2009
DOI: 10.1007/s10800-009-9873-7
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Electrochemical oxidation of sulfide ion at a Ti/IrO2–Ta2O5 anode in the presence and absence of naphthenic acids

Abstract: Electrochemical oxidation of sulfide ion at a Ti/ IrO 2 -Ta 2 O 5 anode followed partial order kinetics (between current and mass transport control) in the absence and presence of chloride ion and of naphthenic acids, at sulfide concentrations typical of sour brines. The desired outcome was to promote the 2-electron oxidation of sulfide to elemental sulfide rather than the 8-electron oxidation to sulfate. Although elemental sulfur accumulated to some extent at low conversion of sulfide, sulfate ion became the … Show more

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Cited by 14 publications
(32 citation statements)
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“…1,2 The presence of S 2-in sewage systems is a common problem due to the stimulation of the metabolic activity of sulfate-reducing bacteria, given the high organic load and low dissolved oxygen. 3 Sulfide is one of the contaminants in effluents generated in the extraction of oil and gas and in certain types of wastes from oil refinery, 4 as well as in wastewaters from the leather industry that present high concentration in sulfide ion. 5 Concrete corrosion problems have also been reported for S 2-concentration between 0.1 and 0.5 mg L -1 .…”
Section: Introductionmentioning
confidence: 99%
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“…1,2 The presence of S 2-in sewage systems is a common problem due to the stimulation of the metabolic activity of sulfate-reducing bacteria, given the high organic load and low dissolved oxygen. 3 Sulfide is one of the contaminants in effluents generated in the extraction of oil and gas and in certain types of wastes from oil refinery, 4 as well as in wastewaters from the leather industry that present high concentration in sulfide ion. 5 Concrete corrosion problems have also been reported for S 2-concentration between 0.1 and 0.5 mg L -1 .…”
Section: Introductionmentioning
confidence: 99%
“…The biological oxidation to remove S 2-can also be performed, but it is slow and applies only to low S 2-concentrations. 4 The electrochemical processes are a promising technique for the resolution of pollution problems, since they present (i) versatility: direct or indirect oxidation, phase separation, biocides functions, treatment of many different contaminants; and (ii) energetic efficiency: electrochemical processes generally have lower temperature requirements, the potential can be controlled and electrodes and cells can be designed to minimize energy losses due to voltage drops, poor current distribution and secondary reactions. 9 In the recent years, there has been a growing interest in these processes for the treatment of wastewaters containing recalcitrant and biotoxic compounds.…”
Section: Introductionmentioning
confidence: 99%
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