...
首页> 外文期刊>Journal of Materials Science >Cerium ion redox system in CeO2– x Fe2O3 solid solution at high temperatures (1,273–1,673 K) in the two-step water-splitting reaction for solar H2 generation
【24h】

Cerium ion redox system in CeO2– x Fe2O3 solid solution at high temperatures (1,273–1,673 K) in the two-step water-splitting reaction for solar H2 generation

机译:CeO 2 – x Fe 2 O 3 固溶体中铈离子氧化还原体系在高温下(1,273–1,673 K)分两步进行H 2 太阳能产生的水分解反应

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

CeO2–xFe2O3 (x = 0.026–0.214) solid solutions with different Ce:Fe mole ratios (Ce:Fe = 9.5:0.5–7.0:3.0) were prepared as reactive ceramics with the combustion method for solar hydrogen production. The prepared CeO2–xFe2O3 solid solutions were characterized by X-ray diffractometry, ICP atomic emission spectrometry, and Mössbauer spectroscopy. Two-step water-splitting reaction with the CeO2–xFe2O3 solid solution proceeded at 1,673 K for the O2-releasing reaction and at 1,273 K for the H2-generation reaction by irradiation of an infrared imaging lamp as a solar simulator. The amounts of H2 gas evolved in the H2-generation reaction with CeO2–xFe2O3 solid solutions were 0.97–1.8 cm3/g, the evolved H2/O2 ratio was approximately equal to 2 of the stoichiometric value. The amounts of H2 and O2 gases were independent of the Ce:Fe mole ratio in the CeO2–xFe2O3 solid solution. It was suggested that the O2-releasing and H2-generation reactions with the CeO2–xFe2O3 solid solution were repeated with the reduction and oxidation of Ce4+–Ce3+ enhanced by the presence of Fe3+–Fe2+.
机译:具有不同Ce:Fe摩尔比的CeO 2 –xFe 2 O 3 (x = 0.026–0.214)固溶体(Ce:Fe = 9.5 :0.5–7.0:3.0)作为反应性陶瓷,采用燃烧法生产太阳能氢。制备的CeO 2 –xFe 2 O 3 固溶体通过X射线衍射法,ICP原子发射光谱法和穆斯堡尔光谱法进行表征。对于O 2,与CeO 2 –xFe 2 O 3 固溶体的两步水分解反应在1,673 K下进行释放反应,并在1273 K下通过作为太阳模拟器的红外成像灯辐照产生H 2 反应。与CeO 2 –xFe 2 O <的H 2 生成反应中放出的H 2 气体量sub> 3 固溶体为0.97–1.8 cm 3 / g,析出的H 2 / O 2 比率大致相等到化学计量值的2。在CeO 2 –xFe 2 <中,H 2 和O 2 的气体量与Ce:Fe摩尔比无关/ sub> O 3 固溶体。有人认为与CeO 2 –xFe 2 发生O 2 释放和H 2 生成反应重复O 3 固溶体,并通过Fe 3的存在增强Ce 4 + –Ce 3 + 的还原和氧化+ –Fe 2 +

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