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Comparative experimental investigation of oxyhydrogen (HHO) production rate using dry and wet cells

机译:用干湿细胞对氢氧(HHO)生产率的比较实验研究

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Hydroxy gas was produced by water electrolysis from dry and wet cells using stainless steel 316L electrode of 136.5 cm(2) surface area and 4 mm separation. Electrolytes as NaOH and KOH of different concentrations were used. This study investigates the effect of electrolyte concentration, cell connection, electric current, operating time, electrolyte temperature and voltage on HHO productivity of the cells. Different plate configurations were studied. Increases of applied current, electrolyte temperature, electrolyte concentration and voltage led to the increase of gas production. More gas was produced from wet cell as compared to dry cell for the same design. HHO production for the dry cell reaches its maximum values of 866, 985, 1040 and 1090 ml/min at 5, 10, 15 and 20 g/L of NaOH at currents of 14, 18, 20 and 21.3 A and attains stable after about 30 min but the temperatures were increased till 32, 38, 44 and 52 degrees C, respectively and remained constant after that. The production peak values for wet cell were 975, 1160, 1325 and 1375 ml/min at 5, 10, 15 and 20 g/L of NaOH and flow currents of 17.8, 23.5, 26 and 27 A and remains constant after 90 min. At 10, 15 and 20 g/L NaOH, the temperatures were increased till constant values of 35, 44, 50 and 58 degrees C, respectively. HHO productivities from dry and wet cells are 866 and 1160 ml/min with electrolyzer efficiency of 72.1 and 69.3% at 14 and 18 A and (5 and 10 gm NaOH/L), respectively. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用136.5cm(2)表面积和4mm分离的不锈钢316L电极,通过从干燥和湿细胞的水电解产生羟基。使用电解质作为NaOH和不同浓度的KOH。本研究研究了电解质浓度,电池连接,电流,操作时间,电解质温度和电压对细胞HHO生产率的影响。研究了不同的板配置。施加电流,电解质温度,电解质浓度和电压的增加导致气体生产的增加。与相同的设计相比,与干燥电池相比,从湿细胞产生更多气体。干电池的HHO生产在14,18,20和21.3A的电流下在5,10,15和20g / L的NaOH中达到其最大值866,985,1040和1090ml / min,并在约后获得稳定30分钟,但温度分别增加32,38,44和52摄氏度,并在此之后保持恒定。湿电池的生产峰值为975,1160,1325和1375ml / min,在5,10,15和20g / L的NaOH和17.8,23.5,26和27a的流动电流,90分钟后保持恒定。在10,15和20g / L NaOH下,温度分别增加35,44,50和58℃的恒定值。来自干燥和湿细胞的HHO产品可分别为866和1160ml / min,电解效率为72.1和69.3%,分别为14和18a和(5和10gm NaOH / L)。 (c)2021氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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