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首页> 外文期刊>Environmental Science: Water Research & Technology >Mitigation options for chemicals of emerging concern in surface waters; operationalising solutions-focused risk assessment
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Mitigation options for chemicals of emerging concern in surface waters; operationalising solutions-focused risk assessment

机译:地表水中新出现的化学物质的缓解方案;以运营解决方案为中心的风险评估

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摘要

The water system provides many services to society; industries, municipalities and agriculture all withdraw, use and return water and demand a water quality fit for the intended purposes. Both global production of chemicals and global water withdrawal grow faster than human population. This implies increased chemical threats to water, and creates a strong driver for mitigation to protect human health, ecosystem integrity and ecosystem services. Here we connect the perspectives of the water cycle and the chemical life cycle and review possible mitigation options. We categorize mitigation options in various stages of the chemicals' life cycle, taking various sectors and environmental pathways into account. More technologically oriented versus other types of mitigation options are discerned, and their relevance on spatial and temporal scale is discussed. We review various water treatment techniques in relation to physical-chemical properties of chemicals. Finally we discuss how a mitigation database can be used to assess the effectiveness of interventions, by coupling them to regional or global hydrological models. A solution-focused and systems-oriented perspective combined with a mitigation database offers a common perspective amongst actors on the effects for water quality of possible mitigation options throughout the chemical's life cycle, in various sectors and at various places in the water system. This can stimulate coherent implementation of effective mitigation options, cross-sectoral learning and further innovations to improve water quality.
机译:水系统为社会提供了许多服务;工业,市政和农业都撤离,使用和回水,并要求水质符合预期目的。全球化学品生产和全球取水量的增长都快于人口。这意味着对水的化学威胁增加,并为减轻危害提供了强有力的动力,以保护人类健康,生态系统完整性和生态系统服务。在这里,我们结合了水循环和化学生命周期的观点,并回顾了可能的缓解措施。我们将化学品生命周期中各个阶段的缓解方案分类,并考虑了各个部门和环境途径。可以发现与其他类型的缓解方案相比,其技术取向更强,并且讨论了它们在空间和时间尺度上的相关性。我们回顾了与化学品的物理化学性质有关的各种水处理技术。最后,我们讨论了如何通过将缓解措施数据库与区域或全球水文模型耦合,将缓解措施数据库用于评估其有效性。以解决方案为中心,面向系统的观点与缓解数据库相结合,为行为者提供了一个共同的观点,即在化学品生命周期中,水系统中各个部门和各个地方,可能的缓解方案对水质的影响。这可以刺激一致地执行有效的缓解措施,跨部门学习以及进一步改善水质的创新。

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