压力对二氧化钛负载的纳米铂催化剂一氧化碳氧化的影响

J. Emmanuel
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引用次数: 0

摘要

开发了热成像测试方法,以方便测量颗粒尺寸和衬底在非均相催化剂中的影响。采用多层应力较小的氮化硅膜的筛选芯片,使其具有较低的导热性和热容。通过红外照相机测定了膜上催化剂在反应过程中产生的热量,得到了反应的翻转频率。在120种催化剂上同时测定了压力对不同尺寸钛载体Pt颗粒CO转化的影响。在170℃和240℃的不同O2和CO压力下研究了该反应。在这些温度条件下,活性随着O2和CO压力的增加而增加,这与之前的报道一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Pressure on Carbon monoxide Oxidation on Titania Supported Platinum Nanoparticles Catalyst
Thermographic testing methodology was developed to facilitate measurements of particle dimension and substrate influence in heterogeneous catalysts. A screening chip with several areas of less stress silicon nitride membranes which displays less heat conductivity and heat capacity was used. Heat produced during the reaction on catalysts deposited on membranes was established through IR camera which gave the value of the turn over frequency. Effect of pressure on CO conversion on titania supported Pt particles of different dimension was measured on 120 catalysts concurrently. The reaction was studied at various O2 and CO pressures at 170 ℃ and 240 ℃. At these temperature conditions, activity increased with increase of O2 and CO pressure, in agreement with previous reports.
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