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Synthesis, Characterization and Ammoxidation Functionality of Silica Supported Vanadium Incorporated Ammonium Salt of 12-Molybdophosphoric Acid Catalyst

机译:二氧化硅负载的钒钼结合的十二钼磷酸催化剂的合成,表征和氨氧化功能

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摘要

A series of silica supported vanadium incorporated ammonium salts of 12-molybdophosphoric acid (AMPV) catalysts, with 5–25 wt% of active component were prepared. These catalysts were characterized by XRD, FTIR, BET-Surface Area, TGA/DTA and acidity by potentiometry techniques. The characterization data derived from XRD, FT-IR techniques reveal that the AMPV on silica support exists in the form of Keggin structure. These catalysts are studied for the vapor phase ammoxidation of 2-methyl pyrazine (MP) to cyanopyrazine (CP). The conversion of methyl pyrazine increased with increase in loading on silica showing a maximum value of conversion at 20 wt% AMPV loading. The ammoxidation activity of these catalysts with and without vanadium is studied and the vanadium incorporation led to substantial improvement in the cynopyrazine selectivity.
机译:制备了一系列二氧化硅负载的钒结合的12钼磷酸(AMPV)催化剂的铵盐,其活性成分为5-25 wt%。通过XRD,FTIR,BET-表面积,TGA / DTA和酸度通过电位计技术对这些催化剂进行了表征。从XRD,FT-IR技术获得的表征数据表明,二氧化硅载体上的AMPV以Keggin结构的形式存在。研究了这些催化剂用于2-甲基吡嗪(MP)气相氨氧化为氰基吡嗪(CP)的过程。甲基吡嗪的转化率随二氧化硅负载量的增加而增加,在AMPV负载量为20 wt%时显示出最大的转化率。研究了在有和没有钒的情况下这些催化剂的氨氧化活性,并且钒的引入导致对氯吡嗪的选择性有实质性的提高。

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