酸性火山排放物对埃特纳火山土壤中微量金属的生物有效性和流动性的影响

E. Falcone, C. Federico, S. Bellomo, L. Brusca, W. D’Alessandro, M. Longo, S. Calabrese
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引用次数: 5

摘要

我们报告了原始的地球化学数据,这些数据结合了来自埃特纳火山三个不同地区的降雨微量金属含量,这些微量金属含量被火山烟羽不同地熏蒸,以及来自整个火山的土壤的微量金属含量。降雨中微量元素含量主要与酸性灰淋溶有关,而挥发性最强的元素(Cu、Zn、Cd、Pb、As、Sb、Tl、Se)只与酸性灰淋溶有关。我们分别分析了土壤样品的不稳定组分,考虑了植物和土壤生物可利用的组分。用于提取生物有效组分的络合培养基模拟了植物根系的生长环境。土壤样品中生物有效组分中微量元素的含量表现出特殊的模式,显然与烟羽熏蒸无关。生物有效组分中过渡金属含量占拟总组分的15%以下,酸性较弱和离山顶陨石坑最远的土壤样品中过渡金属含量最高。其中Fe、Mn、Co、Ni、Pb、Zn、Cd含量高,土壤有机碳含量高,在峰顶喷口下风采集的样品中增加。固结元素在生物有效组分中的丰度与土壤的蚀变程度有关。在离峰顶喷口较近的土壤样品中富集了Se和Tl两种元素。它们的起源可能与烟柱沉积有关。该研究强调,植物对土壤中存在的潜在有害微量元素的可及性不仅与污染物的暴露有关,还与它们在成土环境中的命运有关。
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Impact of acidic volcanic emissions on ash leaching and on the bioavailability and mobility of trace metals in soils of Mt Etna
We report on original geochemical data, which combine the rainfall trace metal contents from three different areas of Mt. Etna, variably fumigated by the volcanic plume, and those from soils, collected over the whole volcano. Trace element contents in rainfall appear mostly related to acidic ash leaching, while only for the most volatile elements (Cu, Zn, Cd, Pb, As, Sb, Tl, Se). We analyzed separately the labile fraction of soil samples, considered the fraction bioavailable to plants and soil organisms living in. The complexing medium used to extract the bioavailable fraction simulates the growth environment of plant roots.The contents of trace elements in the bioavailable fraction from soil samples showed peculiar patterns, apparently unrelated to the plume fumigation. The transition metal contents in the bioavailable fraction account for less than 15 % of the pseudo-total fraction and the highest contents were measured in the less acidic soil samples and farthest from the summit craters. In particular, high Fe, Mn, Co, Ni, Pb, Zn, Cd contents were paralleled by high soil organic carbon concentrations, which increased in the samples collected downwind the summit vents. Concerning immobile elements, their abundance in the bioavailable fraction was related to the degree of alteration of soils. Two elements, Se and Tl, were enriched in soil samples collected at closer distance from the summit vents. Their origin is probably related to the plume deposition.The study highlighted that the accessibility of plants to potentially harmful trace elements present in the soil is not simply related to the exposure to pollutants, but also to their fate in the pedogenetic environment.
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