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Pt-Au/CeO2 catalysts for the simultaneous removal of carbon monoxide and formaldehyde

机译:同时删除Pt-Au / CeO2催化剂一氧化碳和甲醛

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摘要

A series of Pt-Au/CeO2 catalysts were prepared via the impregnation deposition-precipitation (IDP) and reduction-deposition precipitation (RDP) methods. The performances of the catalysts for the simultaneous removal of carbon monoxide (CO) and formaldehyde (HCHO) at room temperature were evaluated. The results show that the Pt-Au/CeO2 catalyst, which was prepared via the RDP method, exhibited higher catalytic activity. The catalyst characterization results reveal that two factors accounted for this phenomenon. The first factor is that more negatively charged metallic Pt nanoparticles were obtained during the liquid phase NaBH4 reduction treatment preparation process and the second factor is that more Au+ species were formed using urea as the precipitant in the Au deposition-precipitation. The larger number of negatively charged metallic Pt nanoparticles and Au+ species resulted in abundant chemisorbed oxygen, which contributed to the co-oxidation of HCHO and CO. In addition, water exhibited a negative effect on the simultaneous removal of CO and HCHO. Based upon these results, a possible mechanism for the simultaneous removal of CO and HCHO at room temperature is also proposed.
机译:一系列Pt-Au / CeO2催化剂通过就做好了准备浸渍deposition-precipitation (IDP)和reduction-deposition降水(RDP)方法。同时去除一氧化碳(CO)在室温下和甲醛(一氧化碳)评估。催化剂,通过RDP准备方法,表现出更高的催化活性。表征结果表明,两个因素占这一现象。是更多的带负电金属Pt吗纳米颗粒在液体中获得阶段NaBH4减少治疗的准备过程,第二个因素是,更非盟+物种形成使用尿素作为沉淀剂在非盟deposition-precipitation。数量的带负电金属Pt纳米颗粒和非盟+物种了丰富的化学吸附氧,导致一氧化碳的共氧化和CO .)此外,水表现出负面的影响同时删除公司和一氧化碳。这些结果,一个可能的机制同时删除CO和一氧化碳在房间温度还提议。

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