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Hydrogen production from dimethyl ether using corona discharge plasma

机译:使用电晕放电等离子体由二甲醚制氢

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Dimethyl ether (DME), with its non-toxic character, high H/C ratio and high-energy volumetric density, is an ideal resource for hydrogen production. In this work, hydrogen production from the decomposition of DME using corona discharge has been studied. The corona discharge plasma decomposition was conducted at ambient conditions. The effects of dilution gas (argon), flow rate, frequency and waveforms on the DME decomposition were investigated. The addition of dilution gas can significantly increase the hydrogen production rate. The highest hydrogen production rate with the lowest energy consumption presents at the flow rate of 27.5 Nml min~(-1). AC voltage is more favored than DC voltage for the production of hydrogen with less energy input. The optimal frequency is 2.0 kHz. The hydrogen production rate is also affected by the input waveform and decreases as following: sinusoid triangular > sinusoid > ramp > square, whereas the sinusoid waveform shows the highest energy efficiency. The corona discharge decomposition of DME is leading to a simple, easy and convenient hydrogen production with no needs of catalyst and external heating.
机译:二甲醚(DME)具有无毒,高H / C比和高能量体积密度的特性,是制氢的理想资源。在这项工作中,已经研究了使用电晕放电由DME分解产生的氢气。电晕放电等离子体分解在环境条件下进行。研究了稀释气体(氩气),流速,频率和波形对二甲醚分解的影响。添加稀释气体可以显着提高氢气产生速率。制氢量最高,能耗最低,流速为27.5 Nml min〜(-1)。交流电压比直流电压更受青睐,因为它能以较少的能量输入生产氢气。最佳频率为2.0 kHz。氢气的产生速率也受输入波形的影响,并按以下方式降低:正弦波三角形>正弦波>斜坡>正方形,而正弦波波形显示出最高的能量效率。 DME的电晕放电分解可导致简单,轻松和便捷的制氢,而无需催化剂和外部加热。

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