Journal of Water Resource and Protection

Journal of Water Resource and Protection

ISSN Print: 1945-3094
ISSN Online: 1945-3108
www.scirp.org/Journal/jwarp
E-mail: jwarp@scirp.org
"Photocatalysis of Naphthenic Acids in Water"
written by Sabyasachi Mishra, Venkatesh Meda, Ajay K. Dalai, Dena W. McMartin, John V. Headley, Kerry M. Peru,
published by Journal of Water Resource and Protection, Vol.2 No.7, 2010
has been cited by the following article(s):
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[1] Kinetics of Catalytic Decarboxylation of Naphthenic Acids over HZSM-5 Zeolite Catalyst
Catalysts, 2022
[2] Solar-activated zinc oxide photocatalytic treatment of real oil sands process water: Effect of treatment parameters on naphthenic acids, polyaromatic hydrocarbons and …
Science of The Total …, 2022
[3] Biodegradation of Naphthenic Acids by Microorganisms Originating from Alberta's Oil Sands Surface Mining Operations
2021
[4] Treatment of pharmaceutical wastewater using advanced oxidation processes
2020
[5] Photodegradation of bitumen-derived organics in oil sands process-affected water
2020
[6] Molecular Characterization of the Fate and Kinetics of Oil Sand Process-Affected Water (OSPW) Naphthenic Acid Fraction Compounds (NAFCs) in Constructed …
2020
[7] Atmospheric Pressure Photoionization Fourier Transform Ion Cyclotron Resonance Mass Spectrometry characterization of oil sand process-affected water in …
2019
[8] On naphthenic acids removal from crude oil and oil sands process-affected water
2019
[9] Study on Treatment of Oil Sands Process-Affected Water Using A Bioreactor Process Train
2019
[10] Fractionation of oil sands process water and fractions influence and degradation by advanced oxidation processes
2019
[11] BIOTREATMENT OF WATERS CONTAMINATED WITH COMMERCIAL NAPHTHENIC ACIDS
2019
[12] Oil Sands Process-Affected Water Characterization and Application of Adsorption Process for the Removal of Naphthenic Acids
2018
[13] Structure-reactivity relationship of naphthenic acids in the photocatalytic degradation process
Chemosphere, 2018
[14] Fate and behavior of oil sands naphthenic acids in a pilot-scale treatment wetland as characterized by negative-ion electrospray ionization Orbitrap mass spectrometry
Science of The Total Environment, 2018
[15] Magnetic flocculation for nanoparticle separation and catalyst recycling
Environmental Science: Nano, 2018
[16] Petroleomic analysis of the treatment of naphthenic organics in oil sands process-affected water with buoyant photocatalysts
Water Research, 2018
[17] Accelerated dewatering and detoxification of oil sands tailings using a biological amendment
2018
[18] Application of Ozone and Peroxone Processes for Naphthenic Acids Degradation in Oil Sands Process-Affected Water: Characterization of Water Before and …
2017
[19] An overview on the application of advanced oxidation processes for the removal of naphthenic acids from water
Journal of Current Issues & Research in Advertising, 2017
[20] Application of Ozone and Peroxone Processes for Naphthenic Acids Degradation in Oil Sands Process-Affected Water: Characterization of Water Before and After …
2017
[21] Performance of a hybrid pilot-scale constructed wetland system for treating oil sands process-affected water from the Athabasca oil sands
Ecological Engineering, 2017
[22] Chlorophenolics Detection and Degradation in Paper Mill Wastewater
2016
[23] Review of biological processes in oil sands: a feasible solution for tailings water treatment
2016
[24] Bio-physicochemical effects of gamma irradiation treatment for naphthenic acids in oil sands fluid fine tailings
Science of The Total Environment, 2016
[25] Solar photocatalytic degradation of naphthenic acids in oil sands process-affected water
Chemosphere, 2016
[26] The effect of oil sands process-affected water and model naphthenic acids on photosynthesis and growth in Emiliania huxleyi and Chlorella vulgaris
Chemosphere, 2016
[27] Photocatalytic degradation of commercially sourced naphthenic acids by TiO 2-graphene composite nanomaterial
Chemosphere, 2016
[28] Anoxic biodegradation of a surrogate naphthenic acid coupled to reduction of nitrite
Biochemical Engineering Journal, 2016
[29] Study of kinetics of degradation of cyclohexane carboxylic acid by acclimated activated sludge
Water Science and Technology, 2016
[30] Photocatalysis of a Commercial Naphthenic Acid in Water Using Fixed-Film TiO2
Water, Air, & Soil Pollution, 2016
[31] Review of Biological Processes in Oil Sands–A Feasible Solution for Tailings Water Treatment
Environmental Reviews, 2016
[32] Modified biopolymers as sorbents for the removal of naphthenic acids from oil sands process affected water (OSPW)
Chemosphere, 2016
[33] Photocatalytic degradation kinetics of naphthenic acids in oil sands process-affected water: Multifactorial determination of significant factors
Chemosphere, 2016
[34] Photocatalytic degradation of commercially sourced naphthenic acids by TiO2-graphene composite nanomaterial
Chemosphere, 2016
[35] Exploring the potential for algal-based bioremediation strategies and toxicological profiling of oil sands process-affected water
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[36] UV Photocatalytic Degradation of Commercial Naphthenic Acid Using TiO2-Zeolite Composites
Journal of Water Resource and Protection, 2014
[37] Application of Principal Component Analysis for the Data Mining of High Resolution Mass Spectrometry Datasets
2014
[38] Removal and toxicity reduction of naphthenic acids by ozonation and combined ozonation-aerobic biodegradation
Bioresource technology, 2014
[39] Biodegradation of a surrogate naphthenic acid under denitrifying conditions
Water research, 2014
[40] Synthesis, Fractionation, Characterisation and Toxicity of Naphthenic Acids from Complex Mixtures
2013
[41] Application of WASP for Modelling and Management of Naphthenic Acids along Athabasca River, Alberta, Canada
Water, Air, & Soil Pollution, 2013
[42] Peroxide Treatment in Chemical Pulp Bleaching
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[43] Influence of nickel and cadmium resistant PGPB on metal accumulation and growth responses of Lycopersicon esculentum plants grown in fly ash amended soil
Water, Air, & Soil Pollution, 2013
[44] A comparative study of immobilization techniques for photocatalytic degradation of rhodamine B using nanoparticles of titanium dioxide
Water, Air, & Soil Pollution, 2013
[45] Photocatalytic degradation in annular reactor: Modelization and optimization using computational fluid dynamics (CFD) and response surface methodology (RSM)
Journal of Environmental Chemical Engineering, 2013
[46] Continuous Co‐biodegradation of linear and cyclic naphthenic acids in circulating packed‐bed bioreactors
Environmental Progress & Sustainable Energy, 2013
[47] Biodegradation of dual phenolic substrates in simulated wastewater by Gliomastix indicus MTCC 3869
Journal of Environmental Chemical Engineering, 2013
[48] An alternative process to treat boiler feed water for reuse
Water Environment Research, 2012
[49] Naphthenic acids degradation and toxicity mitigation in tailings wastewater systems and aquatic environments: A review
Journal of Environmental Science and Health, Part A, 2012
[50] Batch and continuous biodegradation of three model naphthenic acids in a circulating packed-bed bioreactor
Journal of hazardous materials, 2012
[51] Photocatalytic Degradation of 2, 6-Dichlorophenol in Aqueous Phase Using Titania as a Photocatalyst
Engineering, 2012
[52] Diamonds in the rough: identification of individual naphthenic acids in oil sands process water
Environmental science & technology, 2011
[53] Characterization of oil sands naphthenic acids treated with ultraviolet and microwave radiation by negative ion electrospray Fourier transform ion cyclotron resonance mass spectrometry
Rapid Communications in Mass Spectrometry, 2010
[54] Characterization of oil sands naphthenic acids treated with ultraviolet and microwave radiation by negative ion electrospray Fourier transform ion cyclotron resonance …
Rapid communications in mass spectrometry, 2010
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