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CeO2:Mn3O4 Catalytic Micro-Converters Tuned for CH4 Detection Based on Catalytic Combustion under Real Operating Conditions

机译:在实际操作条件下基于催化燃烧对用于CH4检测的CeO2:Mn3O4催化微转化器进行了调整

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摘要

Mesoporous CeO :Mn O materials (3:7 and 7:3 molar ratio) were prepared by co-precipitation and deposited as porous thick films over alumina (Al O ) planar substrate provided with Pt meander. The aim was oriented towards detecting low levels methane (CH ) at moderate operating temperatures. Herein we demonstrated that the sensitivity of catalytic micro-converters (CMCs) towards a given peak of CH concentration corresponds to specific gas-surface interaction phenomena. More precisely, a transition from thermal conductivity to combustion rate is likely to occur when CMCs are operated under real atmospheric conditions (normal pressure, presence of relative humidity, and constant operating temperature). The response to CH was analyzed over different gas flows and different gas concentrations under the same operating regime. The materials were fully characterized by adsorption-desorption isotherms, H -Temperature Programmed Reduction (H -TPR), X-ray Diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Scanning Electron Microscopy (SEM), and Raman spectroscopies. Thus, the applicative aspect of using CeO :Mn O as moderate temperature CMC for CH detection is brought to the fore.
机译:通过共沉淀制备介孔的CeO:Mn O材料(摩尔比为3:7和7:3),并将其作为多孔厚膜沉积在具有Pt曲折的氧化铝(Al O)平面基板上。目的是在中等工作温度下检测低水平的甲烷(CH)。在本文中,我们证明了催化微转化器(CMC)对CH浓度给定峰值的敏感性与特定的气体表面相互作用现象相对应。更准确地说,当CMC在实际大气条件(常压,相对湿度和恒定工作温度)下运行时,很可能会发生从导热率到燃烧速率的过渡。在相同的工作方案下,分析了不同气体流量和不同气体浓度下对CH的响应。通过吸附-解吸等温线,H-程序升温还原(H -TPR),X射线衍射(XRD),X射线光电子能谱(XPS),扫描电子显微镜(SEM)和拉曼光谱对材料进行了充分表征。因此,将CeO:Mn O用作检测CH的中温CMC的应用方面受到重视。

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