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首页> 外文期刊>International Journal of Greenhouse Gas Control >Processing and characterization of Fe-based oxygen carriers for chemical looping for hydrogen production
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Processing and characterization of Fe-based oxygen carriers for chemical looping for hydrogen production

机译:用于氢气生产化学环循环的Fe基氧载体的加工与表征

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Until now various oxygen carrier particles have been proposed for use in chemical looping processes. Their chemical performance is determined not only by their composition and their microstructure/morphology but also by the reaction condition of the processes in which they are utilized. In the present work, iron based oxygen carriers supported on Al2O3 and MgAl2O4 were spray dried and heat treated to have a suitable morphology and sufficient mechanical properties for chemical looping. The MgAl2O4-support was in situ generated from MgO and Al2O3 by reaction sintering. After physical characterization and determining their compressive strength the oxygen carriers were tested in the chemical looping reforming process for producing syngas in a lab-scale batch fluidized-bed reactor. The suitability of utilizing steam regeneration was investigated for both oxygen carriers by relating their chemical performance to their composition. It was shown that the Al2O3-supported oxygen carrier deactivated after 9 cycles of steam regeneration because of the accumulation of an in-situ formed FeAl2O4-phase due to an irreversible reaction between support and the active phase. This deactivation was successfully avoided by replacing the Al2O3-support with MgAl2O4. This Fe2O3/MgAl2O4 oxygen carrier could be subsequently regenerated by steam, making it suitable for chemical looping for hydrogen generation.
机译:到目前为止,已经提出了各种氧载体颗粒用于化学循环过程。它们的化学性能不仅通过它们的组成和微观结构/形态而不是通过使用它们的方法来确定。在本作本作的情况下,在Al 2 O 3和MgAl2O4上负载的基于铁的氧载体喷雾干燥并热处理以具有合适的形态和用于化学循环的足够的机械性能。 MgAl2O4 - 载体原位通过反应烧结从MgO和Al 2 O 3产生。在物理表征和确定它们的抗压强度之后,在化学循环重整过程中测试氧载体,用于在实验室批流化床反应器中生产合成气。通过将它们的化学性能与其组合物相关,研究了利用蒸汽再生的适用性。结果表明,由于在载体和活性相之间的不可逆反应,在蒸汽再生的9次循环后,Al 2 O 3负载的氧载体在蒸汽再生的循环之后停用。通过用MgAl2O4替换Al2O3支持来成功避免这种停用。该Fe 2 O 3 / MgAl2O4氧载体随后可以通过蒸汽再生,使其适用于氢气产生的化学环。

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