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New generation adsorbents for the removal of fluoride from water and wastewater: A review

Journal

JOURNAL OF MOLECULAR LIQUIDS
Volume 346, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.molliq.2021.118257

Keywords

Adsorption; Isotherm and kinetic; Fluoride; Water; New generation adsorbent; Nanomaterials

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Water is essential for life, but it is endangered by pollution and contamination from human activity and industries. Fluoride contamination is a serious global issue, and this article reviews new generation adsorbents for purifying fluoride from water, with zinc oxide nanoparticles identified as the most effective adsorbent.
Water is essential for life and is threatened by the pollution and contamination generated by human activity and industries. Fluoride contamination of water is a serious problem in the world. The review article highlights on new generation adsorbents including carbon-based adsorbents, nano-adsorbents, bio-sorbents, inorganic materials, modified and composite adsorbents for purification of fluoride from water. It was indicated from the review that a Zinc oxide nanoparticles is the best adsorbents for the removal of fluoride from aqueous media, with a capacity adsorption (q(max)) of 100 mg/g. The fluoride uptake best-fit both the Langmuir and Freundlich isotherm models as well as a pseudo second order kinetic model. A wide range of values for the thermodynamic parameters (both negative and positive) were reported for fluoride across different studies. Kinetic and thermodynamic, molecular modelling and simulations, knowledge gaps and future prospects are also presented. (C) 2021 Elsevier B.V. All rights reserved.

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