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Combinatorial screening of heterogeneous catalysts in selective oxidation of naphthalene by laser-induced fluorescence imaging

机译:激光诱导荧光成像对萘选择性氧化中非均相催化剂的组合筛选

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Heterogeneous catalysis is one of the most important processes in the petroleum and the chemical industries. To be able to screen catalysts at high throughput will dramatically improve performance and reduce costs. Here we used laser-induced fluorescence imaging as a high-throughput screening technique in the combinatorial discovery of active catalysts for naphthalene oxidation. Binary catalysts of V-Mo-O, V-Sn-O, V-Ti-O, and V-W-O in various 15-member libraries were screened. Laser ablation ICPMS was employed to confirm the composition of the individual catalysts in the combinatorial library. The addition Of MoO3, WO3, SnO2, and TiO2 to V2O5 did not improve the catalytic activity in the conversion of naphthalene to naphthoquinone, but the overall activity was found to increase for certain binary samples. The screening of ternary catalysts of V-Sn-Mo-O revealed that the combination of V (45%)-Sn (45%)-Mo (10%) gave 70% higher catalytic activity than pure V2O5 in converting naphthalene to naphthoquinone. Reaction temperature and sample preparation effects on the activity and selectivity of catalysts are also studied in a combinatorial manner.
机译:非均相催化是石油和化学工业中最重要的过程之一。能够高通量筛选催化剂将显着提高性能并降低成本。在这里,我们将激光诱导的荧光成像技术用作高通量筛选技术,用于发现萘氧化的活性催化剂。筛选了15个成员库中的V-Mo-O,V-Sn-O,V-Ti-O和V-W-O的二元催化剂。使用激光烧蚀ICPMS确认组合库中各个催化剂的组成。在V2O5中添加MoO3,WO3,SnO2和TiO2不会提高萘转化为萘醌的催化活性,但发现某些二元样品的总活性会增加。 V-Sn-Mo-O三元催化剂的筛选显示,在将萘转化为萘醌时,V(45%)-Sn(45%)-Mo(10%)的组合比纯V2O5的催化活性高70%。还以组合方式研究了反应温度和样品制备对催化剂活性和选择性的影响。

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