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Bioaccumulation in aquatic systems: methodological approaches monitoring and assessment

机译:水生系统中的生物蓄积:方法学方法监测和评估

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摘要

Bioaccumulation, the accumulation of a chemical in an organism relative to its level in the ambient medium, is of major environmental concern. Thus, monitoring chemical concentrations in biota are widely and increasingly used for assessing the chemical status of aquatic ecosystems. In this paper, various scientific and regulatory aspects of bioaccumulation in aquatic systems and the relevant critical issues are discussed. Monitoring chemical concentrations in biota can be used for compliance checking with regulatory directives, for identification of chemical sources or event-related environmental risk assessment. Assessing bioaccumulation in the field is challenging since many factors have to be considered that can affect the accumulation of a chemical in an organism. Passive sampling can complement biota monitoring since samplers with standardised partition properties can be used over a wide temporal and geographical range. Bioaccumulation is also assessed for regulation of chemicals of environmental concern whereby mainly data from laboratory studies on fish bioaccumulation are used. Field data can, however, provide additional important information for regulators. Strategies for bioaccumulation assessment still need to be harmonised for different regulations and groups of chemicals. To create awareness for critical issues and to mutually benefit from technical expertise and scientific findings, communication between risk assessment and monitoring communities needs to be improved. Scientists can support the establishment of new monitoring programs for bioaccumulation, e.g. in the frame of the amended European Environmental Quality Standard Directive.
机译:生物累积是一种化学物质在生物体内相对于其在环境介质中的水平的累积,这是主要的环境问题。因此,监测生物区中化学物质的浓度已广泛并越来越多地用于评估水生生态系统的化学状况。在本文中,讨论了水生系统中生物蓄积的各种科学和法规方面以及相关的关键问题。监测生物区中化学物质的浓度可用于符合法规要求的合规性检查,化学来源的识别或与事件相关的环境风险评估。评估该领域的生物蓄积具有挑战性,因为必须考虑许多因素,这些因素会影响生物体内化学物质的积累。被动采样可以补充生物群监测,因为具有标准化分区属性的采样器可以在较大的时间和地理范围内使用。还评估了生物蓄积性,以管制环境相关化学品,从而主要利用鱼类生物蓄积性实验室研究的数据。但是,现场数据可以为监管机构提供其他重要信息。对于不同的法规和化学品组,仍然需要统一生物蓄积性评估的策略。为了提高对关键问题的认识并从技术专长和科学发现中互惠互利,需要改善风险评估与监测社区之间的沟通。科学家可以支持建立新的生物蓄积监测计划,例如在经修订的《欧洲环境质量标准指令》的框架内。

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