng
    Qu, Fangshu
    Ma, Jun
    Ren, Nanqi
    Li, Guibai
    JOURNAL OF ENVIRONMENTAL SCIENCES, 2016, 43 : 177 - 186
  • [43] Towards a better hydraulic cleaning strategy for ultrafiltration membrane fouling by humic acid: Effect of backwash water composition
    Haiqing Chang
    Heng Liang
    Fangshu Qu
    Jun Ma
    Nanqi Ren
    Guibai Li
    Journal of Environmental Sciences , 2016, (05) : 177 - 186
  • [44] Membrane fouling analysis of air-gap membrane distillation (AGMD) for recovery of water and removal of antibiotics from a model wastewater containing antibiotics and humic acid
    Kywe, Pyae Phyo
    Ratanatamskul, Chavalit
    Chemosphere, 363
  • [45] Batch dialysis of phosphoric acid. Quantification of acid and water transport through Fumasep-FAD membrane
    Palaty, Zdenek
    Bendova, Helena
    SEPARATION AND PURIFICATION TECHNOLOGY, 2019, 212 : 605 - 610
  • [46] Photodegradation and permeability of conventional photocatalytic reactor and two different submerged membrane photocatalytic reactors for the removal of humic acid in water
    Jung, Jong-Tae
    Lee, Won-Hee
    Kim, Jong-Oh
    DESALINATION AND WATER TREATMENT, 2016, 57 (55) : 26765 - 26772
  • [47] Probing the intermolecular interaction mechanisms between humic acid and different substrates with implications for its adsorption and removal in water treatment
    Xie, Lei
    Lu, Qiuyi
    Mao, Xiaohui
    Wang, Jingyi
    Han, Linbo
    Hu, Junqing
    Lu, Qingye
    Wang, Yixiang
    Zeng, Hongbo
    WATER RESEARCH, 2020, 176 (176)
  • [48] Novel Role of Hematite in Anaerobic Digestion: Manipulating Membrane-Bound Electron Transport Chain by the Construction of Biological Capacitors with Humic Acid
    Zhang, Pengshuai
    Zhang, Tengyu
    Chen, Jiaqi
    Zhang, Jingxin
    He, Yiliang
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2023, 57 (29) : 10828 - 10837
  • [49] Nanostructured β-Cyclodextrin-Hyperbranched Polyethyleneimine (β-CD-HPEI) Embedded in Polysulfone Membrane for the Removal of Humic Acid from Water
    Malinga, S. P.
    Arotiba, O. A.
    Krause, R. W. M.
    Mapolie, S. F.
    Diallo, M. S.
    Mamba, B. B.
    SEPARATION SCIENCE AND TECHNOLOGY, 2013, 48 (18) : 2724 - 2734
  • [50] Enhancing the removal of organic micropollutants by nanofiltration membrane with Fe (III)-tannic acid interlayer: Mechanisms and environmental implications
    Liu, Wenyu
    Long, Li
    Yang, Zhe
    Wang, Li
    Gan, Qimao
    Zhou, Shenghua
    Sarkar, Pulak
    Guo, Hao
    Tang, Chuyang Y.
    WATER RESEARCH, 2023, 245