首页> 外文期刊>Journal of Energy Storage >Steam as sweep gas in SOE oxygen electrode
【24h】

Steam as sweep gas in SOE oxygen electrode

机译:蒸汽作为SOE氧电极中的吹扫气

获取原文
获取原文并翻译 | 示例
           

摘要

The interest in producing hydrogen as energy storage medium for renewable electricity brought to the development to high efficient electrolyzers such as Solid Oxide Electrolyzer (SOE). Recent studies on SOEs focus mainly on the effect of the Hydrogen Electrode composition into performances varying the concentration of steam and hydrogen. This study investigates the Oxygen Electrode side where normally air is used as a sweep gas to flow pure oxygen, produced by SOE operation, out of the system. Water, in the form of steam, is proposed as an innovative sweep gas in oxygen electrode. The use of a different gas, such as steam, has the effect both of reducing oxygen concentration and changing thermodynamic local conditions of the SOE. Both phenomena influence electrochemical reaction and, consequently, cell voltage. At system level, this operation strategy allows to easily produce an oxygen flow as SOE by-product because no nitrogen in present in the oxygen electrode off gas and steam can be easily separated by condensation. Experimental study performed on a SOE single cell demonstrated that steam can be used in the oxygen electrode with the production of 100% oxygen on dry base. Negligible reduction of performance was measured and can be hardly distinguish from normal aging due to the test campaign. Open circuit voltage of 0.804 V and Area Specific Resistance of 0.582 Ω cm−2were obtained at 800 °C. The new concept was for the first time assessed on experimental base and opens new paths for system design and integration of SOE electrolyzer units.
机译:对产生氢作为可再生电力的能量存储介质的兴趣使诸如固体氧化物电解器(SOE)的高效电解器得到了发展。对国有企业的最新研究主要集中在氢电极成分对改变蒸汽和氢气浓度的性能的影响上。这项研究调查了氧气电极侧,通常将空气用作吹扫气,以将SOE操作产生的纯氧从系统中排出。提出了以蒸汽形式的水,作为氧气电极中的一种创新吹扫气体。使用不同的气体(例如蒸汽)具有降低氧气浓度和改变SOE的热力学局部条件的作用。两种现象都会影响电化学反应,进而影响电池电压。在系统级别,此操作策略允许轻松产生作为SOE副产品的氧气流,因为氧气电极废气和蒸汽中不存在任何氮,可以通过冷凝轻松分离出氮气。在SOE单电池上进行的实验研究表明,蒸汽可用于氧气电极,并在干基上产生100%的氧气。测得的性能下降可忽略不计,并且由于测试活动而无法与正常老化区分开。在800 C下获得0.804 V的开路电压和0.582Ωcm-2的面积比电阻。新概念首次在实验基础上进行了评估,为系统设计和SOE电解装置的集成开辟了新途径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号