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High Nitrogen Stainless Steel As Bipolar Plates For Proton Exchange Membrane Fuel Cells

机译:高氮不锈钢作为质子交换膜燃料电池的双极板

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To investigate the applicability of high nitrogen (HN) austenitic stainless steel as bipolar plates for proton exchange membrane fuel cells (PEFCs), the polarization tests were carried out in synthetic solutions (0.05 M SO_4~(2-) (pHs 2.3,4.3 and 5.5) +2 ppm F~-) at 353 K. Interfacial contact resistance between the stainless steel and gas diffusion layer was measured before and after polarization. A single cell employing the HN stainless steel as bipolar plates was operated for 1000h at 0.5A cm~(-2) (12.5 A). The single cell exhibited voltage drop of 17 mV during the operation. Corrosion products were scarcely detected for the HN stainless steel bipolar plate, as confirmed by scanning electron microscopy. After the polarization tests and single cell operation, XPS analyses were carried out to examine the resulting surface states. In the synthetic solutions to pH 4.3, the passive films mainly consisted of oxides enriched with Cr. When the solution pH was 5.5, on the other hand, the films were mainly composed of Fe-oxides. After the single cell operation for 1000 h, it was found that the passive films of the rib surface for the gas inlet part was mainly composed by Fe-oxides. On the other hand, the passive films for the ribs from center to gas outlet part were mainly made up of Cr-oxides. By combining the simulated and real operation environments, it is believed that the corrosion resistive Cr-oxides passive layer of the HN stainless steel obtained by the presence of nitrogen incorporated into the stainless steel could contribute to the maintenance of the higher cell voltage during the extensive cell operation.
机译:为了研究高氮(HN)奥氏体不锈钢作为质子交换膜燃料电池(PEFC)的双极板的适用性,在合成溶液(0.05 M SO_4〜(2-)(pHs 2.3、4.3和在353 K时为5.5)+2 ppm F〜-)。在极化之前和之后测量不锈钢与气体扩散层之间的界面接触电阻。将采用HN不锈钢作为双极板的单电池在0.5A cm〜(-2)(12.5 A)下运行1000h。在运行期间,单个电池的电压降为17 mV。通过扫描电子显微镜证实,几乎没有检测到HN不锈钢双极板的腐蚀产物。在极化测试和单电池操作之后,进行XPS分析以检查所得的表面状态。在pH值为4.3的合成溶液中,钝化膜主要由富含Cr的氧化物组成。另一方面,当溶液的pH为5.5时,膜主要由Fe-氧化物组成。在单电池运行1000小时后,发现进气口肋表面的钝化膜主要由Fe氧化物组成。另一方面,从中心到出气口的肋的钝化膜主要由氧化铬构成。通过结合模拟和实际操作环境,可以认为通过在不锈钢中掺入氮而获得的HN不锈钢的耐腐蚀Cr-氧化物钝化层可有助于在高温下维持较高的电池电压。单元操作。

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