An exploration of the solution of direct methanol fuel cell cost effectiveness

Tengyi Wang, Zhiwei Luo, Changsheng Wang, Yang Li, Xi Chen, Yang Tang, Xinsheng Wang, Zhiquan Zhou
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Abstract

The work in this paper incorporated printed circuit board (PCB) technology into micro-direct methanol fuel cells (µDMFCs) and conjectured and verified the performance degradation factors of PCB current collectors in µDMFCs by testing different designed configuration µDMFCs. The experiment results showed that all kinds of PCB coating can benefit from the porous stainless-steel plates covering to a great extent. At the end of 48 h discharging, µDMFCs with porous stainless-steel plates between MEA and PCB coating achieved higher performance than those of the direct contacting series. It can be inferred from various types of experimental data that because of stainless-steel porous plate isolating, the impact of corrosion on the surface of the PCB electrode plate was reduced to a certain extent. The corrosion of the electrode plate was slowed down in the µDMFC discharging as a result of the passivation behavior on the iron surface and a decrease in corrosion current. Consequently, the attenuation of the PCB performance was delayed. The conclusion of this work explores a practical direction to enhance the cost-effectiveness of fuel cells, promoting the large-scale application of DMFCs in the future.
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直接甲醇燃料电池成本效益解决方案探讨
本文将印刷电路板(PCB)技术融入到微型直接甲醇燃料电池(µDMFC)中,并通过测试不同设计配置的 µDMFC 来推测和验证 PCB 集流器在 µDMFC 中的性能衰减因素。实验结果表明,多孔不锈钢板覆盖的各种多氯联苯涂层都能在很大程度上受益。放电 48 小时后,在 MEA 和 PCB 涂层之间覆盖多孔不锈钢板的 µDMFC 比直接接触系列的 µDMFC 性能更高。从各类实验数据中可以推断出,由于不锈钢多孔板的隔离作用,在一定程度上减少了腐蚀对 PCB 电极板表面的影响。在 µDMFC 放电过程中,由于铁表面的钝化行为和腐蚀电流的减少,电极板的腐蚀速度减慢。因此,PCB 性能的衰减被推迟了。这项工作的结论为提高燃料电池的成本效益探索了一个切实可行的方向,促进了 DMFC 在未来的大规模应用。
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