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Hydrogen production by microwave based plasma dissociation of water

机译:通过微波等离子体离解水制氢

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In this study, we propose a new method to dissociate water vapor into hydrogen gas by microwave generated plasma. In one stage, steam flows by direct discharge into a custom developed reactor inside the 900 W microwave. The high energetic electrons produced by electric field acceleration of 2.45 GHz microwave collide with water vapor molecules, these molecules are ionized and dissociated into hydrogen and oxygen radicals. The concentration of hydrogen gas is found between 2500 and 8000 PPM. Also, the energy and exergy efficiencies fall below 10% to one another, where the energy efficiency ranges between 11.6% and 53.7% throughout the experiments. From these results, this study demonstrates a unique method of hydrogen production via water plasmolysis and investigates the energy and exergy efficiencies for applications involving the collection of hydrogen gas as an alternative fuel source.
机译:在这项研究中,我们提出了一种通过微波产生的等离子体将水蒸气分解为氢气的新方法。在一个阶段中,蒸汽通过直接排放进入900 W微波内部的定制开发反应器。由2.45 GHz微波的电场加速产生的高能电子与水蒸气分子发生碰撞,这些分子被离子化并分解为氢和氧自由基。发现氢气的浓度在2500至8000 PPM之间。同样,能量效率和火用效率彼此之间低于10%,在整个实验过程中,能量效率在11.6%和53.7%之间。从这些结果出发,本研究证明了通过水溶质分解制氢的独特方法,并研究了涉及收集氢气作为替代燃料来源的应用的能量和火用效率。

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