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Electrochemical behavior of surface treated metal bipolar plates used in passive direct methanol fuel cell

机译:被动式直接甲醇燃料电池用表面处理的金属双极板的电化学行为

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Corrosion resistance performance of SS316L treated by passivation solution was investigated in a simulated environment of the passive direct methanol fuel cell (DMFC). Electrochemical impedance spectroscopic (EIS) test showed that polarization resistance of untreated and treated SS316L were 1191 ft cm2 and 9335 ft cm2, respectively. The above result agreed with the Tafel slope analysis of potentiodynamic polarization curves. Comparing the untreated and treated SS316L in the simulated environment of DMFC anode working conditions, it was observed that the corrosion current density of treated SS316L as estimated by 4000 s potentiostatic test reduced from 38.7 μA cm~(-2) to 0.297 nA cm~(-2), meanwhile, the current densities of untreated and treated SS316L in cathode working conditions were 3.87 μA cm~(-2) and 0.223 μA cm~(-2), respectively. It indicated that the treated SS316L should be suitable in both anode and cathode environment of passive DMFCs. The treated SS316L bipolar plates have been assembled in a passive single fuel cell. A peak power density of 1.18 mW cm~(-2) was achieved with 1 M methanol at ambient temperature.
机译:在被动直接甲醇燃料电池(DMFC)的模拟环境中研究了用钝化溶液处理的SS316L的耐腐蚀性。电化学阻抗谱(EIS)测试表明,未处理和处理过的SS316L的极化电阻分别为1191 ft cm2和9335 ft cm2。以上结果与电位动力学极化曲线的塔菲尔斜率分析一致。在DMFC阳极工作条件的模拟环境中比较未处理的和已处理的SS316L,观察到通过4000 s恒电位测试估算的已处理SS316L的腐蚀电流密度从38.7μAcm〜(-2)降低至0.297 nA cm〜( -2),同时,未经处理和经过处理的SS316L在阴极工作条件下的电流密度分别为3.87μAcm〜(-2)和0.223μAcm〜(-2)。结果表明,经处理的SS316L应适合于无源DMFC的阳极和阴极环境。经过处理的SS316L双极板已组装在被动式单燃料电池中。在环境温度下用1 M甲醇达到1.18 mW cm〜(-2)的峰值功率密度。

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