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80,000 current on/off cycles in a one year long steam electrolysis test with a solid oxide cell

机译:一年的固态电解槽蒸汽电解测试中有80,000个电流开/关周期

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The current ON/OFF switching of a solid oxide electrolysis cell is treated as elementary step for power variation in a steam electrolyses system. If the cell voltage in the ON mode is adjusted to the thermal neutral voltage, heat generation remains zero in both modes, which largely facilitates the thermal management. To verify whether the cells withstand the switching, an electrolysis durability test with an electrolyte supported solid oxide cell was performed during one year at about 850 degrees C. The cell consisted of a 3YSZ electrolyte, CGO diffusion-barrier/adhesion layers, a lanthanum strontium cobaltite ferrite (LSCF) oxygen electrode, and a nickel/gadolinia-doped ceria (Ni/GDC) steam/hydrogen electrode. The test included two operation blocks with each 40,000 cycles of 2 min duration and a current density of -0.7 Acm(-2) in the ON mode (-0.07 Acm-(2) in OFF mode), as well as steady-state ON periods with 5800 h duration. Voltage degradation was 5 mV/1000 h (0.4%/1000 h) and the increase in the area specific resistance 7 m Omega cm(2)/1000 h, without notable dependence on current cycling. Impedance spectroscopic results were in agreement with the only small switching transients seen in the cell voltage; moreover, they confirmed a dominating ohmic degradation together with minor contributions from gas conversion and reaction, respectively. No electrode delamination was detectable after scheduled test completion. (C) 2019 The Authors. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:固体氧化物电解池的电流开/关切换被视为蒸汽电解系统中功率变化的基本步骤。如果将“开”模式下的电池电压调节至热中性点电压,则两种模式下的发热量均保持为零,这极大地促进了热管理。为了验证电池是否能够承受切换,在一年内于约850摄氏度下使用电解质支持的固体氧化物电池进行了电解耐久性测试。该电池由3YSZ电解质,CGO扩散阻挡/粘附层,镧锶组成钴铁氧体(LSCF)氧电极和镍/ ga掺杂二氧化铈(Ni / GDC)蒸汽/氢电极。该测试包括两个操作模块,每个操作模块具有40,000个周期,每次持续2分钟,并且在ON模式下的电流密度为-0.7 Acm(-2)(在OFF模式下的电流密度为-0.07 Acm-(2)),以及稳态ON 5800小时的持续时间。电压降级为5 mV / 1000 h(0.4%/ 1000 h),面积电阻率增加7 m Omega cm(2)/ 1000 h,而无需明显依赖电流循环。阻抗谱结果与在电池电压中看到的仅有的很小的开关瞬变相一致。此外,他们证实了主要的欧姆降解以及气体转化和反应的微小贡献。预定的测试完成后,未检测到电极分层。 (C)2019作者。由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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