Designing the Next Generation of Fe0-Based Filters for Decentralized Safe Drinking Water Treatment: A Conceptual Framework

Author:

Yang Huichen,Hu Rui,Ndé-Tchoupé Arnaud IgorORCID,Gwenzi Willis,Ruppert Hans,Noubactep ChicgouaORCID

Abstract

The ambitious United Nations Sustainable Development Goal for 2030 to “leave no one behind” concerning safe drinking water calls for the development of universally applicable and affordable decentralized treatment systems to provide safe drinking water. Published results suggest that well-designed biological sand filters (BSFs) amended with metallic iron (Fe0-BSFs) have the potential to achieve this goal. Fe0-BSFs quantitatively remove pathogens and a myriad of chemical pollutants. The available data were achieved under various operating conditions. A comparison of independent research results is almost impossible, especially because the used Fe0 materials are not characterized for their intrinsic reactivity. This communication summarizes the state-of-the-art knowledge on designing Fe0-BSFs for households and small communities. The results show that significant research progress has been made on Fe0-BSFs. However, well-designed laboratory and field experiments are required to improve the available knowledge in order to develop the next generation of adaptable and scalable designs of Fe0-BSFs in only two years. Tools to alleviate the permeability loss, the preferential flow, and the use of exhausted filters are presented.

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

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1. Materials for sustainable metallic iron-based water filters: a review;Environmental Chemistry Letters;2024-04-18

2. Design and Construction of a Compact Water Treatment Plant using Bio-Sand Filter as the Filtration System;2024 International Conference on Science, Engineering and Business for Driving Sustainable Development Goals (SEB4SDG);2024-04-02

3. Metallic iron for decentralized safe drinking water supply: self-reliance is possible;Advances in Drinking Water Purification;2024

4. Recycling and Disposal of Spent Metal(loid)‐Laden Adsorbents;Remediation of Heavy Metals;2023-12-29

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