硫酸
臭氧
阳极
电化学
电流(流体)
电压
电化学电池
分析化学(期刊)
材料科学
流量(数学)
化学
无机化学
流动电池
化学工程
体积流量
连续流动
电流
电池电压
开路电压
电晕放电
流动条件
电极
作者
Paul A. Christensen,Wen‐Feng Lin,Hans E. M. Christensen,A. Imkum,Jia Jin,Guang Li,C.M. Dyson
标识
DOI:10.1080/01919510903039309
摘要
The electrochemical generation of ozone by Ni/Sb-SnO2 anodes immersed in 0.5M H2SO4 was assessed in both flow and recycle systems using the same electrochemical cell. The anodes were found to exhibit current efficiencies of up to 50% for ozone generation under flow conditions at room temperature, with an optimum mole ratio in the precursor solutions of ca. 500:8:3 Sn:Sb:Ni and optimum cell voltage of 2.7V. A comparison of the data obtained under flow and recycle conditions suggests that the presence of ozone in the anolyte inhibits its formation. The minimum electrical energy cost achieved, of 18 kWh kg−1 compares favorably with estimated costs for Cold Corona Discharge generally reported in the literature, especially when the very significant advantages of electrochemical ozone generation are taken into account.
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