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
"Electrochemical Technology for Wastewater Treatment: Dares and Trends"
written by Djamel Ghernaout, Noureddine Elboughdiri,
published by Open Access Library Journal, Vol.7 No.1, 2020
has been cited by the following article(s):
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[1] Synchronous COD removal and nitrogen recovery from high concentrated pharmaceutical wastewater by an integrated chemo-biocatalytic reactor systems
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[2] Mechanistic study for enhanced photocatalytic degradation of acetaminophen by Fe (III) doped TiO2 hollow submicrospheres
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[3] Ekologi dan Pencemaran Lingkungan
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[4] Effluent water treatment utilising a combination of hydrodynamic shear and flotation technology for the specific application of wastewater from the oil and gas industry
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[5] Nekonvenční postupy odstraňování problematických polutantů z vod a tuhých odpadů
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[6] Electrochemical Detection and Removal of Heavy Metals in Water
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[7] Application of Natural Coagulants in Water Treatment: A Sustainable Alternative to Chemicals
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[8] СНИЖЕНИЕ УРОВНЯ ТВЕРДЫХ ОТЛОЖЕНИЙ НА ТЕПЛООБМЕННЫХ ПОВЕРХНОСТЯХ КОТЕЛЬНЫХ АГРЕГАТОВ ПРИ ПОМОЩИ …
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[9] СОСТОЯНИЕ ПРОБЛЕМЫ АНТРОПОГЕННОГО ВОЗДЕЙСТВИЯ ВЫСОКОКОНЦЕНТРИРОВАННЫХ СТОКОВ НА ЭКОЛОГИЧЕСКУЮ …
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[10] Comparison between Conventional Treatment Processes and Advanced Oxidation Processes in Treating Slaughterhouse Wastewater: A Review
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[11] Combining Electrified Membranes and Electrochemical Disinfection for Virus Demobilization
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[12] Adsorption of Co (II) ions using Zr-Ca-Mg and Ti-Ca-Mg phosphates: Adsorption modeling and mechanistic aspects
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[13] Optimization of Fenton process for concurrent COD removal and lower sludge production: Process intensification and impact of reagents dosing mode
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[14] Integrated Environmental Technologies for Wastewater Treatment and Sustainable Development
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[15] Pd/MIL-100(Fe) as hydrogen activator for FeIII/FeII cycle: Fenton removal of sulfamethazine
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[16] Proficient exclusion of pesticide using humic acid-modified magnetite nanoparticles from aqueous solution
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[17] Electrocoagulation of Escherichia coli Culture: Effects of Temperature and Cell Concentration
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[18] E. coli: Health Impacts, Exposure Evaluation, and Hazard Reduction
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[19] Impact of Processing Technology on the Chemical Contaminants Occurrence in End Products
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[20] A review on sustainable reuse applications of Fenton sludge during wastewater treatment
Frontiers of Environmental Science & …, 2022
[21] Preparation of coal fly ash-based Fenton-like catalyst and its application for the treatment of organic wastewater under microwave assistance
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[22] Magnetic sludge-based biochar derived from Fenton sludge as an efficient heterogeneous Fenton catalyst for degrading Methylene blue
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[23] An overview of geological originated materials as a trend for adsorption in wastewater treatment
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[24] Enhanced electro-reduction of Fe3+ to Fe2+ by acidified carbon nanotube-modified graphite cathode and its application in a novel Fenton process for p-nitrophenol …
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[25] Removal of antibiotics from wastewater and its problematic effects on microbial communities by bioelectrochemical Technology: Current knowledge and future …
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[26] Zero Fenton sludge discharge: a review on reuse approach during wastewater treatment by the advanced oxidation process
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[27] Optimization of the process variables for landfill leachate treatment using Fenton based advanced oxidation technique
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[28] A comprehensive review of detection methods for SARS-CoV-2
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[29] Modeling Viruses' Isoelectric Points as a Milestone in Intensifying the Electrocoagulation Process for Their Elimination
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[30] Efficacy of atrazine pesticide reduction in aqueous solution using activated carbon, ozone and a combination of both
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[31] Exploring What Lies Ahead in the Field of Disinfecting Coronavirus
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[32] Towards Combining Electrochemical Water Splitting and Electrochemical Disinfection
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[33] Suitability of electro-chemical reactor with copper electrode for sugar industry wastewater treatment: optimization of parameters, mechanism, kinetics and sludge …
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[34] Basic Electrochemistry Tools in Environmental Applications
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[35] Extraction of nutrient substrate from highly concentrated poultry processing plants effluents
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[36] A comprehensive review of detection methods for SARS-CoV-2. Microorganisms. 2021; 9: 232
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[37] Removing BOD, COD, and Decolorization of Batik Cual Wastewater Using Fenton Mechanism
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[38] High-valent iron-oxo species on pyridine-containing MWCNTs generated in a solar-induced H2O2 activation system for the removal of antimicrobials
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[39] Sustainable approaches to the Fenton process for wastewater treatment: A review
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[40] Searching If SARS-CoV-2 Subsists Following the Disinfection of Potable Water
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[41] A review of the processes associated with the removal of oil in water pollution
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[42] Green Chemistry and Process Intensification: Milestones on a Sustainable Development
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[43] Review of the Processes Associated with the Removal of Oil in Water Pollution. Sustainability 2021, 13, 12339
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[44] ОЦЕНКА СОСТОЯНИЯ БИОЦЕНОЗА АКТИВНОГО ИЛА ПРИ ФУНКЦИОНИРОВАНИИ В СРЕДЕ С ВЫСОКИМ СОДЕРЖАНИЕМ БЕЛКОВО …
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[45] COD Reduction from Paper Recycling Industries Wastewater Using Electro-Fenton Method
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[46] Impact of the oxidant type on the efficiency of the oxidation and removal of iron compounds from groundwater containing humic substances
Molecules, 2020
[47] Eliminating Cyanobacteria and Controlling Algal Organic Matter—Short Notes
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[48] Enhanced coagulation: promising findings and challenges
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[49] Applications of photochemical oxidation in textile industry
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[50] Strategies for Reducing Disinfection By-Products Formation during Electrocoagulation
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[51] Electrocoagulation Process in the Context of Disinfection Mechanism
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[52] On the Treatment Trains for Municipal Wastewater Reuse for Irrigation
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[53] New insights towards disinfecting viruses–short notes
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[54] Urgent Proposals for Disinfecting Hospital Wastewaters during COVID-19 Pandemic
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[55] On the Other Side of Viruses in the Background of Water Disinfection
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[56] Dealing with Cyanobacteria and Cyanotoxins: Engineering Viewpoints
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[57] Disinfection By-Products (DBPs) Control Strategies in Electrodisinfection
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[58] Natural Organic Matter Removal in the Context of the Performance of Drinking Water Treatment Processes—Technical Notes
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[59] Controlling COVID-19 Pandemic through Wastewater Monitoring
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[60] Water Treatment Challenges towards Viruses Removal
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[61] Desalination in the Context of Water Scarcity Crisis: Dares & Perspectives
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[62] Chemical Science & Engineering Research
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[63] Disinfection By-Products Regulation: Zero ng/L Target
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[64] Charge Neutralization in the Core of Plasma Treatment
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[65] Сравнительная оценка эффективности коагуляционных методов при извлечении биологически активных компонентов из высококонцентрированных …
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[66] Disinfection By-Products: Presence and Elimination in Drinking Water
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[67] Advanced Oxidation Processes for Wastewater Treatment: Facts and Future Trends
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[68] 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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[69] Electrochemical Advanced Oxidation Processes (EAOPs) for Disinfecting Water—Fresh Perspectives
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[70] Coagulation Process for Removing Algae and Algal Organic Matter—An Overview
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[71] Environmental Engineering for Stopping Viruses Pandemics
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[72] Domestic Wastewater Treatment: Difficulties and Reasons, and Prospective Solutions—China as an Example
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[73] Trends in Decreasing Disinfection By-Products Formation during Electrochemical Technologies
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[74] Disinfecting Water: Plasma Discharge for Removing Coronaviruses
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[75] An Insight in Electrocoagulation Process through Current Density Distribution (CDD)
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[76] Electric field (EF) in the Core of the Electrochemical (EC) Disinfection
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[77] Foresight Look on the Disinfection By-Products Formation
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[78] Demobilizing Antibiotic-Resistant Bacteria and Antibiotic Resistance Genes by Electrochemical Technology: New Insights
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[79] Water Treatment Coagulation: Dares and Trends
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[80] Electrocoagulation as a Pioneering Separation Technology—Electric Field Role
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[81] ВЕСТНИК НАУКИ КАЗАХСКОГО АГРОТЕХНИЧЕСКОГО УНИВЕРСИТЕТА ИМ. С. СЕЙФУЛЛИНА
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