首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Influence of the reaction conditions on the activity properties of vanadium-aluminium oxynitride propane ammoxidation catalyst
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Influence of the reaction conditions on the activity properties of vanadium-aluminium oxynitride propane ammoxidation catalyst

机译:反应条件对钒铝氧氮化丙烷丙烷氨氧化催化剂活性的影响

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摘要

The influence of different reaction conditions on the catalytic activity of vanadium-aluminium oxynitride "VAlON" in propane ammoxidation is investigated.This new catalytic material exhibits amorphous character,high specific surface area,basic-redox properties and remarkable acrylonitrile production per hour and amount of catalyst.Optimal performance is achieved when the reaction temperature is 500deg C,and the molar ratio of propane,oxygen,and ammonia in the gas feed is 1.25:3:1.Under these optimal reaction conditions,the catalyst showed a propane conversion level of 60%,an acrylonitrile selectivity of 56%,and an acrylonitrile productivity of 8121/kgh.The formation of a propylene intermediate compound as well as hydrogen cyanide was detected only for those reaction conditions where the NH_3:C_3H_8 ratio was lower than 1.This suggests differences in the reaction mechanism with respect to conventional V-Me-oxide propane ammoxidation catalysts.In propane ammoxidation over VAlON catalysts,ammonia seems to play a double role:(i) as a reagent necessary for the thermal nitridation and generation of nitrogen species,(ii) participating in N-insertion step for the acrylonitrile formation from propane.The catalytic performances depend on the generation of nitrogen species as a function of the reaction conditions,which determine the level of propane conversion and selectvity to the reaction products.
机译:研究了不同反应条件对钒铝氧氮化物“ VAlON”在丙烷氨氧化中的催化活性的影响。这种新型催化材料具有无定形特性,高比表面积,碱性氧化还原性能以及每小时每小时产生的丙烯腈量和显着的丙烯腈量。当反应温度为500℃,进料气中丙烷,氧气和氨气的摩尔比为1.25:3:1时,催化剂的最佳性能为最佳。 60%,丙烯腈选择性为56%,丙烯腈生产率为8121 / kgh。仅在NH_3:C_3H_8比率低于1的那些反应条件下才能检测到丙烯中间体化合物和氰化氢的形成。与常规的V-Me-氧化物丙烷氨氧化催化剂相比,在反应机理上存在差异。氨似乎起着双重作用:(i)作为热氮化和氮物种生成所必需的试剂,(ii)参与由丙烷形成丙烯腈的N插入步骤。催化性能取决于生成氮的种类随反应条件的变化而变化,这决定了丙烷的转化水平和对反应产物的选择性。

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