S. Essuman, A. Nyamful, Vincent Yao Agbodemegbe, S. K. Debrah
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引用次数: 11
摘要
水电解过程中最大的挑战是如何优化影响氢气生产的主要因素。在过去的几年里,人们使用了不同的方法从碳基化石燃料中生产氢气,但这些方法已被证明是不环保的,因为它们的使用会释放大量的温室气体。在本工作中,进行了一项实验研究,以评估电解质强度,电压和时间对设计的HHO气体发生器产生的HHO气体体积的影响。发电机由不锈钢316l板构成,由3个阳极、3个阴极和20个中性板组成。在研究过程中,KOH、NaOH和NaHCO3的强度在0.010 M ~ 0.030 M的范围内制备,然后在9 V ~ 13 V的电压范围内改变每种催化剂的强度50秒。实验结果表明,随着电解液强度、电压和时间的增加,HHO气体的产率呈比例增加。在电压为13 V、KOH浓度为0.025 M时,HHO气体的最佳产率为2.27 cm3/s。此外,电极表面形貌、极板结构和温度对HHO气产率的影响也分别提高了41.85%、69.74%和71.96%。
Experimental Studies of the Effect of Electrolyte Strength, Voltage and Time on the Production of Brown’s (HHO) Gas Using Oxyhydrogen Generator
A great challenge in water electrolysis is how to optimize the major factors that influence the production of hydrogen gas. Over the past years, different methods have been used to produce hydrogen gas from carbon-base fossil fuels but these methods have been proven to be environmentally unfriendly due to the enormous release of greenhouse gases associated with their use. In this work, an experimental study was carried out to evaluate the effect of electrolyte strength, voltage and time on the volume of HHO gas produced using a design built HHO gas generator. The generator was constructed from Stainless Steel 316 L plates made of 3 anodes, 3 cathodes, and 20 neutral plates. During the study, the strengths of KOH, NaOH, and NaHCO3 was prepared within the range of 0.010 M - 0.030 M. The prepared strengths for each catalyst were then varied across voltage range of 9 V to 13 V for 50 seconds. The experimental results obtained showed that, increasing electrolyte strength, voltage and time proportionally increased the yield of HHO gas. An optimal yield rate of 2.27 cm3/s of HHO gas was obtained when the generator was run at 13 V using 0.025 M KOH. In addition, other factors studied including electrode surface morphology, plate’s configuration, and temperature also showed improvement in yield of HHO gas by 41.85%, 69.74%, and 71.96% respectively.