重金属污染对人类赖以生存的环境带来诸多负面的影响,因此如何解决重金属污染是当前亟须解决的重要问题之一。自石墨烯问世以来,由于其优异物理化学性质引起了科学界广泛的关注,较大的比表面积和较高机械强度等特性都使石墨烯及其复合材料成为理想的吸附材料,特别是用于重金属离子的吸附。但石墨烯复合材料对水体中重金属离子吸附性能的受到很多因素有影响如反应时间、温度、体系pH 值等,其中pH 值是最重要的影响因素之一。以影响吸附的因素为背景,以pH 值为切入点,较为详细地综述了 pH 值对石墨烯及其复合材料对重金属吸附的影响,并系统地分析和讨论了pH 值对吸附影响的原因和机理。最后,对石墨烯及其复合材料应用于吸附水体重金属离子的前景进行展望。
Thepollution of heavy ions are hazardous to environment.Therefore,it is essential to tackle heavy-metal contamination.Graphene has excellent physical and chemical characteristics,which arouse wide attention in scientific community,so that graphene-containing composite materials could be served as an ideal absorbent, especially for heavy metal ions,due to its large specific surface area and mechanical strength.For the effect of graphene-composite materials on heavy metal ions,itis subj ect to many factors,such as contact time,tempera-ture,pH value and so on,but the most relative important one is pH value.This paper not only gives an over-view of the effect of pH value on adsorption of graphene-containing composite materials,but also discusses rea-son and effect mechanism.And,in the last of this paper,the challenges and application prospectsof graphene-containing composite materials are mentioned and commented.
参考文献
[1] | Xiang Huang;Mika Sillanpaeae;Bu Duo;Egil T;Gjessing.Water Quality In The Tibetan Plateau: Metal Contents Of Four Selected Rivers[J].Environmental Pollution,20082(2):270-277. |
[2] | 王建龙;陈灿.生物吸附法去除重金属离子的研究进展[J].环境科学学报,2010(4):673-701. |
[3] | Hou Wang;Xingzhong Yuan;Yan Wu;Huajun Huang;Guangming Zeng;Yan Liu;Xueli Wang;Ningbo Lin;Yu Qi.Adsorption characteristics and behaviors of graphene oxide for Zn(Ⅱ) removal from aqueous solution[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2013Aug.15(Aug.15):432-440. |
[4] | Xue Mi;Guanbo Huang;Weisong Xie.Preparation of graphene oxide aerogel and its adsorption for Cu~(2+) ions[J].Carbon: An International Journal Sponsored by the American Carbon Society,201213(13):4856-4864. |
[5] | Sitko, R.;Turek, E.;Zawisza, B.;Malicka, E.;Talik, E.;Heimann, J.;Gagor, A.;Feist, B.;Wrzalik, R..Adsorption of divalent metal ions from aqueous solutions using graphene oxide[J].Dalton transactions: An international journal of inorganic chemistry,201316(16):5682-5689. |
[6] | 谭光群;李晖;彭同江.蛭石对重金属离子吸附作用的研究[J].四川大学学报(工程科学版),2001(3):58-61. |
[7] | A. Dabrowski;Z. Hubicki;P. Podkoscielny;E. Robens.Selective removal of the heavy metal ions from waters and industrial wastewaters by ion-exchange method[J].Chemosphere,20042(2):91-106. |
[8] | Xiaojiao Deng;Lili Lue;Hongwei Li;Fang Luo.The adsorption properties of Pb(Ⅱ) and Cd(Ⅱ) on functionalized graphene prepared by electrolysis method[J].Journal of hazardous materials,20101/3(1/3):923-930. |
[9] | Na Liu;Fang Luo;Haoxi Wu;Yinghui Liu;Chao Zhang;Ji Chen.One-Step Ionic-Liquid-Assisted Electrochemical Synthesis of Ionic-Liquid-Functionalized Graphene Sheets Directly from Graphite[J].Advanced functional materials,200810(10):1518-1525. |
[10] | Clemonne J. Madadrang;Hyun Yun Kim;Guihua Gao.Adsorption Behavior of EDTA-Graphene Oxide for Pb (II) Removal[J].ACS applied materials & interfaces,20123(3):1186-1193. |
[11] | 彭先佳;贾建军;栾兆坤;王军.碳纳米管在水处理材料领域的应用[J].化学进展,2009(9):1987-1992. |
[12] | 姜丽丽;鲁雄.石墨烯制备方法及研究进展[J].功能材料,2012(23):3185-3189,3193. |
[13] | 王波;张帆;黄福.还原态氧化石墨烯的制备及其对重金属离子的吸附性能[J].应用化学,2014(4):502-504. |
[14] | 黄福;张帆;王波;孙华菊.还原态氧化石墨烯对Zn(Ⅱ)的吸附动力学与热力学[J].应用化学,2014(12):1458-1464. |
[15] | Hui-Ling Ma;Youwei Zhang;Qi-Hui Hu.Chemical reduction and removal of Cr(VI) from acidic aqueous solution by ethylenediamine-reduced graphene oxide[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,201213(13):5914-5916. |
[16] | Chandra, V.;Kim, K.S..Highly selective adsorption of Hg~(2+) by a polypyrrole-reduced graphene oxide composite[J].Chemical communications,201113(13):3942-3944. |
[17] | 周丽;邓慧萍;万俊力;张瑞金.石墨烯基铁氧化物磁性材料的制备及在水处理中的吸附性能[J].化学进展,2013(1):145-155. |
[18] | Jiu-Hua Deng;Xiu-Rong Zhang;Guang-Ming Zeng.Simultaneous removal of Cd(II) and ionic dyes from aqueous solution using magnetic graphene oxide nanocomposite as an adsorbent[J].Chemical engineering journal,2013:189-200. |
[19] | Xiaoying Yang;Xiaoyan Zhang;Yanfeng Ma.Superparamagnetic graphene oxide-Fe3O4 nanoparticles hybrid for controlled targeted drug carriers[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,200918(18):2710-2714. |
[20] | M.Z. Kassaee;E. Motamedi;M. Majdi.Magnetic Fe3O4-graphene oxide/polystyrene: Fabrication and characterization of a promising nanocomposite[J].Chemical engineering journal,20111(1):540-549. |
[21] | Mancheng Liu;Changlun Chen;Jun Hu.Synthesis of Magnetite/Graphene Oxide Composite and Application for Cobalt(II) Removal[J].The journal of physical chemistry, C. Nanomaterials and interfaces,201151(51):25234-25240. |
[22] | Guixia Zhao;Jiaxing Li;Xuemei Ren.Few-Layered Graphene Oxide Nanosheets As Superior Sorbents for Heavy Metal Ion Pollution Management[J].Environmental Science & Technology: ES&T,201124(24):10451-10462. |
[23] | Chandra, V.;Park, J.;Chun, Y.;Lee, J.W.;Hwang, I.-C.;Kim, K.S..Water-dispersible magnetite-reduced graphene oxide composites for arsenic removal[J].ACS nano,20107(7):3979-3986. |
[24] | Kai Zhang;Vineet Dwivedi;Chunyan Chi;Jishan Wu.Graphene oxide/ferric hydroxide composites for efficient arsenate removal from drinking water[J].Journal of hazardous materials,20101/3(1/3):162-168. |
[25] | Tomas Undabeytia;Shlomo Nir;Tamara Polubesova;Giora Rytwo;Esmeralda Morillo;Celia Maqueda.Adsorption-desorption of chlordimeform on montmorillonite: effect of clay aggregation and competitive adsorption with cadmium[J].Environmental Science & Technology: ES&T,19996(6):864-869. |
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