Formic acid enhanced effective degradation of methyl orange dye in aqueous solutions under UV–Vis irradiation
Author:
Publisher
Elsevier BV
Subject
Pollution,Waste Management and Disposal,Water Science and Technology,Ecological Modelling,Environmental Engineering,Civil and Structural Engineering
Reference54 articles.
1. “Critical” effect of hydrogen peroxide in photochemical oxidative decolorization of dyes: acid orange 8, acid blue 74 and methyl orange;Aleboyeh;Dyes Pigments,2003
2. Different catalytic effects of a single water molecule: the gas-phase reaction of formic acid with hydroxyl radical in water vapor;Anglada;ChemPhysChem,2009
3. A review on advanced oxidation processes for the removal of taste and odor compounds from aqueous media;Antonopoulou;Water Res.,2014
4. Reactive dyes rejection and textile effluent treatment study using ultrafiltration and nanofiltration processes;Aouni;Desalination,2012
5. Characterization of methyl orange and its photocatalytic degradation products by HPLC/UV–VIS diode array and atmospheric pressure ionization quadrupole ion trap mass spectrometry;Baiocchi;Int. J. Mass Spectrom.,2002
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