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Temporal analysis of products reactor as a complementary tool to study the mechanism of some green catalytic reactions

机译:产品反应器的时间分析作为研究某些绿色催化反应机理的辅助工具

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摘要

A Temporal Analysis of Products (TAP) reactor was used to study the mechanism of two green catalytic reactions, namely low-temperature CO oxidation on supported gold catalysts and volatile organic compounds (VOCs) elimination, with propane as model molecule, on vanadia-based catalysts. Single-pulse TAP experiments evidenced a weak and reversible adsorption of CO on Au/Ti(OH)4 catalyst and of propane on vanadia- based catalytic materials obtained by DC magnetron sputter deposition, while O2 adsorption was irreversible on both catalysts. Alternating TAP pulse experiments provided evidence for the nature of oxygen species involved in the oxidation reactions. If the adsorbed oxygen was involved in the CO oxidation, the lattice oxygen was responsible for the propane oxidation. Multi-pulse TAP experiments assessed the degree of reduction of the catalyst while its influence upon the mechanism is determined by single-pulse experiments. The obtained results will allow the optimal formulation of industrial scale catalysts with applicability to a wide range of industrial processes.
机译:产品的时间分析(TAP)反应器用于研究两种绿色催化反应的机理,即在钒基催化剂上以负载型金为催化剂的低温CO氧化和以丙烷为模型分子的挥发性有机化合物(VOC)消除催化剂。单脉冲TAP实验表明,CO在Au / Ti(OH)4催化剂上的吸附作用弱且可逆,丙烷在通过直流磁控溅射沉积获得的钒基催化材料上的吸附作用弱且可逆,而O2的吸附在两种催化剂上都是不可逆的。交替的TAP脉冲实验为氧化反应中涉及的氧种类的性质提供了证据。如果吸附的氧气参与了CO氧化,那么晶格氧将导致丙烷氧化。多脉冲TAP实验评估了催化剂的还原程度,同时通过单脉冲实验确定了其对机理的影响。所获得的结果将使工业规模催化剂的最佳配方能够适用于广泛的工业过程。

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