Saab Roba, Polychronopoulou Kyriaki, Anjum Dalaver H, Charisiou Nikolaos, Goula Maria A, Hinder Steven J, Baker Mark A, Schiffer Andreas
Department of Mechanical Engineering, Khalifa University of Science and Technology, Abu Dhabi 127788, United Arab Emirates.
Center for Catalysis and Separations, Khalifa University of Science and Technology, Abu Dhabi 127788, United Arab Emirates.
Nanomaterials (Basel). 2022 Sep 19;12(18):3246. doi: 10.3390/nano12183246.
In this study, we examine the effect of integrating different carbon nanostructures (carbon nanotubes, CNTs, graphene nanoplatelets, GNPs) into Ni- and Ni-W-based bi-functional catalysts for hydrocracking of heptane performed at 400 °C. The effect of varying the SiO2/Al2O3 ratio of the zeolite Y support (between 5 and 30) on the heptane conversion is also studied. The results show that the activity, in terms of heptane conversion, followed the order CNT/Ni-ZY5 (92%) > GNP/Ni-ZY5 (89%) > CNT/Ni-W-ZY30 (86%) > GNP/Ni-W-ZY30 (85%) > CNT/Ni-ZY30 (84%) > GNP/Ni-ZY30 (83%). Thus, the CNT-based catalysts exhibited slightly higher heptane conversion as compared to the GNP-based ones. Furthermore, bimetallic (Ni-W) catalysts possessed higher BET surface areas (725 m2/g for CNT/Ni-W-ZY30 and 612 m2/g for CNT/Ni-ZY30) and exhibited enhanced hydrocracking activity as compared to the monometallic (Ni) catalyst with the same zeolite support and type of carbon structure. It was also shown that CNT-based catalysts possessed higher regeneration capability than their GNP-based counterparts due to the slightly higher thermal stability of the CVD-grown CNTs.
在本研究中,我们考察了将不同的碳纳米结构(碳纳米管、CNTs、石墨烯纳米片、GNPs)引入基于Ni和Ni-W的双功能催化剂中,用于在400℃下进行庚烷加氢裂化的效果。还研究了改变Y型沸石载体的SiO2/Al2O3比(在5至30之间)对庚烷转化率的影响。结果表明,就庚烷转化率而言,活性顺序为:CNT/Ni-ZY5(92%)> GNP/Ni-ZY5(89%)> CNT/Ni-W-ZY30(86%)> GNP/Ni-W-ZY30(85%)> CNT/Ni-ZY30(84%)> GNP/Ni-ZY30(83%)。因此,与基于GNP的催化剂相比,基于CNT的催化剂表现出略高的庚烷转化率。此外,与具有相同沸石载体和碳结构类型的单金属(Ni)催化剂相比,双金属(Ni-W)催化剂具有更高的BET表面积(CNT/Ni-W-ZY30为725 m2/g,CNT/Ni-ZY30为612 m2/g),并表现出增强的加氢裂化活性。还表明,由于化学气相沉积生长的CNTs具有略高的热稳定性,基于CNT的催化剂比基于GNP的催化剂具有更高的再生能力。