4.5 Article

Simulation of the adsorption capacity of polar organic compounds and dyes from water onto activated carbons: Model development and validation

Journal

SUSTAINABLE ENVIRONMENT RESEARCH
Volume 28, Issue 2, Pages 57-64

Publisher

BMC
DOI: 10.1016/j.serj.2017.10.003

Keywords

Adsorption isotherm; Polanyi-Dubinin model; MCIs; Micropore volume; Organic compounds

Funding

  1. Headquarters of University Advancement at the National Cheng Kung University - Ministry of Education
  2. Industrial Technology Research Institute Project [FF55RN8000]
  3. Ministry of Science and Technology, Taiwan [MOST 104-2221-E-006 -021 -MY3]

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A model approach is developed to simulate the adsorption isotherms of low-molecular-weight polar organic compounds (LMWPOCs), halogenated LMWPOCs, and dye molecules onto activated carbons (AC). The models were based on the DubinineAstakhov equation, with the limiting pore volume of adsorbent estimated from the pore size distribution data, and the adsorption affinity of the adsorbate described by the molecular connectivity index. The models were used to simulate the adsorption data of 87 LMWPOCs onto six ACs, 25 halogenated LMWPOCs onto two ACs and 22 dyes onto three ACs. The developed models follow the experimental data fairly well, with errors of 49, 33 and 43% for the tested LMWPOCs, halogenated LMWPOCs, and dyes, respectively. This study shows that the developed model approach may provide a simple means for the estimation of adsorption capacity for LMWPOCs and dyes onto ACs in water. (C) 2017 Chinese Institute of Environmental Engineering, Taiwan. Production and hosting by Elsevier B.V.

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