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A simulation study of mercury release fluxes from soils in wet-dry rotation environment

机译:干湿循环环境下土壤汞释放通量的模拟研究

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A simulative mesocosm study was conducted to evaluate the influence of wet-dry rotation on mercury (Hg) flux from soil/water to air and the distribution of Hg species in water as well as Hg chemical fractions in soil. Three types of soil were employed including two kinds of paddy soil, Typic Purpli-Udic Cambosols (TPUC) and Xanthi-Udic Ferralosols (XUF), as well as the Alluvial Soil (AS) from Three Gorge reservoir area in Chongqing, China. The results showed that Hg fluxes in wetting periods were significantly higher than that in drying periods. It might be due to the formation of a layer of stable air over the water surface in which some redox reactions promote evasion processes over the water surface. This result indicated that more Hg would be evaporated from the Three Gorge reservoir and paddy soil field during the flooding season. Hg fluxes were positively correlated with air temperature and solar irradiation, while negatively correlated with air humidity and the electronic conductivity of water. Hg fluxes from AS and TPUC were significantly higher than that from XUF, which might be due to the higher organic matter (OM) contents in XUF than TPUC and AS. The reduction processes of oxidized Hg were restrained due to the strong binding of Hg to OM, resulting in the decrease in Hg flux from the soil.
机译:进行了模拟的介观研究,以评估干湿旋转对从土壤/水到空气的汞(Hg)通量以及水中Hg种类的分布以及土壤中Hg化学成分的影响。使用了三种类型的土壤,包括两种稻田土壤,典型的是典型的普迪乌迪乌干土(TPUC)和黄嘌呤-乌迪乌铁酸盐(XUF),以及来自中国重庆三峡库区的冲积土(AS)。结果表明,湿润时期汞通量明显高于干燥时期。这可能是由于在水表面形成了一层稳定的空气,其中某些氧化还原反应促进了水表面的逃逸过程。该结果表明,在洪水季节,三峡水库和稻田会蒸发更多的汞。汞通量与气温和太阳辐射呈正相关,而与空气湿度和水的电导率呈负相关。来自AS和TPUC的汞通量显着高于来自XUF的汞通量,这可能是由于XUF中的有机物(OM)含量高于TPUC和AS。由于Hg与OM的牢固结合,抑制了Hg的还原过程,从而降低了土壤中Hg的通量。

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