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土壤中汞的存在是否会促进其微生物活性?以阿尔马登汞矿区(西班牙)为例。

Does mercury presence in soils promote their microbial activity? The Almadenejos case (Almadén mercury mining district, Spain).

机构信息

Instituto de Geología Aplicada, IGeA. Universidad de Castilla-La Mancha. Plaza de Manuel Meca, 1, 13400, Almadén, Ciudad Real, Spain; Escuela de Ingenieros Agrónomos, Universidad de Castilla-La Mancha. Ronda de Calatrava, 7, 13071, Ciudad Real, Spain.

Instituto de Geología Aplicada, IGeA. Universidad de Castilla-La Mancha. Plaza de Manuel Meca, 1, 13400, Almadén, Ciudad Real, Spain; Escuela de Ingeniería Minera e Industrial de Almadén. Plaza de Manuel Meca, 1, 13400, Almadén, Ciudad Real, Spain.

出版信息

Chemosphere. 2018 Jun;201:799-806. doi: 10.1016/j.chemosphere.2018.02.163. Epub 2018 Feb 27.

Abstract

Mercury is considered a very toxic element and important efforts are currently being made aimed at reduce or even eliminating its usage. Despite this trend, there are still sites where contamination by this metal is very marked, especially in the mining environment of Almadén where it has been exploited for thousands of years. The several forms in which Hg occurs in the soil interact differently with the organisms that live in/on it. The soil is a place where many biotic and abiotic variables act together. Through a detailed study of the edaphic characteristics of a decommissioned metallurgical enclosure, the presence of different chemical forms of Hg, the study of microbial activity (DHA) and, finally, parameters of the vegetation cover, such as specific distribution and biomass, we have tried to elucidate the effect of the presence of Hg in this precinct with a very high Hg pollution. The obtained results showed the affection patterns by which the different measured parameters vary, with special incidence to the microbial activity of the topsoil and to the specific distribution of the plants found in the studied area. The statistical multivariate analysis showed that significant correlations have been found between soil Hg fractions and between Hg fractions in plants; furthermore, soil conditions seem to be not related with Hg transfer from soils to plants. Biomass and DHA data indicate that the studied area is not affected by the presence of Hg species and lacks the expected toxic effects on the living organisms.

摘要

汞被认为是一种毒性很强的元素,目前正在进行重要的努力,旨在减少甚至消除其使用。尽管有这种趋势,但仍有一些地方受到这种金属的严重污染,特别是在阿尔马登的采矿环境中,几千年来一直在开采这种金属。土壤中存在的汞的几种形态与生活在/在其上的生物体的相互作用方式不同。土壤是许多生物和非生物变量共同作用的地方。通过详细研究一个退役冶金围场的土壤特性,研究不同化学形态的汞,研究微生物活性(DHA),最后研究植被覆盖的参数,如特定分布和生物量,我们试图阐明在这个高度汞污染的区域内汞存在的影响模式。所得结果表明,不同测量参数的变化模式受到影响,特别是表土的微生物活性和研究区域中发现的植物的特定分布。统计多元分析表明,土壤中的汞分数之间以及植物中的汞分数之间存在显著相关性;此外,土壤条件似乎与汞从土壤向植物的转移无关。生物量和 DHA 数据表明,研究区域不受汞物种的影响,也没有对生物产生预期的毒性影响。

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