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Transformative and sustainable insights of agricultural waste-based adsorbents for water defluoridation: Biosorption dynamics, economic viability, and spent adsorbent management. | LitMetric

AI Article Synopsis

  • The text discusses the ecological disruption caused by civilization, highlighting the issue of excess fluoride in groundwater and its link to global health problems like "Fluorosis."
  • It reviews various defluoridation methods, emphasizing biosorption as an economical and eco-friendly option but notes its limited commercialization, indicating a need for more research.
  • The article provides insights into the chemical properties and preparation of agro-based adsorbents, factors affecting fluoride removal, and recommends strategies to enhance scalability and effectiveness in real-world applications.

Article Abstract

With the progression of civilization, the harmony within nature has been disrupted, giving rise to various ecocidal activities that are evident in every spheres of the earth. These activities have had a profound and far-reaching impact on global health. One significant example of this is the presence of fluoride in groundwater exceeding acceptable limits, resulting in the widespread occurrence of "Fluorosis" worldwide. It is imperative to mitigate the concentration of fluoride in drinking water to meet safety standards. While various defluoridation techniques exist, they often have drawbacks. Biosorption, being a simple, affordable and eco-friendly method, has gained preference for defluoridation. However, its limited commercialization underscores the pressing need for further research in this domain. This comprehensive review article offers a thorough examination of the defluoridation potential of agro-based adsorbents, encompassing their specific chemical compositions and preparation methods. The review presents an in-depth discussion of the factors influencing fluoride biosorption and conducts a detailed exploration of adsorption isotherm and adsorption kinetic models to gain a comprehensive understanding of the nature of the adsorption process. Furthermore, it evaluates the commercial viability through an assessment of regeneration potential and a cost analysis of these agro-adsorbents, with the aim of facilitating the scalability of the defluoridation process. The elucidation of the adsorption mechanism and recommendations for overcoming challenges in large-scale implementation offer a comprehensive outlook on this eco-friendly and sustainable approach to fluoride removal. In summary, this review article equips readers with a lucid understanding of agro-adsorbents, elucidates their ideal conditions for improved performance, offers a more profound insight into the fluoride biosorption mechanism, and introduces the concept of effective spent adsorbent management.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11046213PMC
http://dx.doi.org/10.1016/j.heliyon.2024.e29747DOI Listing

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