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首页> 外文期刊>ACS catalysis >Role Of CO2 As a Soft Oxidant For Dehydrogenation of Ethylbenzene to Styrene over a High-Surface-Area Ceria Catalyst
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Role Of CO2 As a Soft Oxidant For Dehydrogenation of Ethylbenzene to Styrene over a High-Surface-Area Ceria Catalyst

机译:CO 2作为乙苯脱氢在高度面积的CERIA催化剂上脱氢到乙苯脱氢的软氧化剂

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Catalytic performance and the nature of surface adsorbates were investigated for high-surface-area ceria during the ethylbenzene oxidative dehydrogenation (ODH) reaction using CO2 as a soft oxidant. The high surface area ceria material was synthesized using a template-assisted method. The interactions among ethylbenzene, styrene, and CO2 on the surface of ceria and the role of CO2 for the ethylbenzene ODH reaction have been investigated in detail by using activity test, in situ diffuse reflectance infrared and Raman spectroscopy. CO2 as an oxidant not only favored the higher yield of styrene but also inhibited the deposition of coke during the ethylbenzene ODH reaction. Ethylbenzene ODH reaction over ceria followed a two-step pathway: ethylbenzene is first dehydrogenated to styrene with H2 formed simultaneously, and then CO2 reacts with H2 via the reverse water gas shift. The produced styrene can easily undergo polymerization to form polystyrene, which is a key intermediate for coke formation. In the absence of CO2, the produced polystyrene transforms into graphite-like coke at temperatures above 500 °C, which leads to catalyst deactivation. In the presence of CO2, the coke deposition can be effectively removed via oxidation with CO2.
机译:在使用CO 2作为软氧化剂的乙基苯氧化脱氢(ODH)反应期间研究了高表面积二氧化铈的催化性能和表面吸附剂的性质。使用模板辅助方法合成高表面积二氧化铈材料。通过使用活性试验,在原位漫反射率红外和拉曼光谱法中详细研究了乙苯,苯乙烯和CO 2对乙苯ODH反应的二氧化碳反应的作用的相互作用。二氧化碳作为氧化剂不仅有利于苯乙烯的产率高,而且还抑制了乙苯ODH反应过程中焦炭的沉积。乙苯ODH在二氧化铈上反应,然后是两步途径:乙苯首先与同时形成的H 2脱氢至苯乙烯,然后CO 2通过反向水气体转移与H 2反应。所生产的苯乙烯可以容易地进行聚合以形成聚苯乙烯,这是焦炭形成的关键中间体。在没有CO 2的情况下,所产生的聚苯乙烯在高于500℃的温度下变成石墨状焦炭,这导致催化剂失活。在CO 2的存在下,可以通过用CO 2氧化有效地除去焦沉积。

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