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Fang Guo,Zegang Qiu,Liangfu Zhao,Shaoqing Guo,Xian-Xian Wei,Xiaoxiao Wang,Hongwei Xiang 한국화학공학회 2014 Korean Journal of Chemical Engineering Vol.31 No.11
MCM-41 was calcined at 500, 560, 600 or 650 oC. It was used as support for NiW catalysts of hydrodenitro-genation (HDN) for quinoline in order to investigate the influences of the MCM-41’s calcination temperature on thestructure and the HDN performance of NiW catalysts. The NiW catalysts were characterized by XRD, N2 adsorption-desorption, XPS, Raman, HRTEM and Py-IR techniques. The results showed that the surface area (SBET), the averagepore diameter (Dp) and the pore volume (Vp) of the MCM-41 increased with increase of the MCM-41’s calcinationtemperature. The high SBET , Dp and Vp were beneficial for the high dispersion of W species, the formation of appropriatenature of W species and acid sites on the catalysts. The HDN activity followed the order of NiW-650≈NiW-600>NiW-560>NiW-500, while the relative selectivity of HDN pathways was similar for all the catalysts.