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首页> 外文期刊>Kinetics and catalysis >Effect of Preparation Conditions on the Formation of the Active Phase of Carbon Fiber Catalytic Systems for the Low-Temperature Oxidation of Carbon Monoxide
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Effect of Preparation Conditions on the Formation of the Active Phase of Carbon Fiber Catalytic Systems for the Low-Temperature Oxidation of Carbon Monoxide

机译:制备条件对一氧化碳低温氧化碳纤维催化体系活性相形成的影响

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摘要

We studied the effects of the composition of impregnating solution and heat treatment conditions on the activity of catalytic systems for the low-temperature oxidation of CO obtained by the impregnation of Busofit carbon-fiber cloth with aqueous solutions of palladium, copper, and iron salts. The formation of an active phase in the synthesized catalysts at different stages of their preparation was examined with the use of differential thermal and thermogravimetric analyses, X-ray diffraction analysis, X-ray photoelectron spectroscopy, and elemental spectral analysis. The catalytic system prepared by the impregnation of electrochemically treated Busofit with the solutions of PdCl_2, FeCl_3, CuBr_2, and Cu(NO_3)_2 and activated under optimum conditions ensured 100% CO conversion under a respiratory regime at both low (0.03%) and high (0.5%) carbon monoxide contents of air. It was found that the activation of a catalytic system at elevated temperatures (170-180°C) leads to the conversion of Pd(II) into Pd(I), which was predominantly localized in a near-surface layer. The promoting action of copper nitrate consists in the formation of a crystalline phase of the rhombic atacamite Cu_2Cl(OH)_3. The catalyst surface is finally formed under the conditions of a catalytic reaction, when a joint Pd(I)-Cu(I) active site is formed.
机译:我们研究了浸渍溶液的组成和热处理条件对用钯,铜和铁盐水溶液浸渍Busofit碳纤维布所获得的低温氧化CO催化体系活性的影响。通过使用差示热和热重分析,X射线衍射分析,X射线光电子能谱和元素光谱分析来检查合成催化剂在其制备的不同阶段中活性相的形成。通过在PdCl_2,FeCl_3,CuBr_2和Cu(NO_3)_2溶液中浸渍电化学处理的Busofit制备的催化系统并在最佳条件下活化,可确保在低(0.03%)和高(高)呼吸条件下100%的CO转化率空气中一氧化碳的含量为(0.5%)。发现在升高的温度(170-180℃)下催化体系的活化导致Pd(II)转化成Pd(I),其主要局限在近表面层中。硝酸铜的促进作用在于菱形方铁矿Cu_2Cl(OH)_3的结晶相的形成。当形成联合的Pd(I)-Cu(I)活性位时,催化剂表面最终在催化反应的条件下形成。

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