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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Hydrogen production through water splitting at low temperature over Fe3O4 pellet: Effects of electric power, magnetic field, and temperature
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Hydrogen production through water splitting at low temperature over Fe3O4 pellet: Effects of electric power, magnetic field, and temperature

机译:通过在低温下通过水分裂的氢气产生Fe3O4颗粒:电力,磁场和温度的影响

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摘要

This paper aims to propose an innovative breakthrough methodology for hydrogen production through water splitting over Fe3O4 pellet at low temperature (T = 250 degrees C; 290 degrees C; 310 degrees C). In order to achieve this goal, the effects of magnetic field (B = 0 mT; 25.4 mT; 35.1 mT; 48.3 mT) and of electric power (P = 5 W; 12 W; 20 W) on reactive medium performance were investigated. Results show that production of hydrogen was mainly influenced by electric power applied and magnetic field, since the higher the magnetic field and the electric power the higher the production of hydrogen, while the temperature showed a secondary effect; however, feasible production of hydrogen was achieved at a temperature close to 300 degrees C.
机译:本文旨在提出一种在低温(T=250℃、290℃、310℃)下通过Fe3O4颗粒水裂解制氢的创新突破性方法。为了实现这一目标,研究了磁场(B=0 mT;25.4 mT;35.1 mT;48.3 mT)和电力(P=5 W;12 W;20 W)对无功介质性能的影响。结果表明,氢气的生成主要受施加的电力和磁场的影响,因为磁场和电力越高,氢气的生成量越高,而温度的影响则是次要的;然而,在接近300摄氏度的温度下实现了可行的氢气生产。

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