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首页> 外文期刊>Kinetics and catalysis >Effect of the Conditions of Thermal Treatment of Molybdenum-Titanium and Vanadium-Molybdenum-Titanium Oxide Catalysts on Pore Structure Formation
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Effect of the Conditions of Thermal Treatment of Molybdenum-Titanium and Vanadium-Molybdenum-Titanium Oxide Catalysts on Pore Structure Formation

机译:钼钛及钒钼钼钛氧化物热处理条件对孔结构形成的影响

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The effect of the conditions of thermal treatment on the texture formation in molybdenum-titanium oxide (Mo-Ti-O) and vanadium-molybdenum-titanium oxide (V-Mo-Ti-O) catalysts was studied. It was found that the presence of MoO_3 in the Mo-Ti-O catalyst resulted in the stabilization of the surface area of anatase and in the retention of the fine pore structure upon thermal treatment because of the insertion of highly dispersed molybdenum vcrystallites into the aggregates of anatase crystallites, preventing from their agglomeration over a wide range of temperatures. In the presence of MoO_3 and V_2O_5 in the catalyst, anatase particles underwent agglomeration as the temperature was increased. This resulted in a more drastic decrease in the specific surface area and an increase in the pore size, as compared with binary samples, because of the formation of a thermally labile vanadium-molybdenum compound at the surface of anatase.
机译:研究了热处理条件对钼-钛氧化物(Mo-Ti-O)和钒-钼-钛氧化物(V-Mo-Ti-O)催化剂中织构形成的影响。发现在Mo-Ti-O催化剂中MoO_3的存在导致锐钛矿的表面积的稳定和热处理后保留细孔结构,这是因为将高度分散的钼微晶插入聚集体中锐钛矿晶体,可防止其在很宽的温度范围内结块。在催化剂中存在MoO_3和V_2O_5时,随着温度的升高,锐钛矿颗粒会发生团聚。与二元样品相比,由于在锐钛矿表面形成了热不稳定的钒钼化合物,与比表面积相比,这导致比表面积的急剧减小和孔径的增加。

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