首页> 外文期刊>Energy & fuels >Evaluation of the Redox Performance and Characterization of Fe_2O_3/ CeO_2/ZrO_2 Oxygen Carriers under High Temperature in Situ Gasification Chemical-Looping Combustion Conditions
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Evaluation of the Redox Performance and Characterization of Fe_2O_3/ CeO_2/ZrO_2 Oxygen Carriers under High Temperature in Situ Gasification Chemical-Looping Combustion Conditions

机译:原位气化化学循环燃烧条件下Fe_2O_3 / CeO_2 / ZrO_2载氧体的氧化还原性能及表征

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摘要

Iron-based oxygen carriers with a CeO2 support have interesting redox applications in chemical-looping combustion (CLC). CeO2 behaves as an active support for many oxygen carrier applications because of the reversible release of lattice oxygen. High temperature processes may lead to improved process efficiency; however, the poor thermal stability of CeO2 gives rise to a need for oxygen carriers that can resist sintering and agglomeration and maintain reactivity after multiple reduction and oxidation (redox) cycles during in situ gasification chemical-looping combustion (iG-CLC) at 1100 degrees C. In the present study, Fe-based oxygen carriers on CeO2, ZrO2, and Ce0.75Zr0.25O2 supports were prepared by a coprecipitation method. The redox stability, reactivity, and sintering of the oxygen carriers were evaluated to investigate the effect of the CeO2-ZrO2 solid solution support. The oxygen transport capability was evaluated in a drop tube fixed-bed reactor under iG-CLC conditions with coal char at 1100 degrees C for 10 redox cycles. The CeO2-ZrO2 solid solution improved the oxygen mobility of the support from the creation of more oxygen defects. The Fe-Ce oxygen carrier had the highest oxygen transport capability because of the formation of cerium orthoferrite (CeFeO3) during high temperature reduction. The Fe-Ce-Zr oxygen carrier showed improved reactivity over the Fe-Ce oxygen carrier as the number of redox cycles increased. The oxygen carriers, before and after multiple redox cycles, were characterized by X-ray diffraction, scanning electron microscopy, and surface/pore analysis.
机译:具有CeO2载体的铁基氧载体在化学循环燃烧(CLC)中具有有趣的氧化还原应用。由于晶格氧的可逆释放,CeO2充当了许多氧气载体应用的活性载体。高温过程可能会提高过程效率;但是,CeO2的热稳定性差,因此需要氧气载体,该氧气载体在1100度原位气化化学循环燃烧(iG-CLC)的过程中,经过多次还原和氧化(redox)循环后,可以抵抗烧结和团聚并保持反应性C.在本研究中,通过共沉淀法制备了CeO2,ZrO2和Ce0.75Zr0.25O2载体上的铁基氧载体。评价氧载体的氧化还原稳定性,反应性和烧结,以研究CeO2-ZrO2固溶体载体的作用。在iG-CLC条件下,在滴管固定床反应器中,在1100摄氏度的煤焦条件下进行10次氧化还原循环,评估了氧气的输送能力。 CeO2-ZrO2固溶体由于产生更多的氧缺陷而改善了载体的氧迁移率。 Fe-Ce氧载体具有最高的氧传输能力,这是因为在高温还原过程中会形成铈铁氧体(CeFeO3)。随着氧化还原循环次数的增加,Fe-Ce-Zr氧载体显示出比Fe-Ce氧载体更高的反应性。通过X射线衍射,扫描电子显微镜和表面/孔分析来表征在多个氧化还原循环之前和之后的氧载体。

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  • 来源
    《Energy & fuels》 |2020年第1期|871-878|共8页
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  • 作者单位

    Natl Energy Technol Lab 626 Cochrans Mill Rd POB 10940 Pittsburgh PA 15236 USA|Leidos Res Support Team 626 Cochrans Mill Rd POB 10940 Pittsburgh PA 15236 USA;

    Natl Energy Technol Lab 626 Cochrans Mill Rd POB 10940 Pittsburgh PA 15236 USA;

    Natl Energy Technol Lab 3610 Collins Ferry Rd Morgantown WV 26507 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 05:21:36

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