A Review on Graphene-based adsorbents for the remediation of toxic heavy metals from aqueous sources

被引:0
作者
E. Parvathi
N. Dilraj
C. V. Akshaya
N. K. Deepak
机构
[1] Kannur University,Department of Physics, School of Pure and Applied Physics
来源
International Journal of Environmental Science and Technology | 2023年 / 20卷
关键词
Heavy metals; Waste water; Adsorption; Graphene; Graphene oxide; Reduced graphene oxide;
D O I
暂无
中图分类号
学科分类号
摘要
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页码:11645 / 11672
页数:27
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  • [91] Sheng H(2016)Porous graphene oxide based inverse spinel nickel ferrite nanocomposites for the enhanced adsorption removal of arsenic Ind Eng Chem Res 2 2643-5896
  • [92] Jie M(2020)Facile synthesis of flowered mesoporous graphene oxide-lanthanum fluoride nanocomposite for adsorptive removal of arsenic J Hazard Mater 4 4806-5896
  • [93] Fu W(2014)Potential of the magnetic hollow sphere nanocomposite (graphene oxide-gadolinium oxide) for arsenic removal from real field water and antimicrobial applications J Hazard Mater 13 1-12389
  • [94] Huang Z(2012)Photoreduction of Cr (VI) from acidic aqueous solution using TiO2-impregnated glutaraldehyde cross-linked alginate beads and the effects of Fe(III) ions RSC Adv 282 39-1661
  • [95] Gan L(2010)Enhancing the Hg (II) removal efficiency from real wastewater by novel thymine-grafted reduced graphene oxide complexes ACS Nano 5 2259-28
  • [96] Li H(2018)Superior adsorption capacity of functionalised straw adsorbent for dyes and heavy-metal ions Eurasian J Anal Chem 29 1-1187
  • [97] Chen L(2011)Amino siloxane oligomer-linked graphene oxide as an efficient adsorbent for removal of Pb(II) from wastewater Desalination 1 3789-177
  • [98] Xu L(2017)Graphene oxide and its reduction: modeling and experimental progress J Environ Chem Eng 5 16532-134
  • [99] Liu J(2019)Improved synthesis of graphene oxide Int J Environ Health Res 306 666-279
  • [100] Geng A(2013)Removal of cadmium ion from wastewater using carboxylated nanoporous graphene (G-COOH) J Mater Chem A 6 6075-409