Abstract <p>The complete oxidation of propane (Pr) is one of the most crucial processes for eliminating volatile organic compounds (VOCs) from the atmosphere. The synthesized palladium nanoparticles (PdNPs) decorated on ceria support with weight loading ranging from 1 to 4 wt % (1−4PdNPs/CeO<sub>2</sub>) is used in the catalytic combustion of propane. The dispersion of PdNPs on CeO<sub>2</sub> support is greatly enabled reducibility of Ce (Ce<sup>4+</sup> to Ce<sup>3+</sup>) and increasing oxygen vacancies on the Ce lattice through strong metal support interaction between PdNPs and CeO<sub>2</sub> support. The 3 wt % PdNPs loaded CeO<sub>2</sub> catalyst (3PdNPs/CeO<sub>2</sub>) exhibits highest propane conversion (<i>X</i><sub>Pr</sub>), lowest <i>T</i><sub>90</sub> (temperature required to degrade 90% Pr), <i>T</i><sub>50</sub> (temperature required to degrade 50% Pr) and lowest activation energy (<i>E</i><sub>a</sub>) towards propane oxidation reaction. These advantages lead to an exceptionally high performance on Pd/CeO<sub>2</sub> in the complete oxidation of propane at low temperatures. This work represents a viable approach to the development of strong supported catalysts for the removal of short-chain volatile organic compounds.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Synergetic Effect of Pd Decorated CeO2 Support Application in Total Oxidation of Propane

  • Srinu Bhoomandla,
  • Gande Ravi Kumar,
  • Voleti Nagaveni,
  • Police Vishnu Vardhan Reddy,
  • M. Sudha,
  • Sreedhar Pandiri

摘要

Abstract

The complete oxidation of propane (Pr) is one of the most crucial processes for eliminating volatile organic compounds (VOCs) from the atmosphere. The synthesized palladium nanoparticles (PdNPs) decorated on ceria support with weight loading ranging from 1 to 4 wt % (1−4PdNPs/CeO2) is used in the catalytic combustion of propane. The dispersion of PdNPs on CeO2 support is greatly enabled reducibility of Ce (Ce4+ to Ce3+) and increasing oxygen vacancies on the Ce lattice through strong metal support interaction between PdNPs and CeO2 support. The 3 wt % PdNPs loaded CeO2 catalyst (3PdNPs/CeO2) exhibits highest propane conversion (XPr), lowest T90 (temperature required to degrade 90% Pr), T50 (temperature required to degrade 50% Pr) and lowest activation energy (Ea) towards propane oxidation reaction. These advantages lead to an exceptionally high performance on Pd/CeO2 in the complete oxidation of propane at low temperatures. This work represents a viable approach to the development of strong supported catalysts for the removal of short-chain volatile organic compounds.