Removal of co-existing Fe(II), As(V) and fluoride ions from groundwater by electrocoagulation
Author:
Publisher
Elsevier BV
Subject
Water Science and Technology,Geography, Planning and Development,Environmental Chemistry,Environmental Engineering
Reference41 articles.
1. Arsenic in drinking water: is 10 μg/L a safe limit?;Ahmad;Current Pollution Reports,2019
2. Mechanisms of arsenate removal and membrane fouling in ferric based coprecipitation–low pressure membrane filtration systems;Ahmad;Separ. Purif. Technol.,2020
3. Characteristics of Fe and Mn bearing precipitates generated by Fe(II) and Mn(II) co-oxidation with O2, MnO4 and HOCl in the presence of groundwater ions;Ahmad;Water Res.,2019
4. Arsenic reduction to <1 μg/L in Dutch drinking water;Ahmad;Environ. Int.,2020
5. Remediation Case Study: Drinking Water Treatment by AOCF to Target <1 μg L−1 Effluent Arsenic Concentration. Best Practice Guide on the Control of Arsenic in Drinking Water. Metals and Related Substances in Drinking Water Series;Ahmad,2017
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1. Heavy metals in water: challenges and remediation;Role of Green Chemistry in Ecosystem Restoration to Achieve Environmental Sustainability;2024
2. Fluoride removal from drinking water by electrocoagulation process: recent studies, modeling, and simulation through computational fluid dynamics approach;Advances in Drinking Water Purification;2024
3. Electro-intensified simultaneous decontamination of coexisting pollutants in wastewater;Science of The Total Environment;2023-12
4. Electrified technologies for physical separation of arsenic from water;Current Opinion in Environmental Science & Health;2023-08
5. Electrochemical remediation of arsenic and fluoride from water: A review of the current state and future prospects;Environmental Technology & Innovation;2023-08
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