2016
DOI: 10.1021/acs.chemrev.5b00389
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Selectivity between Oxygen and Chlorine Evolution in the Chlor-Alkali and Chlorate Processes

Abstract: Chlorine gas and sodium chlorate are two base chemicals produced through electrolysis of sodium chloride brine which find uses in many areas of industrial chemistry. Although the industrial production of these chemicals started over 100 years ago, there are still factors that limit the energy efficiencies of the processes. This review focuses on the unwanted production of oxygen gas, which decreases the charge yield by up to 5%. Understanding the factors that control the rate of oxygen production requires unde… Show more

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Cited by 432 publications
(461 citation statements)
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References 183 publications
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“…The loss becomes particularly significant at low chloride concentrations (Krstajić et al, 1991) and at low anode potentials (Karlsson and Cornell, 2016). The coating composition is also of high importance (Krstajić et al, 1986).…”
Section: Introductionmentioning
confidence: 99%
“…The loss becomes particularly significant at low chloride concentrations (Krstajić et al, 1991) and at low anode potentials (Karlsson and Cornell, 2016). The coating composition is also of high importance (Krstajić et al, 1986).…”
Section: Introductionmentioning
confidence: 99%
“…The voltage efficiency of our electrochemical reaction was estimated to be ≈70%, which is consistent to those of commercially deployed systems. [34,36] Figure 3b demonstrates the capability of our solar powered chloralkali device to produce two valuable products, molecular chlorine and molecular hydrogen, at unprecedented efficiencies using natural sunlight. Our simple microtracking mechanism, based on the advanced optical design of our solar concentrator, was periodically activated to cover the solar disk displacements and maintain solar to product efficiency as high as 25.1%.…”
Section: Resultsmentioning
confidence: 99%
“…Levelized costs of solar chlorine (LC Cl2 ) were calculated for a 20 years device lifetime, considering the replacement of Nafion membranes every 5 years [24] and electrocatalysts lifetime of 10 years, although DSAs have demonstrated to operate for longer life spans. [34,36] These assumptions were intended to produce realistic outcomes, given the complexity and the volatility of a technoeconomic analysis.…”
Section: Resultsmentioning
confidence: 99%
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“…RuO 2 -dsa is already an established anode in the chloralkali industry. 33,34 In chloride media, ruthenium oxide-based dsa is selective to chlorine formation and aqueous chlorine species are an potential oxidant for glycerol oxidation. Hence, RuO 2 -dsa was investigated rst to ascertain anodic glyceraldehyde selectivity in our quest towards selective electrochemical conversion of glycerol to 1,3-PD.…”
Section: Electrode Selectivity Requirementsmentioning
confidence: 99%