Iridium-cobalt mixed oxide electrode for efficient chlorine evolution in dilute chloride solutions

氧化物 化学 氯化物 电极 氧化钴 无机化学 有机化学 物理化学 催化作用
作者
Sanghwi Han,Seong-Soo Kim,Sungjun Kwak,Changha Lee,Dae Hong Jeong,Choonsoo Kim,Jeyong Yoon
出处
期刊:Journal of Industrial and Engineering Chemistry [Elsevier BV]
卷期号:108: 514-521 被引量:27
标识
DOI:10.1016/j.jiec.2022.01.033
摘要

• In a dilute Cl − solution, ICO electrode showed high CER efficiency. • ICO showed an excellent CER efficiency close to unity above 50 mM. • The high performance is attributed to the synergistic effect of Co 3 O 4 and IrO 2 . • ICO also showed high stability (> 200 h) in the accelerated stability test. In wastewater treatment, the dimensionally stable anodes (DSAs) based on costly metals are currently being used for electrochlorination due to their superb chlorine evolution reaction (CER) performance. However, owing to their low OER overpotential, DSAs show poor current efficiency for CER in dilute chloride solutions (<50 mM), which are common wastewater conditions. Therefore, this study aimed to fabricate a novel anode for efficient chlorine evolution in dilute chloride solutions. To control the OER overpotential, cobalt oxide was selected as an electrode material and iridium was added as a cocatalyst with a small content (<3% atomic percent) to improve stability. Iridium-cobalt mixed oxide (ICO) electrode showed a sevenfold improvement in CER efficiency (15%) in 1 mM NaCl concentration compared to pristine IrO 2 (2%). In addition, above a 50 mM NaCl concentration, ICO exhibited an excellent CER efficiency close to unity. Furthermore, superiority as a CER anode was also demonstrated with high stability (>200 h) in the accelerated stability test (0.5 M H 2 SO 4 solution at 0.1 A cm −2 ) as well as superior ammonium degradation performance in dilute aqueous conditions. These results suggest that ICO can be a promising anode with its high CER efficiency, low cost, and notable stability.
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