Rapid and Efficient Purification of Low-Concentration Fluoride-Containing Water Using Cationic Chitosan Fibers
Zhe Liu, Dongfang Wang, Yan Zhu, Songlin Wang

TL;DR
Scientists created a new bio-based material that quickly and efficiently removes low levels of fluoride from water, outperforming existing methods.
Contribution
The development of quaternary ammonium-modified cationic chitosan fibers with significantly enhanced fluoride adsorption capacity and rapid kinetics.
Findings
CCFs have 15.8 times higher fluoride adsorption capacity than unmodified chitosan fibers.
Fluoride adsorption reaches equilibrium within 10 minutes and fits the pseudo-second-order kinetic model.
CCFs show excellent regeneration with no loss in capacity after five cycles and perform well in natural water with competing ions.
Abstract
In this study, a bio-based adsorbent, quaternary ammonium-modified cationic chitosan fibers (CCFs), were developed and systematically evaluated for fluoride removal from low-concentration aqueous medium, with particular emphasis on adsorption performance, regeneration behavior, practical applicability, and adsorption mechanisms. The results demonstrate that the fluoride adsorption capacity of CCFs is approximately 15.8 times higher than that of unmodified chitosan fibers (CFs). Furthermore, CCFs exhibit superior fluoride adsorption capacity and remarkably rapid kinetics relative to previously reported chitosan-based adsorbents in the literature. The adsorption process fits well with the pseudo-second-order kinetic model and reaches equilibrium within 10 min. Adsorption isotherm data are well described by both Langmuir and Freundlich models, with a maximum adsorption capacity of 28.5…
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Taxonomy
TopicsFluoride Effects and Removal · Phosphorus and nutrient management · Adsorption and biosorption for pollutant removal
