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A highly selective and stable ZnO-ZrO2 solid solution catalyst for CO2 hydrogenation to methanol

机译:一种高选择性和稳定的ZnO-ZrO2固溶催化剂,用于CO2加氢为甲醇

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Although methanol synthesis via CO hydrogenation has been industrialized, CO2 hydrogenation to methanol still confronts great obstacles of low methanol selectivity and poor stability, particularly for supported metal catalysts under industrial conditions. We report a binary metal oxide, ZnO-ZrO2 solid solution catalyst, which can achieve methanol selectivity of up to 86 to 91% with CO2 single-pass conversion of more than 10% under reaction conditions of 5.0 MPa, 24,000 ml/(g hour), H2/CO2 = 3:1 to 4:1, 320° to 315°C. Experimental and theoretical results indicate that the synergetic effect between Zn and Zr sites results in the excellent performance. The ZnO-ZrO2 solid solution catalyst shows high stability for at least 500 hours on stream and is also resistant to sintering at higher temperatures. Moreover, no deactivation is observed in the presence of 50 ppm SO2 or H2S in the reaction stream.
机译:尽管通过CO加氢合成甲醇已经工业化,但是CO 2 加氢制甲醇仍面临甲醇选择性低和稳定性差的巨大障碍,特别是对于工业条件下的负载型金属催化剂而言。我们报道了一种二元金属氧化物ZnO-ZrO 2 固溶体催化剂,在CO 2 单程转化率更高的情况下,甲醇选择性可达86-91%。在5.0 MPa,24,000 ml /(g·小时),H 2 / CO 2 = 3:1至4:1、320°至315的反应条件下,低于10% ℃。实验和理论结果表明,Zn和Zr位点之间的协同作用导致了优异的性能。 ZnO-ZrO 2 固溶体催化剂在运行中至少可显示500个小时的高稳定性,并且在高温下也具有抗烧结性。此外,在反应物流中存在50 ppm SO 2 或H 2 S时,未观察到失活。

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