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金属污染导致微生物活性受损:一个停用铀矿区的实地研究。

Impaired microbial activity caused by metal pollution: A field study in a deactivated uranium mining area.

机构信息

CESAM e Departamento de Biologia, Universidade de Aveiro, Campus de Santiago, 3810-193 Aveiro, Portugal.

出版信息

Sci Total Environ. 2011 Dec 1;410-411:87-95. doi: 10.1016/j.scitotenv.2011.09.003. Epub 2011 Oct 20.

Abstract

European frameworks for the ecological risk assessment (ERA) of contaminated sites integrate information from three lines of evidence: chemical, ecotoxicological, and ecological. Regarding the last one, field observations at the contaminated sites are compared to reference site(s) and the differences recorded are analysed at the light of a cause-effect relationship, taking into account the site-specific contamination. Thus, included in the tier 2 of a site-specific risk assessment that is being carried out in an deactivated uranium mining area, a battery of soil enzyme activities (dehydrogenases, urease, arysulphatase, cellulase, acid phosphate) and potential nitrification were assessed in seven sampling sites (A-D-E-F-G-H-I) at different distances from the mine pit. These parameters have been considered good indicators of impacts on soil microbial communities and, subsequently, on soil functions. Soil enzyme activities were impaired in the most contaminated site (A, near the mine pit), for which a higher degree of risk was determined in the tier 1 of ERA. Three other sites within the mining area (F, G, and D) were discriminated on the basis of their low microbial activity, using uni- and multivariate approaches, and validating what had been previously found with chemical and ecotoxicological lines of evidence. We observed considerable among-site heterogeneity in terms of soil physical and chemical properties, combined with seasonal differences in enzyme activities. Still, the correlation between microbial parameters and soil general physical and chemical parameters was weak. In opposition, significant and negative correlations were found between soil enzyme activities and several metallic elements (Al, Be, Cu, U). These findings suggest a clear correlation between compromised soil function (nutrient recycling) and metal contamination. Such information reinforces the evidence of risks for some sites within the mining area and is an important contribution for the usefulness of soil enzyme activities for evaluating changes in soil health.

摘要

欧洲用于污染场地生态风险评估(ERA)的框架整合了三条证据线的信息:化学、生态毒理学和生态学。关于最后一条,将受污染场地的现场观测结果与参照场地进行比较,并根据因果关系对记录的差异进行分析,同时考虑到场地特有的污染。因此,在对一个已停用的铀矿区进行的特定场地风险评估的第 2 层中,评估了一系列土壤酶活性(脱氢酶、脲酶、芳基硫酸酯酶、纤维素酶、酸性磷酸酶)和潜在硝化作用,在距离矿坑不同距离的七个采样点(A-D-E-F-G-H-I)进行了这些参数被认为是对土壤微生物群落及其随后对土壤功能产生影响的良好指标。在最受污染的场地(A,靠近矿坑)中,土壤酶活性受到了损害,在 ERA 的第 1 层中确定了更高程度的风险。在矿区内的另外三个场地(F、G 和 D)根据其低微生物活性,使用单变量和多变量方法进行了区分,并验证了先前在化学和生态毒理学证据线上发现的结果。我们观察到土壤物理和化学性质存在相当大的场地间异质性,同时酶活性也存在季节性差异。然而,微生物参数与土壤一般物理和化学参数之间的相关性很弱。相反,发现土壤酶活性与几种金属元素(Al、Be、Cu、U)之间存在显著的负相关关系。这些发现表明,土壤功能受损(养分循环)与金属污染之间存在明显的相关性。这些信息增强了矿区内一些场地存在风险的证据,并且是土壤酶活性用于评估土壤健康变化的有用性的重要贡献。

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