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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Partial oxidation of methane over monometallic and bimetallic Ni-, Rh-, Re-based catalysts: Effects of Re addition, co-fed reactants and catalyst support
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Partial oxidation of methane over monometallic and bimetallic Ni-, Rh-, Re-based catalysts: Effects of Re addition, co-fed reactants and catalyst support

机译:单金属和双金属Ni-,RH-,RH-,基于RH-,RH-,基于RH的部分氧化的部分氧化:再加成,共喂反应物和催化剂载体的作用

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Partial oxidation reactions of CH4 over monometallic Ni, Rh, Re and bimetallic Re-Ni catalysts supported by Al2O3 were studied at 400-700 degrees C. Among monometallic catalysts, Rh/Al2O3 exhibited the highest catalytic activity. Lower CH4 conversion and H-2 yield were observed over Ni/Al2O3 catalyst, while Re/Al2O3 catalyst did not promote the reaction under the studied condition. Addition of Re over Ni to form a bimetallic catalyst considerably promoted the activity of Ni/Al2O3 catalyst, particularly at a higher temperature (600 degrees C). Re-Ni proportion was then optimized; Re-Ni/Al2O3 at Re:Ni ratio of 3:7 resulted in a significantly higher CH4 conversion as well as H-2 and CO yields when compared to noble-metal Rh/Al2O3 catalyst. Stability testing of Re-Ni/Al2O3, Ni/Al2O3 and Rh/Al2O3 catalysts was also conducted. After 18-h operation, Re-Ni/Al2O3 catalyst still exhibited high stability with slight deactivation in terms of H-2 yield, whereas Ni/Al2O3 and Rh/Al2O3 catalysts showed higher deactivation rates. Post -reaction temperature programmed oxidation confirmed the better resistance toward carbon deposition of Re-Ni/Al2O3 catalyst. The effect of steam and CO2 addition on the Re-Nil Al(2)O(3)catalyst performance was also investigated. The presence of a suitable H2O content could increase H-2 and CO yields and reduce the amount of carbon deposition, whereas the presence of CO2 showed undesirable influence on the reaction by reducing CH4 conversion and H-2/CO ratio. Lastly, Re-Ni/Gd-CeO2 catalyst was prepared and tested to study the effect of catalyst support. The catalyst stability and resistance toward carbon deposition were significantly improved, which could be due to the high oxygen storage capacity of Gd-CeO2.
机译:在400-700℃下,研究了Al 2 O 3支持的CH4的部分氧化反应。在400-700℃下,在单金属催化剂中,rH / Al 2 O 3在100-700℃下进行了最高的催化活性。在Ni / Al 2 O 3催化剂上观察到较低的CH 4转化和H-2产率,而RE / Al 2 O 3催化剂在研究条件下没有促进反应。通过Ni加入RE以形成双金属催化剂,显着促进了Ni / Al 2 O 3催化剂的活性,特别是在更高的温度(600℃)。然后优化Re-Ni比例; Re-Ni / Al 2 O 3在Re:Ni比为3:7,与贵金属Rh / Al 2 O 3催化剂相比,CH 4转化率明显高,H-2和CO屈服。还进行了RE-NI / AL2O3,Ni / Al 2 O 3和RH / Al 2 O 3催化剂的稳定性测试。在18-H操作后,RE-Ni / Al 2 O 3催化剂仍然在H-2产率方面表现出高稳定性,而Ni / Al 2 O 3和Rh / Al 2 O 3催化剂表现出更高的失活率。后施加温度编程氧化证实了RE-Ni / Al2O3催化剂的碳沉积较好的抗性。还研究了蒸汽和CO2加入的蒸汽和CO2的作用也研究了催化剂性能。合适的H 2 O含量的存在可以增加H-2和CO产生并降低碳沉积的量,而CO 2的存在通过降低CH 4转化率和H-2 / CO比对反应产生了不希望的影响。最后,制备并测试Re-Ni / Gd-CeO2催化剂以研究催化剂载体的作用。催化剂稳定性和抗碳沉积的耐药性显着提高,这可能是由于GD-CeO2的高氧气储存能力。

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