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- W4382397614 abstract "A MEA (membrane electrode assemblies) reactor has been developed and applied to produce ozone in deionized water under low cell voltage. In this work, the electrolytic process was investigated and optimized. The results show that the ozone concentration was more than 0.1%wt in the mixture gas (3.2L-min-1). Under the experiment conditions, the electrolytic processes were controlled by activation polarization (2.0V-3.5V) and electrochemical polarization (3.5V-5.5V), and the optimized current density was 1.2-1.6 A-cm-2. The cell voltage was 3.7 V (5-50 °C), and the peak value of ozone output (5.7 mg-min-1) appeared at 30 °C. In the processes of ozone production, more than half of the energy was converted into heat. The short time of average retention (<5s) kept ozone from obvious decomposing in the experiment. During the durability tests, the output of ozone can stabilize at 5mg-min-1 (under 1.46 A-cm-2 and 30 °C). The SEM pictures showed that the surface of the catalyst (working 500 times, more than 1h every time) was eroded and the sharp edges disappeared." @default.
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- W4382397614 date "2014-12-01" @default.
- W4382397614 modified "2023-09-27" @default.
- W4382397614 title "Characterization and Process Optimization of a MEA Reactor for Ozone Production in Deionized Water" @default.
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- W4382397614 doi "https://doi.org/10.1016/s1452-3981(23)10951-5" @default.
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