首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Degradation and regeneration of copper-iron spinel and zeolite composite catalysts in steam reforming of dimethyl ether
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Degradation and regeneration of copper-iron spinel and zeolite composite catalysts in steam reforming of dimethyl ether

机译:铜-铁尖晶石和沸石复合催化剂在二甲醚蒸汽重整中的降解和再生

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摘要

The degradation and regeneration behaviors of some composite catalysts of ZSM-5 zeolite and Cu-Fe spinel in steam reforming of dimethyl ether (DME) were systematically studied in various conditions. The degradation of the catalyst could be inhibited by increasing the steam-to-DME ratio and/or lowering the gas hourly space velocity and the reforming temperature. A higher mixing ratio of Cu-Fe spinel to ZSM-5 could also prolong the life of the composite catalysts. The catalyst deactivation was attributable mainly to the carbon deposition in the reaction temperature range of 250-310 °C. The regeneration treatment in air at 500-700 °C could not only recover the catalytic performance of the degraded catalysts as compared with the fresh catalyst, but could also improve it. We confirmed that the promoting effect of the heat treatment in air was due to the high redispersion of metallic Cu via the re-construction of Cu-Fe spinel as well to as the removal of carbon deposit by burning; the acid property changes over zeolite catalyst were suggested to contribute to the improvement as well.
机译:在各种条件下,系统研究了ZSM-5沸石和Cu-Fe尖晶石复合催化剂在二甲醚(DME)蒸汽重整中的降解和再生行为。催化剂的降解可以通过增加蒸汽与DME的比率和/或降低气体时空速度和重整温度来抑制。 Cu-Fe尖晶石与ZSM-5的较高混合比也可以延长复合催化剂的寿命。催化剂失活主要归因于在250-310℃的反应温度范围内的碳沉积。与新鲜催化剂相比,在500-700°C的空气中进行再生处理不仅可以恢复降解催化剂的催化性能,而且还可以对其进行改进。我们证实了在空气中进行热处理的促进作用是由于金属铜通过铜-铁尖晶石的重构而高度分散,以及通过燃烧除去了碳沉积物。有人建议改变沸石催化剂的酸性质也有助于改进。

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