Open Access Library Journal

Open Access Library Journal

ISSN Print: 2333-9705
ISSN Online: 2333-9721
www.scirp.org/journal/oalibj
E-mail: service@oalib.com
"UV-C/H2O2 and Sunlight/H2O2 in the Core of the Best Available Technologies for Dealing with Present Dares in Domestic Wastewater Reuse"
written by Djamel Ghernaout, Noureddine Elboughdiri,
published by Open Access Library Journal, Vol.7 No.3, 2020
has been cited by the following article(s):
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[1] RSM-D-optimal modeling approach for COD removal from low strength wastewater by microalgae, sludge, and activated carbon-case study mashhad
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[2] Modern knowledge-scape possess petite influence on the factual persistence of resistance determinants (ARGs/MGEs): A map and assessment of discharged …
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[3] E. coli: Health Impacts, Exposure Evaluation, and Hazard Reduction
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[4] Inactivation of antibiotic-resistant bacteria and antibiotic-resistance genes in wastewater streams: Current challenges and future perspectives
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[5] Decontamination of Treated Wastewater By means of a Modern Ultraviolet LED Reactor System
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[6] Green Chemistry and Process Intensification: Milestones on a Sustainable Development
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[7] Modeling Viruses' Isoelectric Points as a Milestone in Intensifying the Electrocoagulation Process for Their Elimination
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[8] Exploring What Lies Ahead in the Field of Disinfecting Coronavirus
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[9] Towards Combining Electrochemical Water Splitting and Electrochemical Disinfection
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[10] Searching if SARS-CoV-2 Subsists Following the Disinfection of Potable Water
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[11] Plastic Waste Pollution Worsen by the COVID-19 Pandemic: Substitutional Technologies Transforming Plastic Waste to Value Added Products
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[12] On the Disinfection Chain as a New Technique for Economic and Chemical Free Disinfection of Public Places from Viruses
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[13] Combat of antimicrobial resistance in municipal wastewater treatment plant effluent via solar advanced oxidation processes: Achievements and perspectives
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[14] Disinfection of Wastewater by UV-Based Treatment for Reuse in a Circular Economy Perspective. Where Are We at?
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[15] Disinfection By-Products Regulation: Zero ng/L Target
2020
[16] Charge Neutralization in the Core of Plasma Treatment
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[17] Electrochemical Advanced Oxidation Processes (EAOPs) for Disinfecting Water—Fresh Perspectives
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[18] Environmental Engineering for Stopping Viruses Pandemics
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[19] Eliminating Cyanobacteria and Controlling Algal Organic Matter—Short Notes
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[20] Trends in Decreasing Disinfection By-Products Formation during Electrochemical Technologies
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[21] Disinfecting Water: Plasma Discharge for Removing Coronaviruses
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[22] Electric field (EF) in the Core of the Electrochemical (EC) Disinfection
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[23] Foresight Look on the Disinfection By-Products Formation
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[24] Demobilizing Antibiotic-Resistant Bacteria and Antibiotic Resistance Genes by Electrochemical Technology: New Insights
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[25] Water Treatment Coagulation: Dares and Trends
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[26] Electrocoagulation as a Pioneering Separation Technology—Electric Field Role
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[27] Urgent Proposals for Disinfecting Hospital Wastewaters during COVID-19 Pandemic
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[28] On the Other Side of Viruses in the Background of Water Disinfection
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[29] Dealing with Cyanobacteria and Cyanotoxins: Engineering Viewpoints
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[30] Disinfection By-Products (DBPs) Control Strategies in Electrodisinfection
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[31] Natural Organic Matter Removal in the Context of the Performance of Drinking Water Treatment Processes—Technical Notes
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[32] Controlling COVID-19 Pandemic through Wastewater Monitoring
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[33] Water Treatment Challenges towards Viruses Removal
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[34] Desalination in the Context of Water Scarcity Crisis: Dares & Perspectives
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[35] Chemical Science & Engineering Research
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