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Photocatalytic NOX degradation of concrete surface layers intermixed and spray-coated with nano-TiO2: Influence of experimental factors

机译:混凝土表面层的光催化NOx脱模和喷涂纳米TiO2:实验因素的影响

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摘要

TiO2 incorporated Eco-blocks have been successfully developed and widely used worldwide. However, under real-life service, various environmental factors will significantly influence their photocatalytic performance. In this study, the photocatalytic NOx conversion of two sets of concrete surface layers (intermixed and spray-coated with nano TiO2) was investigated and compared under different NO flow rates, initial NO concentrations, ultraviolet (UV) light intensities, light sources and relative humidity (RH) conditions. In addition, the abrasion resistance of all the samples was examined. The results showed that the TiO2 spray-coated samples (SP) outperformed the 5% TiO2-intermixed samples with respect to NOx removal efficiency under all the investigated conditions. Both the NO flow rate and initial NO concentration had a positive impact on the NOx removal rate but a negative influence on the NOx removal ratio. An increase in photocatalytic NOx removal rate and NOx removal ratio was attained by an increase in UV light intensity. Whereas, the NOx removal efficiency first increased, reached a peak, and then decreased with increasing RH. It was found that the most effective light source for photocatalytic NOx removal was UV-A, but Solar light (SL) irradiation resulted in a comparable NOx removal. Moreover, the SP samples harboured robust resistance to abrading. The findings from this study would provide the basis for effectively evaluating the NOx removal performance of concrete surface layers under atmospheric conditions. (C) 2017 Published by Elsevier Ltd.
机译:TiO2公司的生态块已成功开发并广泛使用全球。然而,在现实生活中,各种环境因素会显着影响其光催化性能。在这项研究中,研究了两组混凝土表面层的光催化NOx转化(混合和喷涂纳米TiO2),并在不同的流速下进行比较,初始无浓度,紫外(UV)光强度,光源和相对湿度(RH)条件。此外,检查了所有样品的耐磨性。结果表明,在所有研究条件下,TiO 2喷涂样品(SP)相对于NOx去除效率优于5%TiO 2混合的样品。无流速和初始没有浓度对NOx去除率产生正影响,而是对NOx去除率的负面影响。通过紫外光强度的增加实现了光催化NOx去除率和NOx去除率的增加。然而,NOx去除效率首先增加,达到峰值,然后随着RH的增加而降低。发现光催化NOx去除最有效的光源是UV-A,但太阳光(SL)照射导致可比的NOx去除。而且,SP样品覆盖鲁棒抗磨损。本研究的调查结果将提供有效评估大气条件下混凝土表面层的NOx去除性能的基础。 (c)2017年由elestvier有限公司出版

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