Open Access Library Journal

Open Access Library Journal

ISSN Print: 2333-9705
ISSN Online: 2333-9721
www.scirp.net/journal/oalibj
E-mail: [email protected]
"Upgrading Wastewater Treatment Plant to Obtain Drinking Water"
written by Djamel Ghernaout, Noureddine Elboughdiri,
published by Open Access Library Journal, Vol.6 No.12, 2019
has been cited by the following article(s):
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[1] Wastewater treatment for reuse in agriculture: Prospects and challenges
Hazmi, A Mohammadi, A Hejna, J Majtacz… - Environmental …, 2023
[2] An Overview of Wastewater Treatment and Reuse in The Gulf Cooperation Council Countries
Journal of Applied …, 2023
[3] Calculating of treatment plant efficiency by using the Canadian council of ministers of the environment water quality index
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[4] What compound inside biocoagulants/bioflocculants is contributing the most to the coagulation and flocculation processes?
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[5] Environmental, Economic, and Social Aspects of Human Urine Valorization through Microbial Fuel Cells from the Circular Economy Perspective
Castrejón, JA López-Díaz, O Solorza-Feria… - Micromachines, 2022
[6] Integrated Environmental Technologies for Wastewater Treatment and Sustainable Development
2022
[7] E. coli: Health Impacts, Exposure Evaluation, and Hazard Reduction
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[8] A Comprehensive Outlook to Hydrothermal Liquefaction Technology: Economic and Environmental Benefits
García, I Nava-Bravo, A Villarreal - Handbook of Waste …, 2022
[9] Future of water recycling: A review of the direct potable water reuse
Recycling and Sustainable Development, 2022
[10] Exploring What Lies Ahead in the Field of Disinfecting Coronavirus
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[11] Towards Combining Electrochemical Water Splitting and Electrochemical Disinfection
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[12] Searching if SARS-CoV-2 Subsists Following the Disinfection of Potable Water
2021
[13] Green Chemistry and Process Intensification: Milestones on a Sustainable Development
International Journal of Chemistry, 2021
[14] Fenton Technology for Wastewater Treatment: Dares and Trends
2020
[15] Strategies for Reducing Disinfection By-Products Formation during Electrocoagulation
2020
[16] Electrocoagulation Process in the Context of Disinfection Mechanism
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[17] On the Treatment Trains for Municipal Wastewater Reuse for Irrigation
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[18] Electrochemical Technology for Wastewater Treatment: Dares and Trends
2020
[19] Disinfection By-Products: Presence and Elimination in Drinking Water
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[20] Advanced Oxidation Processes for Wastewater Treatment: Facts and Future Trends
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[21] UV-C/H2O2 and Sunlight/H2O2 in the Core of the Best Available Technologies for Dealing with Present Dares in Domestic Wastewater Reuse
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[22] Coagulation Process for Removing Algae and Algal Organic Matter—An Overview
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[23] Environmental Engineering for Stopping Viruses Pandemics
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[24] Domestic Wastewater Treatment: Difficulties and Reasons, and Prospective Solutions—China as an Example
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[25] Disinfecting Water: Plasma Discharge for Removing Coronaviruses
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[26] Foresight Look on the Disinfection By-Products Formation
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[27] Demobilizing Antibiotic-Resistant Bacteria and Antibiotic Resistance Genes by Electrochemical Technology: New Insights
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[28] Water Treatment Coagulation: Dares and Trends
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[29] Electrocoagulation as a Pioneering Separation Technology—Electric Field Role
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[30] Urgent Proposals for Disinfecting Hospital Wastewaters during COVID-19 Pandemic
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[31] On the Other Side of Viruses in the Background of Water Disinfection
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[32] Dealing with Cyanobacteria and Cyanotoxins: Engineering Viewpoints
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[33] Trends in Decreasing Disinfection By-Products Formation during Electrochemical Technologies
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[34] Natural Organic Matter Removal in the Context of the Performance of Drinking Water Treatment Processes—Technical Notes
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[35] Controlling COVID-19 Pandemic through Wastewater Monitoring
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[36] Water Treatment Challenges towards Viruses Removal
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[37] Assessing the public perceptions of treated wastewater reuse: opportunities and implications for urban communities in developing countries
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[38] Desalination in the Context of Water Scarcity Crisis: Dares & Perspectives
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[39] Chemical Science & Engineering Research
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[40] Disinfection By-Products Regulation: Zero ng/L Target
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[41] Charge Neutralization in the Core of Plasma Treatment
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[42] Diseño de una barrera permeable para remoción de nitrito y fosfato con biosorbentes en la Unidad de Tratamiento “Las Cholas”
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