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蒸发作用是干旱地区金属迁移的机制。

Evaporation as the transport mechanism of metals in arid regions.

机构信息

Department of Earth Sciences, Division of Geochemistry, Utrecht University, PO Box 80.021, 3508 TA Utrecht, The Netherlands; Ecohydrology, Department of Earth and Environmental Sciences, University of Waterloo, Waterloo N2L 3G1, Canada.

Department of Earth Sciences, Division of Geochemistry, Utrecht University, PO Box 80.021, 3508 TA Utrecht, The Netherlands.

出版信息

Chemosphere. 2014 Sep;111:638-47. doi: 10.1016/j.chemosphere.2014.05.027. Epub 2014 Jun 9.

Abstract

Soils of arid regions are exposed to drought and drastic temperature oscillations throughout the year. Transport mechanisms in these soils are therefore very different from the ones in temperate regions, where rain dictates the fate of most elements in soils. Due to the low rainfall and high evaporation rates in arid regions, groundwater quality is not threatened and all soil contamination issues tend to be overlooked. But if soil contamination happens, where do contaminants go? This study tests the hypothesis of upward metal movement in soils when evaporation is the main transport mechanism. Laboratory evaporation tests were carried out with heavy metal spiked Saudi soil, using circulation of air as the driving force (Fig. 1). Main results show that loamy soil retains heavy metals quite well while evaporation drives heavy metals to the surface of a sandy soil. Evaporation transports heavy metals upward in sandy soils of arid regions, making them accumulate at the soil surface. Sand being the dominating type of soil in arid regions, soils can then be a potential source of contaminated aerosols and atmospheric pollution - a transboundary problem. Some other repercussions for this problem are foreseen, such as the public ingestion or inhalation of dust.

摘要

干旱地区的土壤全年都面临干旱和剧烈的温度波动。因此,这些土壤中的传输机制与温带地区的传输机制非常不同,在温带地区,降雨决定了土壤中大多数元素的命运。由于干旱地区降雨量低、蒸发率高,地下水质量不会受到威胁,所有土壤污染问题往往被忽视。但是,如果土壤受到污染,污染物会去哪里?本研究通过使用空气循环作为驱动力的沙特污染土壤的实验室蒸发试验(图 1),测试了蒸发是主要传输机制时土壤中金属向上迁移的假设。主要结果表明,壤土能很好地保留重金属,而蒸发则将重金属驱赶到沙土表面。蒸发会将重金属向上运移到干旱地区的沙土中,使其在土壤表面积累。由于沙土是干旱地区占主导地位的土壤类型,土壤可能成为受污染气溶胶和大气污染的潜在来源,这是一个跨界问题。预计还会出现其他一些与这个问题相关的后果,例如公众摄入或吸入灰尘。

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