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首页> 外文期刊>Journal of Analytical Methods in Chemistry >Feasibility of Using an Electrolysis Cell for Quantification of the Electrolytic Products of Water from Gravimetric Measurement
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Feasibility of Using an Electrolysis Cell for Quantification of the Electrolytic Products of Water from Gravimetric Measurement

机译:使用电解池定量分析水的电解产物的可行性

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A gravimetric method for the quantitative assessment of the products of electrolysis of water is presented. In this approach, the electrolysis cell was directly powered by 9 V batteries. Prior to electrolysis, a known amount of potassium hydrogen phthalate (KHP) was added to the cathode compartment, and an excess amount of KHCO3 was added to the anode compartment electrolyte. During electrolysis, cathode and anode compartments produced OH−(aq) and H+(aq) ions, respectively. Electrolytically produced OH−(aq) neutralized the KHP, and the completion of this neutralization was detected by a visual indicator color change. Electrolytically produced H+(aq) reacted with HCO3−(aq) liberating CO2(g) from the anode compartment. Concurrent liberation of H2(g) and O2(g) at the cathode and anode, respectively, resulted in a decrease in the mass of the cell. Mass of the electrolysis cell was monitored. Liberation of CO2(g) resulted in a pronounced effect of a decrease in mass. Experimentally determined decrease in mass (53.7 g/Faraday) agreed with that predicted from Faraday’s laws of electrolysis (53.0 g/Faraday). The efficacy of the cell was tested to quantify the acid content in household vinegar samples. Accurate results were obtained for vinegar analysis with a precision better than 5% in most cases. The cell offers the advantages of coulometric method and additionally simplifies the circuitry by eliminating the use of a constant current power source or a coulometer.
机译:提出了一种定量分析水电解产物的重量分析方法。用这种方法,电解槽直接由9 V电池供电。在电解之前,将已知量的邻苯二甲酸氢钾(KHP)添加到阴极室中,并将过量的KHCO3添加到阳极室电解质中。在电解过程中,阴极室和阳极室分别产生OH-(aq)和H +(aq)离子。电解产生的OH-(aq)中和了KHP,并且通过视觉指示剂颜色变化检测到中和的完成。电解产生的H +(aq)与HCO3-(aq)反应,从阳极室释放出CO2(g)。在阴极和阳极同时释放H2(g)和O2(g)导致电池质量降低。监测电解池的质量。 CO2(g)的释放导致质量下降的显着效果。实验确定的质量下降(53.7微克/法拉第)与法拉第电解定律(53.0微克/法拉第)所预测的下降相符。测试细胞的功效以定量家用醋样品中的酸含量。在大多数情况下,醋分析的准确结果均优于5%。该电池具有库仑法的优点,并且通过消除使用恒流电源或电量计来简化电路。

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