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首页> 外文期刊>Acta Chimica Slovenica >Carboxylic Acid Reduction over Silica Supported Cu, Ni and Cu2In, Ni2In Catalysts
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Carboxylic Acid Reduction over Silica Supported Cu, Ni and Cu2In, Ni2In Catalysts

机译:二氧化硅负载的Cu,Ni和Cu2In,Ni2In催化剂上的羧酸还原

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Hydroconversion of caprylic acid as model compound was studied in a flow-through fixed-bed reactor at 21 bar total pressure and 240-360 degrees C reaction temperature over various hydrogenating active phases: pure metal (Cu, Ni) and intermetallic compound (Cu2In, Ni2In) nanoparticles. Different silicas produced by dissimilar methods and a commercial gamma-alumina were compared as appropriate supports. Catalyst precursors were activated in reducing H-2 flow at 21 bar and 450 degrees C as routine pretreatment. Catalysts of high activity and selectivity for alcohol production can be obtained by varying the supports, the main metals and their indium modified bimetallic forms. Diversity of catalytic behavior reflects the complexity of the surface reactions. Caprylic alcohol formation was substantiated to proceed through caprylic aldehyde intermediates, however it can be also dehydrated to dicaprylic ether or octenes over alumina support. Silica supports, especially a less compact variant seem to be more inert for side reactions than alumina. Different morphology of studied silicas can highly influence the catalytic performances taking place over different metal particles.
机译:在流动固定床反应器中,在21 bar总压力和240-360℃反应温度下,在各种氢化活性相:纯金属(Cu,Ni)和金属互化物(Cu2In, Ni2In)纳米粒子。比较了通过不同方法生产的不同二氧化硅和市售的γ-氧化铝作为合适的载体。作为常规预处理,催化剂前体在降低的H-2流量下于21 bar和450摄氏度下被活化。通过改变载体,主要金属及其铟改性的双金属形式,可以得到高活性和高选择性的醇生产催化剂。催化行为的多样性反映了表面反应的复杂性。已证实辛醇的形成可通过辛醛中间体进行,但也可在氧化铝载体上将其脱水成二辛醚或辛烯。二氧化硅载体,特别是结构紧凑的变体,对副反应的惰性似乎比氧化铝高。研究过的二氧化硅的不同形态会极大地影响在不同金属颗粒上发生的催化性能。

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