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Potential impact of rainfall on the air-surface exchange of total gaseous mercury from two common urban ground surfaces

机译:降雨对来自两个常见城市地面的总气态汞的空气表面交换的潜在影响

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摘要

The impact of rainfall on total gaseous mercury (TGM) flux from pavement and street dirt surfaces was investigated in an effort to determine the influence of wet weather events on mercury transport in urban watersheds. Street dirt and pavement are common urban ground surfaces that concentrate many substances (eroded soil, leaf and vegetation litter, automobile debris, industrial atmospheric fallout) which can contain elevated mercury concentrations. In this study, the primary analyses included (i) observing the time series flux of TGM from pavement and street dirt following surface wetting and (ii) determining if wet deposition provides a fresh source of mercury that is available for release (emission) when applied to these surfaces. Application of de-ionized water (Dl) and rainwater both induced an immediate 65% increase in TGM emission from pavement (from 0.5 to 1.4 ng m~(-2) h~(-1) [based on averages]). For street dirt, an immediate 70% increase in emission was induced following Dl water application (from 3.0 to 9.0 ng m~(-2) h~(-1) [based on averages]) and an immediate 30% increase in emission following rainwater application (from 4.5 to 6.5 ng m~(-2) h~(-1) [based on averages]). Both surfaces showed continuous elevated release of TGM following the initial water application stage. There was a decrease in emission as the pavement surface dried. Despite the difference in immediate TGM emission from street dirt using both solutions, statistical evaluation indicated there was no prolonged difference. This suggests that mercury in rainwater was not available for re-emission when applied to these surfaces, at least for the time frame studied (2 h after water application). Therefore, it is likely that the elevated TGM emission following water application resulted primarily from pre-existing mercury. Removal of pre-existing mercury by water application followed a zero order process for both surfaces; however, removal rates were much different for each surface (k = 0.26 ng m~(-2)min~(-1) for street dirt; k=0.03 ngm~(-2)min~(-1) for pavement). Results from laboratory surface washing experiments revealed only 0.1% of all available surface-bound mercury on pavement was removed by surface emission 90 min after a simulated light rainfall event (0.13 cm of rainfall).
机译:为了确定潮湿天气事件对城市流域汞迁移的影响,研究了降雨对人行道和街道污垢表面总气态汞(TGM)通量的影响。街道的污垢和人行道是城市常见的地面,集中了许多可能含有较高汞含量的物质(侵蚀的土壤,叶子和植被的垃圾,汽车碎片,工业大气尘埃)。在这项研究中,主要分析包括(i)观察表面润湿后路面和街道污垢产生的TGM的时间序列通量,以及(ii)确定湿法沉积是否提供了可用于释放(排放)的新鲜汞源。这些表面。去离子水(Dl)和雨水的应用均导致路面TGM排放立即增加了65%(从0.5到1.4 ng m〜(-2)h〜(-1)[基于平均值])。对于街道上的污垢,在加入去离子水后立即导致排放量立即增加70%(从3.0到9.0 ng m〜(-2)h〜(-1)[基于平均值]),并在排放后立即增加30%。雨水施用量(从4.5到6.5 ng m〜(-2)h〜(-1)[基于平均值])。在初始施水阶段后,两个表面均显示TGM的释放持续升高。随着路面干燥,排放量减少。尽管使用这两种解决方案,街道污垢的即时TGM排放均存在差异,但统计评估表明并没有长期差异。这表明,至少在所研究的时间范围内(加水后2小时),雨水中的汞在施用于这些表面时不可再排放。因此,加水后TGM排放增加可能主要是由于预先存在的汞引起的。通过水处理去除两个表面上先前存在的汞;但是,每个表面的去除率差异很大(路面污垢的k = 0.26 ng m〜(-2)min〜(-1);路面的k = 0.03 ngm〜(-2)min〜(-1))。实验室表面冲洗实验的结果表明,在模拟的小雨事件(0.13厘米的降雨)发生90分钟后,路面上只有0.1%的可用表面结合的汞被表面排放物去除。

著录项

  • 来源
    《Atmospheric environment》 |2011年第9期|p.1766-1774|共9页
  • 作者单位

    Department of Civil, Construction and Environmental Engineering, The University of Alabama, 7th Ave. and Campus Dr., Tuscaloosa, Al. 35487, USA;

    Department of Civil, Construction and Environmental Engineering, The University of Alabama, 7th Ave. and Campus Dr., Tuscaloosa, Al. 35487, USA;

    National Oceanic and Atmospheric Administration (NOAA), ATDD/Canaan Valley Institute, 494 Riverstone Rd., Davis, WV 26260, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    total gaseous mercury; urban; rainfall; terrestrial surface; air-surface exchange; runoff;

    机译:气态汞总量;城市雨量;地面空气表面交换;径流;

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