混沌通量反射场对电解水氢进化反应的影响

Willy Satrio Nugroho, Rehab Ragay Esiliy, Purnami Purnami, Y. Sofi’i
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引用次数: 0

摘要

水电解有望在未来生产出绿色氢气。磁场辅助电解可以提高水电解的效率和氢进化反应速率(HER)。外部磁场照射可提高氢气产量,而无需复杂的催化剂合成技术。本研究的目的是在磁场辅助电解系统中引入混沌效应,从而扰乱水分子的稳定性。混沌效应是通过不规则磁通量反射技术引发的。磁通量反射是利用贴满电解槽壁的二磁性电气石产生的。因此,DMF 的转速不会降低混沌通量的效果。因此,水分子的氢键不规则地失去了稳定性。与此同时,氢键无法重新结合,从而使水分子不断运动。混沌流动的关键影响是水分子所经历的剪切力。顺磁 OH- 离子的运动也会减慢,这样 H+ 离子和电子之间的相互作用就不会受到太多限制。因此,混沌磁场能够改善 HER。 混沌磁通反射通过改变水的性质和离子转移机制,提高了磁场辅助水电解的氢气产生率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE IMPACT OF CHAOTIC FLUX REFLECTION FIELD ON HYDROGEN EVOLUTION REACTION OF WATER ELECTROLYSIS
Water electrolysis promises the capability to produce green hydrogen in the future. The efficiency and hydrogen evolution reaction rate (HER) of water electrolysis can be improved through magnetic field assisted electrolysis. External magnetic field exposure improves hydrogen production without requiring complex catalyst synthesis technique. The purpose of this study is to introduce chaos into a magnetic field assisted electrolysis system which disturbs the water molecules stability. The chaos effect was triggered by irregular flux reflection technique. The flux reflection was generated using diamagnetic tourmaline stones which sticked all over the electrolyzer wall. Consequently, the rotational speed of DMF does not reduce the effectiveness of chaotic flux. As a result, the hydrogen bond of the water molecules is destabilized irregularly. In conjuction with that, the bonds are unable to be reformed which make the water molecules continuously in movement. The critical effect of chaotic flux is the shear force that experienced by water molecules. The paramagnetic OH- ion movement is also slowed down so that H+ ion and electrons interaction were occurred in less restrictive manner. Hence, the chaotic magnetic field able to improve HER.  The chaotic flux reflection improves hydrogen production in magnetic field assisted water electrolysis through water properties and ion transfer mechanism modification.
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