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Fischer-Tropsch synthesis by reduced graphene oxide nanosheets supported cobalt catalysts: role of support and metal nanoparticle size on catalyst activity and products selectivity

机译:富含石墨烯氧化物纳米片的Fischer-Tropsch合成支持的钴催化剂:载体和金属纳米粒子尺寸对催化剂活性和产品选择性的作用

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摘要

In this paper,a series of cobalt catalysts supported on reduced graphene oxide(rGO)nanosheets with the loading of 5,15 and 30 wt-%were provided by the impregnation method.The activity of the prepared catalysts is evaluated in the Fischer-Tropsch synthesis(FTS).The prepared catalysts were carefully characterized by nitrogen adsorption-desorption,hydrogen chemisorption,X-ray diffraction,Fourier transform infrared spectroscopy,Raman spectroscopy,temperature programmed reduction,transmission electron microscopy,and field emission scanning electron microscopy techniques to confirm that cobalt particles were greatly dispersed on the rGO nanosheets.The results showed that with increasing the cobalt loading on the rGO support,the carbon defects are increased and as a consequence,the reduction of cobalt is decreased.The FTS activity results showed that the cobalt-time yield and turnover frequency passed from a maximum for catalyst with the Co0 average particle size of 15 nm due to the synergetic effect of cobalt reducibility and particle size.The products selectivity results indicated that the methane selectivity decreases,whereas the C5+selectivity raises with the increasing of the cobalt particle size,which can be explained by chain propagation in the primary chain growth reactions.
机译:本文通过浸渍方法提供了一系列负载在10,15和30重量%的石墨烯氧化物(RGO)纳米片上负载的一系列钴催化剂。制备催化剂的活性在Fischer-Tropsch中评价合成(FTS)。通过氮吸附 - 解吸,氢化学吸附,X射线衍射,傅里叶变换红外光谱,拉曼光谱,温度编程,透射电子显微镜和现场发射扫描电子显微镜技术进行粗催化剂的特征。钴颗粒大大分散在RGO纳米蛋白酶上。结果表明,随着RGO载体上的钴载荷的增加,碳缺陷增加,因此,钴的还原结果表明FTS活性结果显示钴 - 由于Synergeti,从最大催化剂的催化剂的最大催化剂和周转频率从最大催化剂流过15nm C钴还原性和粒径的影响。产品选择性结果表明甲烷选择性降低,而C5 +选择性随着钴粒径的增加而提高,这可以通过主要链生长反应中的链繁殖来解释。

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