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Hydrogen production from partial oxidation of dimethyl ether using corona discharge plasma

机译:使用电晕放电等离子体由二甲醚部分氧化制氢

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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. This work presents a hydrogen production from partial oxidation of DME using corona discharge plasma performed at ambient conditions. The partial oxidation can avoid the undesired carbon deposit existing in the decomposition of DME and a stable operation has been obtained. The carbon deposit is completely avoided when the O_2/DME ratio is 1.05. Partial oxidation can also greatly improve the conversion rate and energy efficiency. The optimal O_2/DME ratio is 1.38, with which the rate of H_2 production is 1.33 times higher and the energy efficiency is 1.72 times higher than that of DME decomposition. The higher O_2/DME ratio results in complete oxidation and reduces the rate of H_2 production. AC plasma is more efficient than the DC plasma and the optimum frequency is 2 kHz. The order of desired waveform is: sinusoid > sinusoid triangular > square > ramp.
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。这项工作提出了使用在环境条件下进行的电晕放电等离子体,由DME的部分氧化产生的氢气。部分氧化可以避免在DME的分解中存在不希望的碳沉积,并且已经获得了稳定的操作。当O_2 / DME比为1.05时,可以完全避免积碳。部分氧化还可以大大提高转化率和能源效率。最佳的O_2 / DME比为1.38,与DME分解相比,H_2的产率高1.33倍,能量效率高1.72倍。较高的O_2 / DME比会导致完全氧化,并降低H_2的产生速率。 AC等离子体比DC等离子体更有效率,最佳频率为2 kHz。所需波形的顺序为:正弦波>正弦波三角波>正方形>斜坡。

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