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An experimental study of the impacts of solar radiation and temperature on mercury emission from different natural soils across China

机译:太阳辐射和温度对全国不同自然土壤汞排放影响的实验研究

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Mercury (Hg) emission from natural soil is one of the most important contributors to global Hg cycles. Research on Hg emission from soil to air has been carried out in China. Currently, most of the research focuses on contaminated sites in China, while research in other regions is rare. To provide more accurate information on Hg emissions from soil to air in China and obtain additional laboratory data to verify the role of solar radiation and temperature in this process, we sampled and measured Hg emission fluxes from various natural soils (range, 48-240 ng/g) across mainland China under different solar radiation (0-900 W center dot m(-2)) and temperature (15-45 degrees C) conditions in a laboratory. We found that in different places in China, Hg emissions from natural soils occurred more easily when the soil Hg concentration, temperature, and solar radiation were high, but the impacts were different among the regions due to different soil types. Hg emissions from natural soils (0.071-24 ng center dot m(2)center dot h(-1)) were typically lower than those from contaminated sites, suggesting that additional measurements in natural soils are desirable. The results of this study could provide more accurate information on Hg emission from natural soil to air and help establish a nationwide natural soil Hg emission inventory in China.
机译:天然土壤中的汞(Hg)排放是全球汞循环最重要的因素之一。中国已经进行了从土壤到空气中汞排放的研究。当前,大多数研究集中在中国受污染的地点,而其他地区的研究则很少。为了提供有关中国土壤到空气中Hg排放的更准确信息并获得更多的实验室数据以验证太阳辐射和温度在此过程中的作用,我们对各种天然土壤(范围48-240 ng)中的Hg排放通量进行了采样和测量。 / g)在实验室中在不同的太阳辐射(0-900 W中心点m(-2))和温度(15-45摄氏度)条件下遍及中国大陆。我们发现在中国的不同地方,当土壤中的汞浓度,温度和太阳辐射较高时,自然土壤中的汞排放更容易发生,但由于土壤类型的不同,不同地区的影响也不同。天然土壤中的汞排放量(0.071-24 ng中心点m(2)中心点h(-1))通常低于受污染地点的汞排放量,这表明在自然土壤中进行其他测量是合乎需要的。这项研究的结果可以提供有关从自然土壤到空气的汞排放的更准确的信息,并有助于在中国建立全国范围的自然土壤汞排放清单。

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