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Hydrogen production through methane-steam cyclic redox processes with iron-based metal oxides

机译:铁基金属氧化物通过甲烷-蒸汽循环氧化还原工艺制氢

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摘要

The redox performance of pure iron oxide (Fe2O3) and iron oxide modified with ceria (CeO2) and/or zirconia (ZrO2) as an oxygen carrier was investigated for hydrogen (H2) production through a methane-steam redox process. The addition of both CeO2 and ZrO2 were found to be a more effective modification of Fe2O3 than the addition CeO2 or ZrO2 alone. It was found that the reducibility of Fe2O3 was enhanced by CeO2 and the thermal stability of Fe2O3 was improved by ZrO2. These results, therefore, led to the conclusion of the syner-gistic effect in the Fe2O3-CeO2-ZrO2 mixed oxide. As a result, both the redox activity and the thermal stability were significantly improved, and increases in H2 yield and purity could be maintained by the modification. The redox temperature was found to have a significant effect on redox performance. The production of H2 was considerably improved when the redox temperature was increased from 650 to 750 "C. The ZrO2 concentration in Fe2O3-CeO2-ZrO2 mixed oxide samples was also found to influence performance with the highest H2 yield observed at a ZrO2 concentration of 75 wt.%. Although all materials tested showed a reduction in surface area in the first redox cycle, the change in surface area in subsequent cycles was found to be smaller and the yield of H2 could be maintained at a constant level over a longer period for the mixed oxide containing 75 wt.% ZrO2.
机译:通过甲烷-蒸汽氧化还原工艺,研究了纯氧化铁(Fe2O3)和氧化铈(CeO2)和/或氧化锆(ZrO2)修饰为氧载体的氧化铁对氢气(H2)的氧化还原性能。与单独添加CeO2或ZrO2相比,发现同时添加CeO2和ZrO2是对Fe2O3的更有效的改性。发现通过CeO 2增强了Fe 2 O 3的还原性,并且通过ZrO 2改善了Fe 2 O 3的热稳定性。因此,这些结果导致了Fe 2 O 3 -CeO 2 -ZrO 2混合氧化物中的协同作用的结论。结果,氧化还原活性和热稳定性均得到显着改善,并且通过改性可以保持H 2产率和纯度的增加。发现氧化还原温度对氧化还原性能具有显着影响。当氧化还原温度从650°C增加到750°C时,H2的产量得到了显着改善。Fe2O3-CeO2-ZrO2混合氧化物样品中的ZrO2浓度也会影响性能,在ZrO2浓度为75时观察到最高的H2产率尽管所有测试材料在第一个氧化还原循环中均显示出表面积减少,但发现随后循环中的表面积变化较小,并且在更长的时间内,H2的收率可以保持恒定水平。含有75重量%的ZrO 2的混合氧化物。

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