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Optimization of physico-chemical parameters of hydrogen production by electrolysis of water

机译:水电解制氢的理化参数优化

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The present paper aims to determine the optimum physico-chemical parameters (input voltage, input amperage, cell temperature, electrolyte type and electrolyte concentration) for producing hydrogen by alkaline water electrolysis. Experiments were carried out in a water electrolysis cell using cathode alloy (Zn95%Cr5%)(mass%) already tested and proven its productivity in our previous work. The results clearly show that at a particular reaction conditions, an optimum amperage must be applied for each used voltage. For example for 4 Volts, the optimal value of amperage was 0,25 Amps whose the production of hydrogen was also optimal. In addition, a series of tests were conducted to test the effect of cell temperature. It was found that the increase in the electrolyte temperature raises the volume of gas until 32°C. Then the volume of hydrogen remains constant and recommences to increase at temperature higher than 47.5°C. Potassium hydroxide (KOH) was the best electrolyte tested in this study. The optimum concentrations recorded were 25g/1 for 4 Volts/0.25Amps and 30g/1 for 5Volts/0.3Amps at 25°C.
机译:本文旨在确定通过碱性水电解生产氢气的最佳物理化学参数(输入电压,输入安培数,电池温度,电解质类型和电解质浓度)。实验是在水电解槽中使用已经测试过的阴极合金(Zn95%Cr5%)(质量%)进行的,并在我们之前的工作中证明了其生产率。结果清楚地表明,在特定的反应条件下,必须为每个使用的电压施加最佳的安培数。例如,对于4伏特,安培数的最佳值是0.25安培,而氢气的产生也是最佳的。另外,进行了一系列测试以测试电池温度的影响。已经发现,电解质温度的升高使气体的体积增加,直到32℃。然后,氢气的体积保持恒定,并建议在高于47.5°C的温度下增加。氢氧化钾(KOH)是这项研究中测试的最佳电解质。在25°C下记录的最佳浓度为4伏/0.25Amps为25g / 1,5伏/0.3Amps为30g / 1。

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