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Characterization and catalytic activity for ammonia synthesis of ruthenium ion-exchanged zeolites.

机译:钌离子交换沸石氨合成的表征和催化活性。

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Ruthenium metal on a zeolite support was found to be active for the catalytic synthesis of ammonia from dihydrogen and dinitrogen at temperatures between 300 and 450{dollar}spcirc{dollar}C and at atmospheric pressure. A triply-promoted iron catalyst exhibited a lower activity under similar conditions. Upon various pretreatment conditions, the ruthenium metal crystallites were either located within the pore structure or on the external surface of the zeolite microcrystals. The catalyst with the ruthenium metal particles located in the pore structure of the zeolite exhibited a higher activity than the catalyst with the ruthenium crystallites on the external surface. Variation of the exchangeable alkali-metal cations altered the activity of the internal ruthenium catalyst. Using Sanderson's Electronegativity calculations for the internal ruthenium zeolite, a relationship was found between the activity for ammonia synthesis of ruthenium zeolites of varied elemental compositions and the effective oxygen charge.
机译:发现在沸石载体上的钌金属对于在300至450℃和大气压下由二氢和二氮催化合成氨具有活性。三重促进的铁催化剂在相似条件下表现出较低的活性。在各种预处理条件下,钌金属微晶要么位于孔结构内,要么位于沸石微晶的外表面上。与位于外表面的具有钌微晶的催化剂相比,具有位于沸石的孔结构中的钌金属颗粒的催化剂表现出更高的活性。可交换的碱金属阳离子的变化改变了内部钌催化剂的活性。使用用于内部钌沸石的Sanderson电负性计算,发现了元素组成不同的钌沸石的氨合成活性与有效氧电荷之间的关系。

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