NOx Abatement by a TiO2-Based Coating under Real-Life Conditions and Laboratory-Scale Durability Assessment

Julie Hot, Clément Fériot, Emilie Lenard, Erick Ringot
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Abstract

In urban environments, various pollutants generated by road traffic, human, and industrial activities degrade outdoor and indoor air quality. Among these pollutants, nitrogen oxides (NOx) are subject to air quality regulations designed to protect human health and the environment. It is therefore crucial to keep their concentration as low as possible. Advanced oxidation processes are a practical choice for the degradation of NOx; among them, heterogeneous photocatalysis has proven to be a viable route. However, while the efficiency of this process has been widely demonstrated on a laboratory scale, it is still the subject of debate for real-life applications. The purpose of this study was to present a new field experiment on the application of a photocatalytic coating to outdoor walls. Air quality monitoring stations were used to evaluate the NOx concentration reduction instead of the chemiluminescent analyzer, in order to increase the number of sampling points. Statistical analysis was carried out to interpret the results. Density probability functions were plotted and showed a positive impact of the coating, leading to lower NOx concentrations. This work was completed by a laboratory-scale assessment of the coating’s durability using abrasion, QUV, and immersion/drying tests. The air depollution capacity of the chosen coating was significantly reduced after QUV testing.
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基于二氧化钛的涂层在现实条件下的氮氧化物减排效果及实验室规模的耐久性评估
在城市环境中,道路交通、人类和工业活动产生的各种污染物会降低室外和室内的空气质量。在这些污染物中,氮氧化物(NOx)受到旨在保护人类健康和环境的空气质量法规的约束。因此,尽可能降低氮氧化物的浓度至关重要。高级氧化工艺是降解氮氧化物的实用选择;其中,异相光催化已被证明是一条可行的途径。然而,虽然该工艺的效率已在实验室规模上得到广泛证明,但在实际应用中仍存在争议。本研究的目的是介绍在室外墙壁上应用光催化涂层的新现场实验。为了增加采样点的数量,使用空气质量监测站来评估氮氧化物浓度的降低情况,而不是使用化学发光分析仪。对结果进行了统计分析。绘制的密度概率函数显示,涂层对降低氮氧化物浓度有积极影响。在完成这项工作的同时,还利用磨损、QUV 和浸泡/干燥测试对涂层的耐久性进行了实验室规模的评估。经过 QUV 测试后,所选涂层的空气污染能力明显降低。
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