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Electrolytic generation of ozone on antimony- And nickel-doped tin oxide electrode

机译:在锑和镍掺杂的氧化锡电极上电解产生臭氧

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摘要

In a recent report, ozone was produced with high efficiency in perchloric acid on an anode coated with antimony-doped tin oxide. We report here that high current efficiency can be enhanced if trace amounts of a second dopant, nickel, is present. The effect of composition of the coating in terms of Ni:Sb:Sn was carefully analyzed. The optimum Ni:Sb:Sn ratio, determined to be 1:8:500, was determined giving a corresponding ozone generation current efficiency of over 30% at room temperature. The highest current efficiency was observed at an optimum operating potential of 2.2 V vs Ag/AgCl. Electrolytic generation of ozone in perchloric acid, sulfuric acid, and phosphoric acid at different concentrations was also studied and compared. In 0.1 M H 2SO 4, the ozone concentration reached 34 mg/L and a current efficiency of 36.3% could be achieved. This is about the highest current efficiency ever reported for electrolytic generation of ozone in an aqueous medium at room temperature. © 2005 The Electrochemical Society. All rights reserved.
机译:在最近的一份报告中,在涂有锑掺杂氧化锡的阳极上,高氯酸中产生的臭氧效率很高。我们在此报告,如果存在痕量的第二种掺杂剂镍,则可以提高高电流效率。仔细分析了涂层成分对Ni:Sb:Sn的影响。确定了最佳的Ni:Sb:Sn比,确定为1:8:500,在室温下给出的臭氧产生电流效率超过30%。相对于Ag / AgCl,在最佳工作电压为2.2 V时观察到最高电流效率。还研究并比较了高氯酸,硫酸和磷酸中臭氧在不同浓度下的电解产生。在0.1 M H 2SO 4中,臭氧浓度达到34 mg / L,电流效率可以达到36.3%。这大约是室温下在水性介质中电解产生臭氧所报告的最高电流效率。 ©2005电化学学会。版权所有。

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