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Journal ArticleDOI

Cobalt-mediated activation of peroxymonosulfate and sulfate radical attack on phenolic compounds. implications of chloride ions.

TLDR
The sulfate radical pathway of the room-temperature degradation of two phenolic compounds in water is reported, and it provides strong evidence on the interaction of chloride ions with sulfate radicals leading to halogenation of organics in water.
Abstract
The sulfate radical pathway of the room-temperature degradation of two phenolic compounds in water is reported in this study. The sulfate radicals were produced by the cobalt-mediated decomposition of peroxymonosulfate (Oxone) in an aqueous homogeneous system. The major intermediates formed from the transformation of 2,4-dichlorophenol were 2,4,6-trichlorophenol, 2,3,5,6-tetrachloro-1,4-benzenediol, 1,1,3,3-tetrachloroacetone, pentachloroacetone, and carbon tetrachloride. Those resulting from the transformation of phenol in the presence of chloride ion were 2-chlorophenol, 4-chlorophenol, 2,4-dichlorophenol, 2,6-dichlorophenol, 1,1,3,3-tetrachloroacetone, and pentachloroacetone. In the absence of chloride ion, phenol transformed into 2,5-cyclohexadiene-1,4-dione (quinone), 1,2-benzenediol (catechol), and 1,4-benzenediol (hydroquinone). Several parameters were varied, and their impact on the transformation of the organic compounds is also discussed. The parameters varied were the initial concentration of the organic substrate, the dose of Oxone used, the cobalt counteranion, and in particular the impact of chloride ions and the quenching agent utilized for terminating the reaction. This is one of the very few studies dealing with intermediates formed via sulfate radical attack on phenolic compounds. It is also the first studythat explores the sulfate radical mechanism of oxidation, when sulfate radicals are generated via the Co/Oxone reagent. Furthermore, it provides strong evidence on the interaction of chloride ions with sulfate radicals leading to halogenation of organics in water.

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Citations
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Journal ArticleDOI

Magnetic 2D/2D oxygen doped g-C3N4/biochar composite to activate peroxymonosulfate for degradation of emerging organic pollutants

TL;DR: In this article, a magnetic 2D/2D oxygen-doped graphite carbon nitride/ biochar composite was rationally fabricated and used to activate peroxymonosulfate (PMS) for the degradation of emerging organic pollutants.
Journal ArticleDOI

Catalytic activity of the SO4− radical for photodegradation of the azo dye Cibacron Brilliant Yellow 3 and 3,4-dichlorophenol: Optimization by application of response surface methodology

TL;DR: In this paper, the authors used multivariate analysis to optimize the process of organic removal from wastewater in a cylindrical reactor, using UV radiation (254nm) and peroxodisulfate as an oxidant.
Journal ArticleDOI

Activation of persulfate by molecularly imprinted Fe-MOF-74@SiO2 for the targeted degradation of dimethyl phthalate: Effects of operating parameters and chlorine

TL;DR: In this paper, a novel functioned metal-organic framework catalyst was investigated for the targeted degradation of DMP, a toxic phthalate pollutant, which showed excellent capability of persulfate (PS) activation, high selectivity and efficient targeted degradation performance.
Journal ArticleDOI

Integration of •SO4−-based AOP mediated by reusable iron particles and a sulfidogenic process to degrade and detoxify Orange II

TL;DR: A novel iron-cycling process integrating •SO4--based AOP mediated by reusable iron particles and a sulfidogenic process to degrade and detoxify Orange II completely is proposed, demonstrating that the integrated process is a promising solution to the remediation of toxic and refractory organic pollutants.
Journal ArticleDOI

Perovskites as catalysts in advanced oxidation processes for wastewater treatment

M.L. Rojas-Cervantes, +1 more
- 02 Mar 2019 - 
TL;DR: In this article, the fundaments of different kinds of AOPs and the application of perovskite type oxides in them, classified attending to the oxidant used, ozone, H2O2 or peroxymonosulfate, alone or in combination with other systems.
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Journal ArticleDOI

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Journal ArticleDOI

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