4.7 Article

Fulvic acid anchored layered double hydroxides: A multifunctional composite adsorbent for the removal of anionic dye and toxic metal

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 343, 期 -, 页码 19-28

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2017.09.006

关键词

Multifunctional composite adsorbent; Layered double hydroxides; Fulvic acid; Anionic dye; Toxic metal

资金

  1. Ministry of Education, Culture, Sports, Science, and Technology of Japan [15H04222]
  2. China Scholarship Council
  3. National Natural Science Foundation of China [21407089]
  4. Key Laboratory for Solid Waste Management and Environment Safety (Tsinghua University), Ministry of Education of China [201605]
  5. China Postdoctoral Science Foundation [2014M560983]
  6. Beijing Technology and Business University [QNJJ2016-21]
  7. Grants-in-Aid for Scientific Research [15H04222] Funding Source: KAKEN

向作者/读者索取更多资源

A novel multifunctional composite adsorbent which possesses the ability for anion exchange and toxic metal complexation has been synthesized by the hybridization of layered double hydroxides (LDH) and fulvic acid (FA) in this study. The results show that FA with lots of functional groups can be effectively and stably anchored on the surface of LDH through coagulation process without occupying the interlayer of LDH. Therefore, the anion exchange ability remains and the adsorption capacity of Orange II can reach 1.9 mmol/g, which is almost as much as stoichiometric anion exchange capacity of pure LDH. Moreover, the composite adsorbent's adsorption capacity of Cu2+, Pb2+, Ni2+ and Cd2+ can also get to 2.25 mmol/g, 0.98 mmol/g, 0.99 mmol/g and 0.16 mmol/g respectively with an adsorption preference order of Cu2+ > Pb2+ > Ni2+ > Cd2+. In addition, Orange II and toxic metals are able to be simultaneously removed by this composite adsorbent, and the adsorption of toxic metals can be enhanced by the synergetic adsorption of Orange II. Anion exchange with Cl- in LDH matrix accounts for the adsorption of Orange II, while the adsorption of toxic metal is mainly attributed to the complexation of carboxyl functional group derived from FA. (C) 2017 Elsevier B.V. All rights reserved.

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