2019
DOI: 10.1016/j.hydromet.2019.01.018
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Reviews the research on some dimensionally stable anodes (DSA) based on titanium

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Cited by 71 publications
(33 citation statements)
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“…[46,47] It is important to note that the chosen solution is the typical electrolyte used in the Cu electrowinning, [48] where Ti-based anodes are used. [49] Considering the above, the electrochemical characterization of the sintered samples was performed in a conventional three-electrode cell in an aerated 1.63 M H 2 SO 4 solution. Ag/AgCl (sat.…”
Section: Characterizationmentioning
confidence: 99%
“…[46,47] It is important to note that the chosen solution is the typical electrolyte used in the Cu electrowinning, [48] where Ti-based anodes are used. [49] Considering the above, the electrochemical characterization of the sintered samples was performed in a conventional three-electrode cell in an aerated 1.63 M H 2 SO 4 solution. Ag/AgCl (sat.…”
Section: Characterizationmentioning
confidence: 99%
“…However, the high cost of noble metals constrains their industrial application at large scale. [3] The mass activity is an important index to evaluate the correlation between the cost and the performance of catalysts, especially for noble metals. [4] The high mass activity represents the high performance with low loading for catalysts.…”
Section: Introductionmentioning
confidence: 99%
“…The dimensionally stable anodes (DSA) on the basis of IrO 2 or RuO 2 are considered to be the state‐of‐the‐art electrocatalysts for CER due to their high activity and great stability. However, the high cost of noble metals constrains their industrial application at large scale [3] . The mass activity is an important index to evaluate the correlation between the cost and the performance of catalysts, especially for noble metals [4] .…”
Section: Introductionmentioning
confidence: 99%
“…8 These anodes can be modified with transition metals with different compositions, which favor the generation of oxidizing species, such as • OH, • OOH, H 2 O 2, and O 3 , to carry out EAOP. [9][10][11] Some electrodes used in EAOP are made with transition metal oxides, such as IrO 2 /Ta 2 O 5 |Ti and RuO 2 /Ta 2 O 5 |Ti, which have been used in the electrokinetic treatment of soils and water polluted by organic compounds [12][13][14] due to their high generation of hydroxyl radicals, electrochemical and morphological characteristics, mechanical resistance under severe conditions of anodic attack, 15 low potential and corrosion resistance. 15 Different techniques have been used for modification, such as immersion, painting, and electrophoretic deposition.…”
Section: Introductionmentioning
confidence: 99%
“…[9][10][11] Some electrodes used in EAOP are made with transition metal oxides, such as IrO 2 /Ta 2 O 5 |Ti and RuO 2 /Ta 2 O 5 |Ti, which have been used in the electrokinetic treatment of soils and water polluted by organic compounds [12][13][14] due to their high generation of hydroxyl radicals, electrochemical and morphological characteristics, mechanical resistance under severe conditions of anodic attack, 15 low potential and corrosion resistance. 15 Different techniques have been used for modification, such as immersion, painting, and electrophoretic deposition. 14 The study of the thermodynamics and kinetics of oxidizing agents generated by transition metal oxides, such as IrO 2 /Ta 2 O 5 | Ti and RuO 2 /Ta 2 O 5 |Ti, is essential to better understanding the processes involved and, thus, advancing their application.…”
Section: Introductionmentioning
confidence: 99%