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The Effect Of Fuel Composition And Temperature On The Interaction Of H_2s With Nickel-ceria Anodes For Solid Oxide Fuel Cells

机译:燃料组成和温度对固体氧化物燃料电池中H_2s与镍-铈阳极相互作用的影响

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The impact of H_2S on nickel-gadolinium-doped ceria (Ni-CGO) used as the anode for solid oxide fuel cells has been studied over a range of operating conditions using yttria-stabilised zirconia electrolytes. This included varying the partial pressure of H_2S and H_2 in the fuel mixture as well as the operating temperature. Electrochemical impedance measurements were made on symmetrical cells under each operating condition and compared with thermodynamic predictions of the state of the material as a function of operating condition. Increasing the H_2S concentration (1-3 ppm H_2S in moist H2) significantly increased the anode degradation. A decrease in H_2 content in the fuel (97-9.7% H_2) was found to increase the degree of sulphur interaction with the anodes. Lowering the operating temperature (873-830 K) showed an increase in the detrimental impact of sulphur on the anode. This experimental result was compared to thermodynamic predictions, which show the dependency of Ni-S interaction on pS2 and temperature as well as the effect of ceria-S interaction on pO_2 and pS_2. The consequence of this study shows that the interaction of sulphur with the anode is strongly dependent on gas composition and operating condition-suggesting that different parts of the anode can be degraded differently, stressing the importance of a well-designed gas flow field and temperature distribution management.
机译:在使用氧化钇稳定的氧化锆电解质的一系列操作条件下,已经研究了H_2S对用作固体氧化物燃料电池阳极的镍-掺杂二氧化铈(Ni-CGO)的影响。这包括改变燃料混合物中H_2S和H_2的分压以及工作温度。在每个操作条件下对对称电池进行电化学阻抗测量,并将其与根据操作条件对材料状态进行的热力学预测进行比较。增加H_2S浓度(在潮湿的H2中为1-3 ppm H_2S)会大大增加阳极的降解。发现燃料中H_2含量的减少(97-9.7%H_2)会增加硫与阳极的相互作用程度。降低操作温度(873-830 K)表明硫对阳极的有害影响增加。将该实验结果与热力学预测进行了比较,热力学预测显示了Ni-S相互作用对pS2和温度的依赖性以及二氧化铈-S相互作用对pO_2和pS_2的影响。这项研究的结果表明,硫与阳极的相互作用在很大程度上取决于气体成分和运行条件,这表明阳极的不同部分可以不同程度地降解,从而强调了设计合理的气体流场和温度分布的重要性管理。

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