4.7 Article

Adsorption of methylene blue from aqueous solution onto porous cellulose-derived carbon/montmorillonite nanocomposites

期刊

APPLIED CLAY SCIENCE
卷 161, 期 -, 页码 256-264

出版社

ELSEVIER
DOI: 10.1016/j.clay.2018.02.017

关键词

Carbon; Montmorillonite; Nanocomposite; Adsorption; Methylene blue

资金

  1. National Natural Scientific Foundation of China [21506188, 41672033, 21373185, 21404090]
  2. Natural Scientific Foundation of Zhejiang Province ZJNSF [LY168030010]
  3. Key Laboratory of Clay Minerals of Ministry of Land and Resources of The People's Republic of China [2014-K02]
  4. Engineering Research Center of Non-metallic Minerals of Zhejiang [ZD2015k07]
  5. State Key Laboratory Breeding Base of Green Chemistry-Synthesis Technology, Zhejiang University of Technology [GCTKF2014006]
  6. Key Laboratory of High Efficient Processing of Bamboo of Zhejiang Province
  7. State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, China [CRE-2016-C-303]
  8. Project of Zhejiang151 talents project

向作者/读者索取更多资源

Biomass-derived amorphous carbon has received considerable attention in recent decades. In this paper, carbon/montmorillonite (CMt) nanocomposites were synthesized by a hydrothermal carbonization of cellulose and montmorillonite (Mt), and the adsorption properties were evaluated by the removal of methylene blue (MB) from aqueous solutions. The CMt was characterized by X-ray diffraction, Fourier transform infrared spectroscopy, Nitrogen adsorption-desorption isotherm, Scanning electron microscopy, and Thermal analysis. The pseudo-first-order and pseudo-second-order kinetic models were used to describe the kinetic data and the Langmuir, Freundlich, Redlich-Peterson and Sips models were applied to describe the adsorption isotherms. The results showed that the equilibrium adsorption data was found to fit better to the Redlich-Peterson adsorption model, and the adsorption capacity for the removal of MB on CMt was 138.1 mgs(-1). The kinetic process of adsorption could be described by the pseudo-second-order model. The porous structure of CMt was responsible for the adsorption of MB. But the adsorption ability could be improved by increasing pH. Lastly, the adsorption mechanism was obtained.

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