首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Highly Efficient and Stable Au/CeO2-TiO2 Photocatalyst for Nitric Oxide Abatement: Potential Application in Flue Gas Treatment
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Highly Efficient and Stable Au/CeO2-TiO2 Photocatalyst for Nitric Oxide Abatement: Potential Application in Flue Gas Treatment

机译:高效,稳定的Au / CeO2-TiO2光催化剂用于一氧化氮减排:在烟气处理中的潜在应用

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摘要

In the present work, highly efficient and stable Au/CeO2-TiO2 photocatalysts were prepared by a microwave-assisted solution approach. The Au/CeO2-TiO2 composites with optimal molar ratio of Au/Ce/Ti of 0.004:0.1:1 delivered a remarkably high and stable NO conversion rate of 85% in a continuous flow reactor system under simulated solar light irradiation, which far exceeded the rate of 48% over pure TiO2. The tiny Au nanocrystals (similar to 1.1 nm) were well stabilized by CeO2 via strong metal support bonding even it was subjected to calcinations at 550 degrees C for 6 h. These Au nano crystals served as the very active sites for activating the molecule of nitric oxide and reducing the transmission time of the photogenerated electrons to accelerate O-2 transforming to reactive oxygen species. Moreover, the Au-Ce3+ interface formed and served as an anchoring site of O-2 molecule. Then more adsorbed oxygen could react with photogenerated electrons on TiO2 surfaces to produce more superoxide radicals for NO oxidation, resulting in the improved efficiency. Meanwhile, O-2 was also captured at the Au/TiO2 perimeter site and the NO molecules on TiO2 sites were initially delivered to the active perimeter site via diffusion on the TiO2 surface, where they assisted O-O bond dissociation and reacted with oxygen at these perimeter sites. Therefore, these finite Au nanocrystals can consecutively expose active sites for oxidizing NO. These synergistic effects created an efficient and stable system for breaking down NO pollutants. Furthermore, the excellent antisintering property of the catalyst will allow them for the potential application in photocatalytic treatment of high-temperature flue gas from power plant.
机译:在目前的工作中,通过微波辅助溶液法制备了高效稳定的Au / CeO2-TiO2光催化剂。 Au / Ce / Ti的最佳摩尔比为0.004:0.1:1的Au / CeO2-TiO2复合材料在连续流反应器系统中在模拟太阳光照射下具有非常高且稳定的NO转化率,达到85%,远远超过了纯钛白粉的比率为48%。即使是在550摄氏度下煅烧6小时,微小的Au纳米晶体(类似于1.1 nm)也可以通过CeO2通过牢固的金属支持键很好地稳定。这些金纳米晶体是激活一氧化氮分子并减少光生电子的传输时间以加速O-2转化为活性氧的非常活跃的位点。此外,Au-Ce3 +界面形成并充当O-2分子的锚定位点。然后,更多的吸附氧可以与TiO2表面上的光生电子反应,产生更多的超氧自由基进行NO氧化,从而提高了效率。同时,O-2也被捕获在Au / TiO2周边位置,并且TiO2位置上的NO分子最初通过在TiO2表面上的扩散而传递到活性周边位置,在那里它们协助OO键解离并在这些周边与氧气反应网站。因此,这些有限的金纳米晶体可以连续暴露用于氧化NO的活性位点。这些协同效应创造了一种高效,稳定的系统,用于分解NO污染物。此外,催化剂优异的抗烧结性能使其可潜在地应用于光热处理发电厂的高温烟道气。

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