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首页> 外文期刊>Journal of Cleaner Production >Anatase/brookite biphasic surface fluorinated Fe-TiO_2 photocatalysts to enhance photocatalytic removal of VOCs under visible and UV light
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Anatase/brookite biphasic surface fluorinated Fe-TiO_2 photocatalysts to enhance photocatalytic removal of VOCs under visible and UV light

机译:锐钛矿/ Brookite双面表面氟化Fe-TiO_2光催化剂,以增强可见和UV光下的光催化去除VOC

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Volatile organic compounds (VOCs) are categorized as a major group of indoor air pollutants with several adverse health effects on humans. Photocatalytic oxidation (PCO) is a promising in-situ air purification technology for removing indoor VOCs. However, the PCO application by using TiO2 photocatalyst is hindered at high humidity and under visible light irradiation. A facile hydrothermal treatment was used to fabricate biphasic anatase-brookite iron-doped TiO2 with different Fe contents (0.2-4 atomic%) to enhance photoactivity of TiO2 under visible and UV light irradiations. Surface fluorination was then applied to reduce the surface hydrophilicity of Fe-TiO2 photocatalyst with the optimum Fe content (FeTi0.4%). Surface fluorination of FeTi-0.4% moderates the surface hydrophilicity to repel water molecules from adsorption. The performance of developed photocatalysts was studied toward degradation of gaseous methyl ethyl ketone (MEK) using ultraviolet (UV) and visible light irradiations. The results reveal that iron metal dopants and surface fluorination promoted the performance of synthesized photo catalysts. It was found that the best single-pass removal efficiency was obtained at RH = 20% on F-FeTi0.4% with values of 54% using visible and 70% using UV illumination. To advance the degradation efficiency and lessen the by-product formation rate, three layers of F-FeTi-0.4% and FeTi-0.4% photocatalyst films were examined. The photocatalytic degradation efficiency for three layers of FeTi-0.4% and F-FeTi0.4% photocatalyst films were respectively 72% and 80% under UV, and 50% and 60% under visible light illumination. This study provided an effective visible-driven photocatalyst for indoor air purification technology. The results revealed the high MEK removal efficiency under visible light as an environmentally sustainable source of energy, leading to lower indoor pollutions to protect human health. (C) 2020 Elsevier Ltd. All rights reserved.
机译:挥发性有机化合物(VOC)被分类为一个主要的室内空气污染物,具有几种对人体的不良健康影响。光催化氧化(PCO)是一种有前途的空气净化技术,用于去除室内VOC。然而,通过使用TiO 2光催化剂的PCO施用在高湿度下阻碍和在可见光照射下。容易水热处理用于制造具有不同Fe含量(0.2-4原子%)的双相锐钛矿 - Brookite铁掺杂TiO 2,以增强可见和UV光照射下TiO 2的光度。然后施用表面氟化以降低Fe-TiO2光催化剂的表面亲水性,具有最佳Fe含量(Feti0.4%)。 FETI-0.4%的表面氟化在吸附物中调节表面亲水性以吸收水分子。使用紫外(UV)和可见光照射研究了发育光催化剂的性能朝向气态甲基乙基酮(MEK)的降解。结果表明,铁金属掺杂剂和表面氟化促进了合成光催化剂的性能。发现在F-Feti0.4%上在rh = 20%获得最佳的单通去除效率,使用可见光和70%使用UV照明的值为54%。为了提高降解效率并减少副产物形成速率,检查了三层F-Feti-0.4%和Feti-0.4%光催化剂薄膜。三层Feti-0.4%和F-Feti0.4%光催化剂薄膜的光催化降解效率分别为紫外线的72%和80%,在可见光照射下为50%和60%。本研究为室内空气净化技术提供了一种有效的可见光光催化剂。结果表明,可见光下的高MEK去除效率作为环境可持续的能源来源,导致室内污染较低,以保护人类健康。 (c)2020 elestvier有限公司保留所有权利。

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