摘要
以持续注入的KOH水溶液为电解质,在燃料电池反应器中进行了H2O2合成工艺研究.结果表明,KOH溶液浓度及流量、H2O,O2和H2流量对电池电流、H2O2浓度和电流效率等均有较大影响.其中KOH浓度为2mol/L,H2O,KOH和O2,H2的流量分别为80,150mL/h和60,20mL/min时,反应体系获得了较高的H2O2产量(0.225mol/L)和电流效率(接近100%),可望应用于水中污染物的处理.
The generation process of hydrogen peroxide in a fuel cell reactor was studied, in which continuously injected KOH aqueous solution was used as electrolyte, The results showed that the cell current, H2O2 concentration and current efficiency were affected by the concentration of KOH aqueous solution and flow rates of H2O, KOH, O2 and 1-12. When the concentration of KOH was 2 mol/L, the flow rates of H2O, KOH, 1-12 and O2were 80 mL/h, 150 mL/h, 20 mL/min and 60 mL/min respectively, high H2O2 productivity (0.225 mol/L) and current efficiency (almost 100%) were obtained from the reactor system, which is expected to be applicable in wastewater treatment.
出处
《过程工程学报》
CAS
CSCD
北大核心
2008年第3期550-554,共5页
The Chinese Journal of Process Engineering
基金
国家高技术研究发展计划(863)基金资助项目(编号:2006AA02Z211)
江苏省省级污染防治专项基金资助项目(编号:2006-1-W-19)
江苏省自然科学基金资助项目(编号:BK2006181
BK2007188)
江苏省环保科技基金资助项目(编号:2007020)
关键词
碱性燃料电池
过氧化氢
流量
浓度
电流效率
alkaline fuel cell
hydrogen peroxide
flow rate
concentration
current efficiency