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首页> 外文期刊>Journal of CO2 Utilization >FeO controls the sintering of iron-based oxygen carriers in chemical looping CO2 conversion
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FeO controls the sintering of iron-based oxygen carriers in chemical looping CO2 conversion

机译:FEO控制化学环路CO2转换中铁基氧携带者的烧结

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Enhancement of sintering resistance is key to the application of iron-based oxygen carriers in chemical looping CO2 conversion processes. This drives research to seek the origin of iron oxide sintering during redox cycling. Herein, we explored it by using a Fe2O3 material on a stable ZrO2 support, based on a thermodynamic analysis and time-resolved in-situ X-ray diffraction characterization. Sintering of iron oxide particles originates from the formation of FeO as intermediate during reduction. A prolonged FeO presence leads to more severe sintering. Although quite counter-intuitive, increasing the reaction temperature can mitigate sintering as it shortens the transition time between FeO and Fe phases. These findings provide important insight for the rational design of iron-based oxygen carriers, as well as for the optimization of operating conditions to resist sintering in chemical looping processes.
机译:增强烧结抗性是施加铁基氧载体在化学环路的CO2转化过程中的关键。 这驱使研究在氧化还原循环期间寻求氧化铁烧结的起源。 在此,我们通过在稳定的ZrO2支持上使用Fe2O3材料来探讨它,基于热力学分析和时间分辨地原位X射线衍射特征。 氧化铁颗粒的烧结源自在还原过程中形成Feo作为中间体。 延长的Feo存在导致更严重的烧结。 虽然非常反向直观,但增加反应温度可以减轻烧结,因为它缩短了FeO和Fe阶段之间的过渡时间。 这些调查结果为铁基氧携带者的合理设计提供了重要的见解,以及优化操作条件以抵抗化学循环过程中的烧结。

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