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Factors influencing the daily behaviour of dissolved gaseous mercury concentration in the Mediterranean Sea

机译:影响地中海地区溶解性气态汞浓度的日常行为的因素

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Mercury evasional fluxes from the sea surface into the atmosphere play an important role in the Hg biogeochemical cycle, especially in the Mediterranean basin, which is characterized by the presence of large cinnabar deposits, intense solar radiation and high temperatures for many months of the year. Since the available experimental methodologies to measure mercury flux can be used only in good weather conditions, at present it is necessary to make use of exchange models that require the knowledge of the dissolved gaseous mercury (DGM) concentration in seawater. In this paper, the main factors affecting DGM levels are discussed considering the determination of the DGM daily behaviour in different meteo-marine and weather conditions at coastal and offshore locations of the Mediterranean basin. A fully automatic device for continuous analyses of DGM concentration with a high time resolution was used. Results show that the daily trend of DGM concentration tracks that of the solar radiation intensity, often mapping the movement of the clouds. DGM levels can be decreased by the presence of high winds that increase mercury evasion from the water surface, as well as by the mixing of the surface water layer. The presence of high levels of dissolved organic matter favours the photo-induced reduction of mercury as observed by the measurements performed in a lagoon water.
机译:从海面到大气中的汞逸出通量在汞的生物地球化学循环中起着重要作用,尤其是在地中海盆地,该盆地的特征是一年中有很多个月存在大量的朱砂沉积物,强烈的太阳辐射和高温。由于可用的测量汞通量的实验方法只能在良好的天气条件下使用,因此目前有必要使用需要了解海水中溶解性气态汞(DGM)浓度的交换模型。在本文中,讨论了确定DGM水平的主要因素,并考虑了确定地中海盆地沿岸和近海不同气象条件和天气条件下DGM的日常行为。使用了一种全自动设备,用于以高时间分辨率连续分析DGM浓度。结果表明,DGM浓度的每日趋势跟踪太阳辐射强度的趋势,并经常绘制云的运动图。 DGM的含量可以通过强风的存在而降低,因为强风会增加汞从水表面的逸出,以及地表水层的混合。如在泻湖水中进行的测量所观察到的,高含量的溶解有机物的存在有利于汞的光诱导还原。

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