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PEMFC Application in a Gliding Arc Plasam-Catalysis Reforming System using Biogas

机译:PEMFC在利用沼气的电弧等离子体催化重整系统中的应用

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In this study, bio-waste gas is converted to sustainable hydrogen energy in good quality and low pollution. In addition, generated highly concentrated hydrogen is applied to fuel cell (PEMFC) to resolve environmental and energy crisis issue via gliding arc plasma system. Parameters that can affect the reforming performance of bio-gas in gliding arc plasma system were studied. Especially, the optimal operating condition in water gas shift reactor and preferential oxidation reactor for CO removal was proposed. For the parametric re-searches, change in steam feed amount and temperature change in catalyst bed in water gas shift reactor were studied. For the preferential oxidation reactor, air input flow rate change and temperature variation in catalyst bed were evaluated. The optimal operating conditions for gliding arc plasma reforming system are proposed as 6:4 of biogas component ratio (i.e., CHR4R:CO), 3 of steam/carbon ratio, 16 L/min of total gas flow rate, and 2.4 kW of input electric power. Where, the concentration of biogas that passed each reactor shows 57.5% of HR2R, 7 ppm of CO, 9.2% of COR2R, and 3.4% of CHR4R. Therefore, less than 10 ppm of CO is achieved, and this system can be applicable for PEMFC.
机译:在这项研究中,生物废气以良好的质量和低污染转化为可持续的氢能。此外,生成的高浓度氢气被应用到燃料电池(PEMFC),以通过滑动电弧等离子体系统解决环境和能源危机问题。研究了影响电弧等离子体系统中沼气重整性能的参数。特别提出了水煤气变换反应器和优先氧化反应器脱除CO的最佳操作条件。为了进行参数研究,研究了水煤气变换反应器中蒸汽进料量的变化和催化剂床层温度的变化。对于优先氧化反应器,评估了空气输入流量的变化和催化剂床层的温度变化。提出了滑弧等离子体重整系统的最佳操作条件,即沼气组分比(即CHR4R:CO)为6:4,蒸汽/碳比为3,总气体流速为16 L / min,输入功率为2.4 kW电力。其中,通过每个反应器的沼气浓度显示出57.5%的HR2R,7 ppm的CO,9.2%的COR2R和3.4%的CHR4R。因此,CO的含量小于10 ppm,该系统可用于PEMFC。

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