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首页> 外文期刊>Journal of Cleaner Production >NO_X photocatalytic degradation on active concrete road surface - from experiment to real-scale application
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NO_X photocatalytic degradation on active concrete road surface - from experiment to real-scale application

机译:活性混凝土路面上的NO_X光催化降解-从实验到实际应用

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摘要

The use of titanium diO_Xide (TiO_2) as a photocatalyst in concrete pavements has received considerable attention in recent years due to its ability to decontaminate via photocatalytic processes. The objective of this study is to assess the effectiveness of activated concrete road in the degradation of nitrogen O_Xides (NO_X). We have used a TiO_2 and activated carbon (AC) permeable spray solution to coat concrete to assess its NO_X purifying ability. A number of experiments were undertaken to ascertain the conditions that affect NO_X purification. Indoor simulation experiments with active concrete road at optimum conditions show that it has good purification ability, self-regeneration and repetition ability, with a minimum decontamination rate for NO and NO_2 of 37.4% and 25.84%, respectively. Outdoor experiments show that the photodegradation of NO_X is related to light intensity and temperature. As the light intensity increases the reaction rate increases, and conversely as temperature increases the reaction rate decreases.
机译:近年来,由于二氧化钛钛(TiO_2)具有通过光催化过程进行净化的能力,因此在混凝土路面中用作光催化剂受到了广泛的关注。这项研究的目的是评估活化的混凝土路面对降解O_Xides(NO_X)的有效性。我们已经使用了TiO_2和活性炭(AC)渗透性喷涂溶液涂覆混凝土,以评估其NO_X净化能力。进行了许多实验以确定影响NO_X净化的条件。在最佳条件下,在活性混凝土路面上进行的室内模拟实验表明,它具有良好的净化能力,自我再生和重复能力,对NO和NO_2的最小去污率分别为37.4%和25.84%。室外实验表明,NO_X的光降解与光强和温度有关。随着光强度增加,反应速率增加,反之,随着温度增加,反应速率降低。

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