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Preparation of supported nano-copper oxide and its sulfation kinetics

机译:负载型纳米铜氧化物的制备及其硫酸化动力学

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CuO/γ >-Al2O3 sorbents were prepared by means of impregnation. Thermogravimetric technique was used to study the sulfation of CuO/y-Al2O3 sorbents. The sulfation tests were performed using gas containing 0.1%-0.9% SO2, 5% O2, 3% H2O steam, and N2 as the balance. Experimental conditions including temperature, SO2 concentration and pore structure were studied. The sulfation experiment results show that the sulfation reaction rate increases with increasing temperature and SO2 concentration, and the surface and pore volume decrease after sulfation. Sulfation kinetics analysis shows that the reaction between CuO/γ-Al2O3 and SO2 obeys pore-blocking model well. Proportionality (pore-blocking constant) 1/λ decreases with increasing temperature. The activation energy and reaction order with respect to SO2 obtained are 37.9 kJ/mol and the first order, respectively. The existing state of CuO exerts an influence on activation energy.
机译:通过浸渍法制备了CuO /γ> -Al2O3吸附剂。用热重技术研究了CuO / y-Al2O3吸附剂的硫酸化。使用含0.1%-0.9%SO2、5%O2、3%H2O蒸汽和N2作为余量的气体进行硫酸化测试。研究了温度,SO2浓度和孔结构等实验条件。硫酸化实验结果表明,硫酸化反应速率随温度和SO 2浓度的增加而增加,而表面积和孔体积减小。硫酸盐化动力学分析表明,CuO /γ-Al2O3与SO2的反应符合孔阻塞模型。比例(孔阻塞常数)1 /λ随着温度的升高而降低。相对于SO 2的活化能和反应级分别为37.9kJ / mol和一级。 CuO的存在状态对活化能产生影响。

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