首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Catalytic Activity and Stability of Nickel-Modified Molybdenum Carbide Catalysts for Steam Reforming of Methanol
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Catalytic Activity and Stability of Nickel-Modified Molybdenum Carbide Catalysts for Steam Reforming of Methanol

机译:镍改性碳化钼催化剂对甲醇蒸汽重整的催化活性和稳定性

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Molybdenum carbides were modified by nickel with different doping amounts by using a temperature-programmed reaction (TPRe) process and used for steam reforming of methanol (SRM) XRD analysis results indicated that the β-Mo2C phase was easily formed in Ni-modified carbide samples. The doping amount of Ni had great effect not only on the activity of the molybdenum carbide catalyst, but also on the catalyst stability For relatively lower Ni doping amounts, l e, N1/Mo molar ratio = 0.8/99.2 to 2 4/97 6, the catalysts exhibited almost the same methanol conversion m the reaction temperature range Meanwhile, when the Ni/Mo molar ratio was over 5/95, the catalytic activity was decreased greatly Furthermore, N1— Mo2C with Ni/Mo molar ratios of 1.6/98.4 and 2.4/97 6 showed longer term stability than other samples Compared with the pure yS-Mo2C and other iron group element modified carbide samples, the Ni-modified one showed higher catalytic activity and stability. The fresh and spent catalysts were characterized by XRD, XPS, BET, and TEM and it is found that the resistance to the oxidation of molybdenum carbide and carbon deposition could be enhanced by the loading of Ni with low amounts.
机译:通过程序升温反应(TPRe)工艺以不同掺杂量的镍对碳化钼进行改性,并将其用于甲醇的蒸汽重整(SRM)XRD分析结果表明,镍改性的碳化物样品中容易形成β-Mo2C相。 Ni的掺杂量不仅对碳化钼催化剂的活性有很大的影响,而且对催化剂的稳定性也有很大的影响。相对较低的Ni掺杂量,le,N1 / Mo摩尔比= 0.8 / 99.2〜2 4/97 6。在反应温度范围内,催化剂的甲醇转化率基本相同。同时,当Ni / Mo摩尔比超过5/95时,催化活性大大降低。此外,N1-Mo2C的Ni / Mo摩尔比为1.6 / 98.4, 2.4 / 97 6具有比其他样品更长的长期稳定性。与纯yS-Mo2C和其他铁族元素改性的碳化物样品相比,Ni改性的样品显示出更高的催化活性和稳定性。通过XRD,XPS,BET和TEM对新鲜催化剂和废催化剂进行了表征,发现可以通过少量添加Ni来增强对碳化钼的抗氧化性和碳沉积性。

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