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首页> 外文期刊>Catalysis science & technology >Effect of post-synthesis hydrogen-treatment on the nature of iron species in Fe-BEA as NH3-SCR catalys
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Effect of post-synthesis hydrogen-treatment on the nature of iron species in Fe-BEA as NH3-SCR catalys

机译:合成后氢治疗对Fe-Bea中铁物质的性质的影响

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Post-synthesis treatment of Fe-BEA with hydrogen has previously been shown to improve the low-temperature activity for NO reduction during standard IMH3-SCR. Here, a 2 wt.% Fe-BEA sample was prepared by incipient wetness impregnation and calcined in air at 450 °C for 3 h. The fresh sample was then treated with 5% H2 at 650 °C for 5 h. The evolution of different iron species in Fe-BEA before and after H2-treatment was studied using in situ DRIFT spectroscopy with NO as a probe molecule and by UV-Vis spectroscopy. The DRIFTS results show that the relative intensity of the absorption peak representing isolated iron species increases significantly after H2-treatment of the fresh Fe-BEA sample. Furthermore, the UV-Vis results show a significant decrease in the relative intensity in the UV region representing larger iron particles, whereas the relative intensity representing smaller iron species increases after treatment of Fe-BEA with hydrogen. The results show that the low-temperature NO reduction during standard NH3-SCR can be increased for Fe-BEA by redispersion of smaller iron species into the zeolite structure by hydrogen-treatment.
机译:先前已证明对Fe-BEA进行FE-BEA的合成后处理可以改善标准IMH3-SCR期间无降低的低温活性。在这里,通过初期湿度浸渍制备了2 wt。%的Fe-Bea样品,并在450°C的空气中凝固3小时。然后将新鲜样品在650°C下用5%H2处理5小时。在H2处理之前和之后,使用原位漂移光谱法研究了NO作为探针分子和UV-VIS光谱法研究了FE-BEA中不同铁物种的演变。漂移结果表明,在新鲜的Fe-Bea样品的H2处理后,代表孤立铁物质的吸收峰的相对强度显着增加。此外,UV-VIS的结果显示,代表较大铁颗粒的紫外线区域的相对强度显着降低,而代表较小铁物种的相对强度在用氢处理后增加。结果表明,通过将较小的铁物种通过氢处理将较小的铁物种重新分散为沸石结构,可以增加标准NH3-SCR期间的低温NO降低。

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