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首页> 外文期刊>Chemical engineering journal >Ternary composite oxide catalysts CuO/Co3O4-CeO2 with wide temperature-window for the preferential oxidation of CO in H2-rich stream
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Ternary composite oxide catalysts CuO/Co3O4-CeO2 with wide temperature-window for the preferential oxidation of CO in H2-rich stream

机译:具有宽温度范围的三元复合氧化物催化剂CuO / Co3O4-CeO2用于富H2物流中CO的优先氧化

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摘要

A series of ternary composite oxide catalysts CuO/Co3O4-CeO2 with variable Ce/(Co + Ce) atomic ratios were prepared and employed for the preferential oxidation of CO (CO PROX). Many techniques such as N2-sorption, XRD, H2-TPR, O2-TPO, CO-TPD, O2-TPD, Cu K-edge XAFS (including EXAFS and XANES) and in situ DRIFTS were used for catalyst characterization. The catalyst CuO/Co3O4-CeO2 with Ce/(Ce + Co) ratio of 0.1 exhibits the best performance, showing not only the lowest temperature for the complete oxidation of CO (98 °C), but also the broadest operating temperature window for full CO conversion (98-173 °C). The results of N2-sorption and temperature-programmed characterizations including H2-TPR, O2-TPO, CO-TPD and O2-TPD show that the CuCoCelO catalyst possesses the highest BET surface area, the best reducibility/oxidizability and the best performance for CO and O2 adsorption. Linear combination fitting of Cu K-edge XANES spectra reveals that multiple Cu species including Cu~0, Cu~+ and Cu~(2+) species co-exist in the spent catalyst CuCoCe10. Stable Cu~+ carbonyl species are identified as the main active reaction intermediates as revealed by in situ DRIFTS. High temperature (>120°C) can lead to the reduction of Cu~+ to Cu~0, enhancing H2 oxidation; as a result, the selectivity of O2 towards CO2 is decreased. Based upon in situ DRIFTS results, a potential CO PROX mechanism over CuO/Co3O4-CeO2 catalysts is proposed.
机译:制备了一系列具有可变Ce /(Co + Ce)原子比的三元复合氧化物催化剂CuO / Co3O4-CeO2,并将其用于CO的优先氧化(CO PROX)。许多技术(例如N2吸附,XRD,H2-TPR,O2-TPO,CO-TPD,O2-TPD,Cu K-edge XAFS(包括EXAFS和XANES)和原位DRIFTS)用于催化剂表征。 Ce /(Ce + Co)比为0.1的催化剂CuO / Co3O4-CeO2表现出最好的性能,不仅显示出用于CO完全氧化的最低温度(98°C),而且显示了最大的运行温度范围。一氧化碳转化率(98-173°C)。 N2-吸附和H2-TPR,O2-TPO,CO-TPD和O2-TPD的程序升温表征结果表明,CuCoCelO催化剂具有最高的BET表面积,最佳的还原性/氧化性和最佳的CO性能和氧气的吸附。 Cu K-edge XANES光谱的线性组合拟合表明,在废催化剂CuCoCe10中共存在多种Cu物种,包括Cu〜0,Cu〜+和Cu〜(2+)物种。如原位DRIFTS所示,稳定的Cu +羰基物质被确定为主要的活性反应中间体。高温(> 120°C)会导致Cu〜+还原为Cu〜0,从而增强H2的氧化。结果,降低了O 2对CO 2的选择性。基于原位DRIFTS结果,提出了在CuO / Co3O4-CeO2催化剂上潜在的CO PROX机理。

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