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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Effects of Li2O doping on surface and catalytic properties of CuO-ZnO/Al2O3 system
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Effects of Li2O doping on surface and catalytic properties of CuO-ZnO/Al2O3 system

机译:Li2O掺杂对CuO-ZnO / Al2O3体系表面和催化性能的影响

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摘要

The effect of Li2O doping (0.375-4.5 mol.%) on surface and catalytic properties of CuO-ZnO/Al2O3 was investigated using nitrogen adsorption at - 196 degrees C and catalytic oxidation of CO by O-2 at 150-200 degrees C. Pure and doped solids were subjected to thermal treatment at 600-800 degrees C prior to surface and catalytic measurements. The results showed that Li2O doping caused measurable increases in the specific surface area (23-45%) and in the total pore volume (24-43%) for the adsorbents preheated in air at 600-700 degrees C. If the doping process was carried out at 600 degrees C, it resulted in a considerable decrease (52%) in the catalytic activity, measured at 175 degrees C. A rise in calcination temperature of the doped solid specimens (4.5 mol.% Li2O) to 700 and 800 degrees C brought about marked increases of 125% and 186%, respectively, in the catalytic activity measured at 175 degrees C. This discrepancy is discussed in terms of the effect of Li2O doping in decreasing the dispersity of CuO crystallites of the solids calcined at 600 degrees C and the role of Li2O in hindering CuAl2O4 formation upon calcination at 700 and 800 degrees C. The decrease in the degree of dispersion of CuO crystallites due to doping at 600 degrees C is normally followed by a decrease in the catalytic activity while the suppression or hindrance of CuAl2O4 formation might be followed by an increase in the catalytic activity. The doping process carried out at 600-800 degrees C did not modify the concentration of catalytically active constituents involved in chemisorption and catalysis of the CO oxidation reaction. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 28]
机译:研究了Li2O掺杂量(0.375-4.5 mol。%)对CuO-ZnO / Al2O3表面和催化性能的影响,方法是在-196摄氏度下进行氮吸附,并在150-200摄氏度下通过O-2催化CO氧化。在进行表面和催化测量之前,对纯净的和掺杂的固体进行600-800摄氏度的热处理。结果表明,Li2O掺杂导致在600-700摄氏度的空气中预热的吸附剂的比表面积(23-45%)和总孔体积(24-43%)明显增加。在175摄氏度下进行测量,其催化活性大大降低(52%)。掺杂固体样品(4.5 mol。%Li2O)的煅烧温度升高到700和800摄氏度C在175摄氏度下测得的催化活性分别显着增加了125%和186%。这种差异是根据Li2O掺杂对降低600摄氏度煅烧的固体的CuO微晶分散性的影响而讨论的C和Li2O在阻止700和800摄氏度煅烧时形成CuAl2O4的作用。由于在600摄氏度掺杂而导致的CuO晶粒分散度的降低通常伴随着催化活性的降低,而抑制或阻碍形成CuAl2O4可能会增加催化活性。在600-800℃下进行的掺杂过程没有改变参与CO氧化反应的化学吸附和催化的催化活性成分的浓度。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:28]

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