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首页> 外文期刊>International Journal of Photoenergy >Simultaneous Elimination of Formaldehyde and Ozone Byproduct Using Noble Metal Modified TiO2Films in the Gaseous VUV Photocatalysis
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Simultaneous Elimination of Formaldehyde and Ozone Byproduct Using Noble Metal Modified TiO2Films in the Gaseous VUV Photocatalysis

机译:贵金属修饰的TiO2薄膜在气相VUV光催化中同时消除甲醛和臭氧副产物

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Simultaneous removal of low concentration formaldehyde (HCHO) and ozone byproduct was investigated in the gaseous VUV (vacuum ultraviolet) photocatalysis by using noble metal modified TiO2films. Noble metal (Pt, Au, or Pd) nanoparticles were deposited on TiO2films with ultrafine particle size and uniform distribution. Under 35 h VUV irradiation, the HCHO gas (ca. 420 ppbv) was dynamically degraded to a level of 10~45 ppbv without catalyst deactivation, and over 50% O3byproduct wasin situdecomposed in the reactor. However, under the same conditions, the outlet HCHO concentration remained at 125~178 ppbv in the O3+ UV254 nmphotocatalysis process and 190~260 ppbv in the UV254 nmphotocatalysis process. And the catalyst deactivation also appeared under UV254 nmirradiation. Metallic Pt or Au could simultaneously increase the elimination of HCHO and ozone, but the PdO oxide seemed to inhibit the HCHO oxidation in the UV254 nmphotocatalysis. Deposition of metallic Pt or Au reduces the recombination of h+/e−pairs and thus increases the HCHO oxidation and O3reduction reactions. In addition, adsorbed O3may be partly decomposed by photogenerated electrons trapped on metallic Pt or Au nanoparticles under UV irradiation.
机译:通过使用贵金属改性的TiO2膜,研究了气态VUV(真空紫外)光催化同时去除低浓度甲醛(HCHO)和臭氧副产物的方法。贵金属(Pt,Au或Pd)纳米颗粒以超细粒径和均匀分布沉积在TiO2薄膜上。在35 h VUV照射下,HCHO气体(约420 ppbv)在不使催化剂失活的情况下被动态降解至10〜45 catalystppbv的水平,并且反应器中的O3副产物含量超过50%。但是,在相同条件下,O3 + UV254 nm光催化过程中出水HCHO浓度保持在125〜178 ppbv,UV254 nm光催化过程中出水HCHO浓度保持在190〜260 ppbv。在UV254辐射下催化剂失活也出现。金属Pt或Au可以同时增加HCHO和臭氧的消除,但是PdO氧化物似乎在UV254 nm光催化中抑制HCHO氧化。金属Pt或Au的沉积会减少h + / e-对的重组,从而增加HCHO氧化和O3还原反应。另外,在紫外线照射下,被吸附在金属Pt或Au纳米颗粒上的光生电子可能会部分分解吸附的O3。

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