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A new preparation method of Au/ferric oxide catalyst for low temperature CO oxidation

机译:一种用于低温CO氧化的金/三氧化二铁催化剂的新制备方法

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A new preparation method of Au/α-Fe_2O_3 catalyst for CO oxidation reaction was proposed in this paper. The method includes only a simple modification of the conventional coprecipitation method, adding HAuCl_4 solution after the growth of iron hydroxide grain to a certain size, but significantly influenced the catalytic activity in the reaction. In the characterization study, XRD (X-ray diffractometer) analysis, TEM (transmission electron microscope) observation, and N_2 adsorption measurement showed similar results among the samples calcined at the same temperature, but the effect of the preparation method appeared in the CO adsorption measurement among the samples calcined at 200 °C. Catalysts having high CO adsorption ability also performed well in CO oxidation tests. The CO adsorption and oxidation studies indicated that the proposed preparation method results in stable and effective loading of Au, compared to the conventional coprecipitation method. In the CO oxidation test, the catalyst prepared by the proposed mixing scheme achieved complete CO conversion for more than 3000 h at 25 °C, space velocity 100,000 h~(-1), and 500 ppm CO. The selectivity for the CO oxidation was confirmed using reformed gas containing excess H_2. In addition, the NO reduction reaction was favored over CO oxidation by the catalyst. Thus, we were able to load Au on the α-Fe_2O_3 effectively and demonstrate its potential as an environmental catalyst.
机译:提出了一种新的Au /α-Fe_2O_3催化剂用于CO氧化反应的制备方法。该方法仅包括对常规共沉淀方法的简单修改,即在氢氧化铁晶粒生长到一定尺寸后添加HAuCl_4溶液,但显着影响反应中的催化活性。在表征研究中,在相同温度下煅烧的样品中,XRD(X射线衍射仪)分析,TEM(透射电子显微镜)观察和N_2吸附测量显示相似的结果,但制备方法的效果在CO吸附中表现出测量在200°C下煅烧的样品中。具有高CO吸附能力的催化剂在CO氧化试验中也表现良好。 CO吸附和氧化研究表明,与常规共沉淀法相比,所提出的制备方法可稳定,有效地负载Au。在CO氧化测试中,通过拟议的混合方案制备的催化剂在25°C,空速100,000 h〜(-1)和500 ppm CO的条件下可实现3000小时以上的完全CO转化。CO氧化的选择性为证实使用含有过量H_2的重整气体。另外,催化剂使NO还原反应优于CO氧化。因此,我们能够将Au有效地负载在α-Fe_2O_3上,并证明了其作为环境催化剂的潜力。

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