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CO and CO2 methanation over M (M = Mn, Ce, Zr, Mg, K, Zn, or V)-promoted Ni/Al@Al2O3 catalysts

机译:CO和CO 2甲烷化甲烷化,M(m = Mn,Ce,Zr,Mg,K,Zn或V) - 丙氧化物Ni / Al @ Al2O3催化剂

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Effects of metal promoter on CO and CO2 methanation were examined over Ni-M (M = Mn, Ce, Zr, Mg, K, Zn, or V)/Al@Al2O3 catalysts prepared by the co-impregnation method. Ni-M (M = Mn, Ce, or Zr)/gamma-Al2O3 catalysts were also investigated for comparison. The prepared catalysts were characterized with a variety of techniques such as N-2 physisorption, CO2 chemisorption, H-2 chemisorption, temperature-programmed reduction with H-2 (H-2-TPR), temperature-programmed desorption of CO2 (CO2-TPD), X-ray diffraction (XRD), high-resolution transmission electron microscopy (HRTEM), X-ray photoelectron spectroscopy (XPS), and in-situ diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS). Among different promoters, Mn, Ce, Mg, V, and Zr are beneficial to enhance both CO and CO2 methanation activity due to the improvement of the Ni dispersion. The Ni-V/Al@Al2O3 catalyst performs the highest CO methanation activity due to the largest Ni sites. However, it is not the best one for CO2 methanation among tested catalysts because of the much decrease in CO2 adsorption capacity. The promotional effect of Mn is the most remarkable for both CO and CO2 methanation. On the other hand, the negative effect of K and Zn was observed on both CO and CO2 methanation by the small number of active Ni sites and the decrease in the amount of basic sites. The CO2 methanation mechanism over Ni-Mn/Al@Al2O3 catalyst is elucidated by the transform route: adsorbed carbonate species -formate species methane under hydrogenation process.
机译:通过共浸渍法制备的Ni-M(m = Mn,Ce,Zr,Mg,K,Zn或V)/ Al / k,Zn或v)/ Al / k,Zn或V)/ Al / k,Zn或V)/ Al-k,Zn或V)/ Al-an 2O3催化剂在CO和CO 2甲烷中对CO和CO 2甲烷化的影响。还研究了Ni-M(M = Mn,Ce或Zr)/γ-Al2O3催化剂进行比较。制备的催化剂以各种技术为特征,例如N-2理由,CO 2化学吸附,H-2化学吸附,与H-2(H-2-TPR)的温度编程降低,CO 2的温度编程解吸(CO2- TPD),X射线衍射(XRD),高分辨率透射电子显微镜(HRTEM),X射线光电子能谱(XPS)和原位漫射反射率红外傅里叶变换光谱(漂移)。在不同的启动子中,Mn,Ce,Mg,V和Zr有益于增强由于Ni分散体的改善而增强CO和CO 2甲烷化活性。 Ni-V / Al @ Al2O3催化剂由于最大的Ni位点而进行最高的CO甲烷化活性。然而,由于CO 2吸附能力的降低,它不是测试催化剂中的二氧化碳甲烷化的最佳选择。 Mn的促进作用对于CO和CO 2甲烷化是最显着的。另一方面,通过少量活性Ni位点和碱性位点的量减少,观察到K和Zn的负效应和CO 2甲烷化。通过转化途径阐明了Ni-Mn / Al @ Al 2 O 3催化剂上的CO 2甲烷化机制:在氢化过程中吸附的碳酸盐物质 - 甲烷物种甲烷。

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