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Impact of Visible-Solar-Light-Driven photocatalytic pavement on air quality improvement

机译:可见太阳能光触发光催化路面对空气质量改进的影响

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Photocatalytic pavement has attracted significant interest in the past decades by both the academia and industry for its ability of spontaneous cleaning of air pollutants, such as motor vehicle exhaust gas. Titanium dioxide (TiO2) is used as the photocatalyst that is mixed into pavement materials or coated on the pavement to remove motor vehicle exhaust gases, e.g., carbon monoxide (CO), nitrogen oxides (NOx), under the irradiation of the solar light. However, the pure TiO2 additive only absorbs the light within the ultraviolet region due to its large bandgap. One approach to increase the ability of TiO2 to the utilization of the full spectrum of the solar light is doping TiO2. Therefore, this visible-solar-light-driven photocatalytic pavement embedded with doped-TiO2 will exhibits a better cleaning efficiency of exhaust gas. This work conducted computational simulations of the cleaning efficiency on reducing exhaust gas NO2 by photocatalytic pavement with doped-TiO2, and its subsequent influence on the air quality in the surrounding environment. A three-dimensional model was developed for a section of pavement and its vicinal region. Effects of weather conditions, doped-TiO2 coverages, road widths and traffic flow conditions on the removal of NO2 and its influence to the adjacent environment were studied. Results indicate that visible-solar-light-driven photocatalytic pavement with doped-TiO2 features a significantly higher removal efficiency of exhaust gas compared with the normal photocatalytic pavement. Moreover, the doped-TiO2 embedded pavement is effective to remove NO2 with different traffic densities and wind conditions, and consequently improve the air quality of the surrounding environment.
机译:在过去的几十年中,光催化路面吸引了其自发清洁空气污染物等机动车废气的能力。二氧化钛(TiO 2)用作光催化剂,其混入路面材料或涂覆在路面上,以在太阳光照射下除去机动车废气,例如一氧化碳(CO),氮氧化物(NOx)。然而,由于其大的带隙,纯TiO 2添加剂仅吸收紫外区域内的光。一种提高TiO2能力的方法,以利用太阳灯的全光谱是掺杂TiO2。因此,嵌入掺杂掺杂-TiO2的这种可见太阳能光直的光催化路面将具有更好的废气清洁效率。该工作通过光催化路面与掺杂-TiO2的光催化路面减少废气No2的清洁效率的计算模拟,其随后对周围环境中空气质量的影响。开发了一种三维模型,为一段路面及其大亨地区开发。研究了天气条件,掺杂 - TiO2覆盖,道路宽度和交通流量条件对NO2的去除及其对相邻环境的影响。结果表明,与掺杂-TiO2的可见光光驱动的光催化路面具有与正常光催化路面相比明显较高的废气去除效率。此外,掺杂-TiO2嵌入式路面有效地去除不同的交通密度和风力条件,从而改善周围环境的空气质量。

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