Volume 11 Issue 2
Mar.  2021
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Article Contents
WU Linlin, CHEN Xiaofeng, XU Qiujin, DU Peng. Application andprospect of polymer/clay nanocomposites in sewage treatment[J]. Journal of Environmental Engineering Technology, 2021, 11(2): 325-331. doi: 10.12153/j.issn.1674-991X.20200140
Citation: WU Linlin, CHEN Xiaofeng, XU Qiujin, DU Peng. Application andprospect of polymer/clay nanocomposites in sewage treatment[J]. Journal of Environmental Engineering Technology, 2021, 11(2): 325-331. doi: 10.12153/j.issn.1674-991X.20200140

Application andprospect of polymer/clay nanocomposites in sewage treatment

doi: 10.12153/j.issn.1674-991X.20200140
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  • Corresponding author: CHEN Xiaofeng E-mail: wxcdccxf@163.com; DU Peng E-mail: pengkong829@126.com
  • Received Date: 2020-06-05
  • Publish Date: 2021-03-20
  • The adsorption method is a simple, economical, efficient and sustainable method for the treatment of pollutants in water, with wide applications. It is urgent to develop and prepare new efficient, green and environmentally friendly adsorption materials. The new functional polymer/clay nanocomposites (PCNs) prepared by composite polymers and clay minerals are characterized by large specific surface area, high adsorption efficiency and stable chemical properties, which reveals prominent advantages and great development potential in sewage treatment. The research progress of PCNs in the wastewater treatment was summarized from the aspects of adsorbent characteristics, main categories, pollutant removal types and application in wastewater treatment technology. The influencing factors of pollutant removal efficiency of PCNs were analyzed, and the research prospect of PCNs in water treatment was prospected.

     

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  • [1]
    MICHAEL-K I, MICHAEL C, DUAN X, et al. Dissolved effluent organic matter:characteristics and potential implications in wastewater treatment and reuse applications[J]. Water Research, 2015,77:213-248.
    [2]
    李彤彤, 李英军, 徐剑锋, 等. 多级A/O工艺强化城市生活污水再生过程的污染物去除效果研究[J]. 环境工程技术学报, 2018,8(4):420-428.

    LI T T, LI Y J, XU J F, et al. Analyses on pollutants removal in municipal wastewater reclamation plant with multistage A/O process[J]. Journal of Environmental Engineering Technology, 2018,8(4):420-428.
    [3]
    HASSOUNA M, ELBABLY M A, MOHAMMED A N, et al. Assessment of carbon nanotubes and silver nanoparticles loaded clays as adsorbents for removal of bacterial contaminants from water sources[J]. Journal of Water and Health, 2017,15(1):133-144.
    pmid: 28151446
    [4]
    ZHOU Y, JIE K, ZHAO R, et al. Cyclic ether contaminant removal from water using nonporous adaptive pillararene crystals via host-guest complexation at the solid-solution interface[J]. Research, 2019,54:63-65.
    [5]
    SABER-SAMANDARI S, SABER-SAMA NDARI S, NEZAFATI N, et al. Efficient removal of lead (Ⅱ) ions and methylene blue from aqueous solution using chitosan/Fe-hydroxyapatite nanocomposite beads[J]. Journal of Environmental Management, 2014,146:481-490.
    [6]
    XIAO K, XU F, JIANG L, et al. The oxidative degradation of polystyrene resins on the removal of Cr(Ⅵ) from wastewater by anion exchange[J]. Chemosphere, 2016,156:326-333.
    doi: 10.1016/j.chemosphere.2016.04.116 pmid: 27183334
    [7]
    NETHAJI S, SIVASAMY A, MANDAL A B. Preparation and characterization of corn cob activated carbon coated with nano-sized magnetite particles for the removal of Cr(Ⅵ)[J]. Bioresource Technology, 2013,134:94-100.
    [8]
    CHEN N, FANG G, ZHOU D, et al. Effects of clay minerals on diethyl phthalate degradation in Fenton reactions[J]. Chemosphere, 2016,165:52-58.
    [9]
    范家起, 马永梅, 漆宗能. 聚合物/粘土纳米复合材料的近期进展[J]. 高分子通报, 2013(9):18-21.

    FAN J Q, MA Y M, QI Z N. Some recent progress in polymer-clay nanocomposites[J]. Polymer Bulletin, 2013(9):18-21.
    [10]
    高党鸽, 张亚红, 马建中. 聚合物/凹凸棒土纳米复合材料的研究进展[J]. 材料导报, 2017,31(21):123-129.

    GAO D G, ZHANG Y H, MA J Z. Research progress of polymer/attapulgite nanocomposites[J]. Materials Reports, 2017,31(21):123-129.
    [11]
    FETOUH H A, ISMAIL A M, HAMID H A, et al. Synjournal of promising nanocomposites from an antitumer and biologically active heterocyclic compound uploaded by clay and chitosan polymers[J]. International Journal of Biological Macromolecules, 2019,137:1211-1220.
    pmid: 31254576
    [12]
    TIAN H, WANG K, LIU D, et al. Enhanced mechanical and thermal properties of poly (vinyl alcohol)/corn starch blends by nanoclay intercalation[J]. International Journal of Biological Macromolecules, 2017,101:314-320.
    [13]
    袁明丽, 苏琼, 梁双, 等. 聚合物基凹凸棒石纳米复合材料的研究进展[J]. 当代化工研究, 2019(2):1-2.

    YUAN M L, SU Q, LIANG S, et al. Recent advances of polymer-based attapulgite nanocomposites[J]. Modern Chemical Research, 2019(2):1-2.
    [14]
    马瑶佳, 张茜, 贾博, 等. 功能化磁性纳米粒子在污水处理中的应用进展[J]. 中国给水排水, 2018,34(22):31-36.

    MA Y J, ZHANG X, JIA B, et al. Application progress of functionalized magnetic nanoparticles in removing and degrading pollutants in wastewater[J]. China Water & Wastewater, 2018,34(22):31-36.
    [15]
    ANIRUDHAN T S, RAMACHANDRAN M. Synjournal and characterization of amidoximated polyacrylonitrile/organobentonite composite for Cu(Ⅱ), Zn(Ⅱ), and Cd(Ⅱ) adsorption from aqueous solutions and industry wastewaters[J]. Industrial and Engineering Chemistry Research, 2008,47(16):6175-6184.
    [16]
    SHAWKY H A. Improvement of water quality using alginate/montmorillonite composite beads[J]. Journal of Applied Polymer Science, 2011,119(4):2371-2378.
    [17]
    KANCHANA V, GOMATHI T, GEETHA V, et al. Adsorption analysis of Pb(Ⅱ) by nanocomposites of chitosan with methyl cellulose and clay[J]. Der Pharmacia Lettre, 2012,4(4):1071-1079.
    [18]
    ALSEWAILEM F D, ALJLIL S A. Recycled polymer/clay composites for heavy-metals adsorption[J]. Materials and Technology, 2013,47(4):525-529.
    [19]
    高宇超, 马振豪, 王趁义, 等. 介孔材料应用于污水处理的研究进展[J]. 材料科学与工程学报, 2018,36(1):169-173.

    GAO Y C, MA Z H, WANG C Y, et al. Research progress of mesoporous materials for swage treatment[J]. Journal of Materials Science & Engineering, 2018,36(1):169-173.
    [20]
    NAGARPITA M V, ROY P, SHRUTHI S B, et al. Synjournal and swelling characteristics of chitosan and CMC grafted sodium acrylate-co-acrylamide using modified nanoclay and examining its efficacy for removal of dyes[J]. International Journal of Biological Macromolecules, 2017,102:1226-1240.
    [21]
    WANG L, ZHANG J, WANG A, et al. Removal of methylene blue from aqueous solution using chitosang-poly(acrylic acid)/montmorillonite superadsorbent nanocomposite[J]. Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2008,22:47-53.
    [22]
    NGAH W S W, ARIFF N F M, HANAFIAH M A K M. Preparation, characterization, and environmental application of crosslinked chitosan-coated bentonite for tartrazine adsorption from aqueous solutions[J]. Water, Air, and Soil Pollution, 2010,206:225-236.
    [23]
    BRUNA J E, PENALOZA A, GUARDA A, et al. Development of MtCu2+/LDPE nanocomposites with antimicrobial activity for potential use in food packaging[J]. Applied Clay Science, 2012,58:79-87.
    doi: 10.1016/j.clay.2012.01.016
    [24]
    HAN Y S, LEE S H, CHOI K H. Preparation and characterization of chitosan-clay nanocomposites with antimicrobial activity[J]. Journal of Physics and Chemistry of Solids, 2010,71(4):464-467.
    [25]
    UNUABONAH E I, UGWUJA C G, OMOROGIE M O, et al. Clays for efficient disinfection of bacteria in water[J]. Applied Clay Science, 2018,151:211-223.
    [26]
    YIN J, DENG B L. Polymer-matrix nanocomposite membranes for water treatment[J]. Journal of Membrane Science, 2015,479(1):256-275.
    [27]
    URBANO B F, RIVAS B L, MARTINEZ F, et al. Water-insoluble polymer-clay nanocomposite ion exchange resin based on N-methyl-D-glucamine ligand groups for arsenic removal[J]. Reactive and Functional Polymers, 2012,72(9):642-649.
    [28]
    AZHA S F, SHAMSUDIN M S, SHAHADAT M, et al. Low cost zwitterionic adsorbent coating for treatment of anionic and cationic dyes[J]. Journal of Industrial and Engineering Chemistry, 2018,67(25):187-198.
    [29]
    蔡亭伟, 丁颖, 徐丽慧. 三维石墨烯材料在污水处理中的研究进展[J]. 环境化学, 2018,37(6):1282-1292.

    CAI T W, DING Y, XU L H. Development of 3D graphene material in wastewater treatment[J]. Environmental Chemistry, 2018,37(6):1282-1292.
    [30]
    郭乃妮, 杨连利, 王小荣, 等. 荷电有机纳滤膜的制备及在污水处理中的应用研究进展[J]. 皮革与化工, 2019,36(3):32-37.

    GUO N N, YANG L L, WANG X R, et al. Progress in preparation of charged organic nanofiltration membrane and application in wastewater treatment[J]. Leather and Chemicals, 2019,36(3):32-37.
    [31]
    AHMAD T, GURIA C, MANDAL A. Optimal synjournal and operation of low-cost polyvinyl chloride/bentonite ultrafiltration membranes for the purification of oilfield produced water[J]. Journal of Membrane Science, 2018,564:859-877.
    [32]
    LAU W J, GRAY S, MATSUURA T, et al. A review on polyamide thin film nanocomposite (TFN) membranes:history,applications,challenges and approaches[J]. Water Research, 2015,80:306-324.
    [33]
    GAMIZ B, HERMOSIN M C, CORNEJO J, et al. Hexadimethrine-montmorillonite nanocomposite: characterization and application as a pesticide adsorbent[J]. Applied Surface Science, 2015,332(30):606-613.
    [34]
    RYTWO G, RETTIG A, GONEN Y. Organo-sepiolite particles for efficient pretreatment of organic wastewater:application to winery effluents[J]. Applied Clay Science, 2011,51(3):390-394.
    [35]
    MANIAS E, TOUNY A, WU L, et al. Polypropylene/montmorillonite nanocomposites:review of the synthetic routes and materials properties[J]. Chemistry of Materials, 2001,13(10):3516-3523.
    [36]
    UNDABEYTIA T, NIR S, VERDEJO T S, et al. A clay-vesicle system for water purification from organic pollutants[J]. Water Research, 2008,42(4):1211-1219.
    [37]
    RYTWO G, KOHAVI Y, BOTNICK I, et al. Use of CV- and TPP-montmorillonite for the removal of priority pollutants from water[J]. Applied Clay Science, 2007,36(1):182-190.
    [38]
    彭先佳, 贾建军, 栾兆坤, 等. 碳纳米管在水处理材料领域的应用[J]. 化学进展, 2009,21(9):1987-1992.

    PENG X J, JIA J J, LUAN Z K, et al. Water treatment materials based on carbon nanotubes[J]. Progress in Chemistry, 2009,21(9):1987-1992.
    [39]
    UNUABONAH E I, TAUBERT A. Clay-polymer nanocomposites (CPNs):adsorbents of the future for water treatment[J]. Applied Clay Science, 2014,99:83-92.
    [40]
    RAJESH N, KUMAR A S K, KALIDHASAN S, et al. Application of cellulose-clay composite biosorbent toward the effective adsorption and removal of chromium from industrial wastewater[J]. Industrial & Engineering Chemistry Research, 2012,51:58-69.
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