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首页> 外文期刊>Kinetics and catalysis >New Y(La)-M-O binary systems (M = Ca, Sr, or Ba): Synthesis, physicochemical characterization, and application as the supports of ruthenium catalysts for ammonia synthesis
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New Y(La)-M-O binary systems (M = Ca, Sr, or Ba): Synthesis, physicochemical characterization, and application as the supports of ruthenium catalysts for ammonia synthesis

机译:新的Y(La)-M-O二元体系(M = Ca,Sr或Ba):合成,物化特征和作为钌催化剂用于氨合成的载体

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摘要

The effect of the nature of the alkaline-earth metal on the phase composition and specific surface area of new Y(La)-M-O binary oxide compositions (M = Ca, Sr, or Ba) prepared by coprecipitation was studied. These systems were found to contain mixed compounds (M2Y2O5, MY2O4, and MLa2O4), which are different in thermal stability, in addition to individual La2O3 or Y2O3 phases. The Y(La)-M-O compositions calcined at 450degreesC were characterized by a more developed specific surface area, as compared with that of individual La2O3 or Y2O3. An increase in the calcination temperature to 650degreesC was accompanied by a decrease in the specific surface area of binary compositions. Catalysts prepared by supporting K-2[Ru-4(CO)(13)] onto the Y(La)-M-O systems were active in ammonia synthesis at 250-400degreesC and atmospheric pressure. The most active of these catalysts, K-2[Ru-4(CO)(13)]/Y-Ba-O, provided a higher yield of NH3 at 250-300degreesC than analogous catalysts prepared with the use of well-known supports (Sibunit, CFC-1, and C/MgO).
机译:研究了碱土金属的性质对通过共沉淀制备的新型Y(La)-M-O二元氧化物组合物(M = Ca,Sr或Ba)的相组成和比表面积的影响。发现这些系统包含混合的化合物(M2Y2O5,MY2O4和MLa2O4),除了各个La2O3或Y2O3相之外,它们的热稳定性也不同。与单独的La2O3或Y2O3相比,在450℃下煅烧的Y(La)-M-O组合物的特征在于比表面积更大。煅烧温度升高至650℃,同时二元组合物的比表面积降低。通过将K-2 [Ru-4(CO)(13)]负载在Y(La)-M-O系统上制备的催化剂在250-400℃和大气压下对氨合成具有活性。这些催化剂中最活跃的K-2 [Ru-4(CO)(13)] / Y-Ba-O在250-300°C时比使用已知载体制备的类似催化剂可提供更高的NH3收率(Sibunit,CFC-1和C / MgO)。

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