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首页> 外文期刊>Oceanographic Literature Review >Aquatic ecological risk assessment frameworks in Canada: a case study using a single framework in South Baymouth, Ontario, Canada
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Aquatic ecological risk assessment frameworks in Canada: a case study using a single framework in South Baymouth, Ontario, Canada

机译:加拿大水产生态风险评估框架:在加拿大安大略省南湾南北口框架的案例研究

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摘要

Ecological risk assessment (ERA) is used to determine potential effect of human activities and industries on the natural environment. Numerous ERA management approaches exist and vary based on jurisdiction or ecological media. This ERA focused on contaminants within an aquatic ecosystem in sediments and surface water at South Baymouth port facility in Ontario, Canada. Contaminants were evaluated using the Canada-Ontario Decision-Making Framework for Assessment of Great Lakes Contaminated Sediments (COA). Following COA, this study (1) examined historical data from South Baymouth to determine contaminants of potential concern, (2) delineated potential contamination by comparing sediment and surface water concentration data to sediment quality guidelines and water quality guidelines from Canada and from different jurisdictions if Canadian guidelines were unavailable, (3) compared sediment concentrations to reference concentrations, and (4) developed an ERA decision matrix (used to inform management decisions at this aquatic site). Although sediments exhibited negligible potential for ecological risk and required no remedial management action, this case study highlights strengths of using COA for this ERA which included use of iterative and consistent approaches, but also highlights weaknesses which included unclear linkages between cause and effects of aquatic contaminants. Recommendations for future ERAs at contaminated aquatic sites include use of passive samplers and incorporating recent macroecology techniques.
机译:生态风险评估(ERA)用于确定人类活动和行业对自然环境的潜在影响。许多时代管理方法存在并根据管辖权或生态媒体而变化。这个时代侧重于加拿大安大略省安大略省沉积物和地表水中水生生态系统中的污染物。使用加拿大 - 安大略省决策框架评估污染物,用于评估大湖泊受污染的沉积物(COA)。遵循COA,本研究(1)研究了来自南北京的历史数据,以确定潜在关注的污染物,(2)通过将沉积物和地表水浓度数据与加拿大的沉积物质量指南和水质指南进行比较,以及来自不同司法管辖区的沉积物和水质指南加拿大指南不可用,(3)与参考浓度的沉积物浓度与参考浓度相比,(4)制定了一个时代决策矩阵(用于告知该水生站的管理决策)。虽然沉积物表现出忽略的生态风险和所需的潜力,但无需补救管理行动,突出了使用迭代和一致方法的使用COA的优势,而且还突出了水生污染物的原因与效果之间存在不明确的缺点。污染水生站的未来时代的建议包括使用被动采样器并纳入最近的宏观生态学技术。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|2022-2022|共1页
  • 作者

    M. Quanz; R. Willis; D. Burr;

  • 作者单位

    School for Resource and Environmental Studies Dalhousie University Halifax NS B3H 4R2 Canada;

    School for Resource and Environmental Studies Dalhousie University Halifax NS B3H 4R2 Canada;

    School for Resource and Environmental Studies Dalhousie University Halifax NS B3H 4R2 Canada;

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