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Integrated Assessment of the impact of Aqueous Contaminant Stressors on Surface Water Ecosystems

机译:水污染胁迫源对地表水生态系统影响的综合评估

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摘要

Release of chemicals, either by accidental spillage (e.g. xenobiotics) or direct application/release (e.g. pesticides, micropollutants), is recognized as a significant threat to water resources worldwide. However, little is known about the impact of groundwater contamination on surface water ecosystems. Traditional approaches for managing aquatic resources have often failed to account for the potential effects of anthropogenic disturbances on biota. To fulfil the requirements of the EU Water Framework Directive will be challenging, as it is difficult to successfully separate and evaluate all pressures stressing an ecosystem. Here, methods for determining ecological status in streams are evaluated to see if they are capable of capturing the effects of stressors potentially affecting ecosystems. Specifically, they are tested on a case study where the effects of physical habitat degradation can be ruled out as a stressor on stream ecological conditions (Rasmussen et al., 2011). This study follows earlier work conducted on a Danish case study involving a TCE groundwater plume discharging into a small stream, located in an area with protected drinking water interests (McKnight et al., 2010). In that study, an integrated modelling approach explicitly linked the contaminant point source in groundwater to both surface water and ecological impacts. The purpose of this study is to: (1) compare two modelling approaches; (2) extend the model for additional xenobiotics, pesticides and micropollutants to generalise the findings in the case study; (3) compare two sampling-based indices, i.e. the SPE cies At Risk (Liess et al., 2008) and Danish Stream Fauna Index (Miljøstyrelsen, 1998). Both indices are linked to the EU water quality class system and applied to the results of an extensive field campaign carried out in summer 2010. The campaign included an analysis of xenobiotics in surface water, inorganic chemistry, diffuse source (run-off) impacts and ecology along a gradient of contamination in the stream. Modelling results indicate that naphthalene, glyphosate and 4-nonylphenol could adversely impact ecosystems at expected environmentally-relevant concentrations. In general, thresholds determined for all compounds in the study were within the source mass discharge ranges expected at sites where contaminants may leach into groundwater (ITR C, 2010). Results of a sensitivity analysis revealed (low) oxygen content, as well as hydro-morphological changes to the stream channel (i.e. percent rifflerun- pool, channel type) to be dominant controls affecting the modelled stream ecosystem. In addition, the field study indicates that the Danish Stream Fauna Index, currently used in Denmark for evaluating ecological status in streams, is not capable of capturing the effects of nonnutrient stressors on benthic macroinvertebrates.
机译:通过意外泄漏(例如异种生物)或直接施用/释放(例如农药,微量污染物)释放化学物质被认为是对全世界水资源的重大威胁。但是,关于地下水污染对地表水生态系统的影响知之甚少。传统的管理水生资源的方法常常无法解释人为干扰对生物群的潜在影响。满足欧盟水框架指令的要求将具有挑战性,因为很难成功地分离和评估所有压力给生态系统带来的压力。在这里,对确定河流生态状况的方法进行了评估,以查看它们是否能够捕获可能影响生态系统的压力源的影响。具体而言,在案例研究中对它们​​进行了测试,可以排除物理栖息地退化对河流生态条件的压力(Rasmussen等,2011)。这项研究是在丹麦案例研究的早期工作之前开展的,该案例涉及将三氯乙烯(TCE)地下水羽流排放到一条小溪中,该小溪位于受保护的饮用水利益地区(McKnight等,2010)。在该研究中,一种综合建模方法将地下水中的污染点源明确地与地表水和生态影响联系在一起。本研究的目的是:(1)比较两种建模方法; (2)扩展其他异种生物,农药和微污染物的模型,以概括案例研究中的发现; (3)比较两个基于抽样的指数,即SPE处于危险中的程度(Liess等,2008)和丹麦河流动物指数(Miljøstyrelsen,1998)。这两个指数均与欧盟水质等级系统相关联,并应用于2010年夏季开展的广泛田间运动的结果。该运动包括分析地表水中的异生物素,无机化学,扩散源(径流)影响和沿河流中污染物梯度变化的生态。建模结果表明,萘,草甘膦和4-壬基苯酚在预期的与环境相关的浓度下可能会对生态系统产生不利影响。一般而言,在研究中确定的所有化合物的阈值均在污染物可能会渗入地下水的场所所预期的源物质排放范围内(ITR C,2010年)。敏感性分析的结果表明,(低)氧含量以及溪流通道的水形态变化(即,鱼池百分比,通道类型)是影响模拟溪流生态系统的主要控制因素。此外,现场研究表明,丹麦目前用于评估河流生态状况的丹麦河流动物群指数无法捕获非营养胁迫对底栖大型无脊椎动物的影响。

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