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全球气候变化对化学物质归趋和生物累积的影响:多介质模型的作用。

Influence of global climate change on chemical fate and bioaccumulation: the role of multimedia models.

机构信息

Unilever, Safety and Environmental Assurance Centre, Colworth Science Park, Sharnbrook, United Kingdom.

出版信息

Environ Toxicol Chem. 2013 Jan;32(1):20-31. doi: 10.1002/etc.2044.

Abstract

Multimedia environmental fate models are valuable tools for investigating potential changes associated with global climate change, particularly because thermodynamic forcing on partitioning behavior as well as diffusive and nondiffusive exchange processes are implicitly considered. Similarly, food-web bioaccumulation models are capable of integrating the net effect of changes associated with factors such as temperature, growth rates, feeding preferences, and partitioning behavior on bioaccumulation potential. For the climate change scenarios considered in the present study, such tools indicate that alterations to exposure concentrations are typically within a factor of 2 of the baseline output. Based on an appreciation for the uncertainty in model parameters and baseline output, the authors recommend caution when interpreting or speculating on the relative importance of global climate change with respect to how changes caused by it will influence chemical fate and bioavailability.

摘要

多媒体环境归宿模型是研究与全球气候变化相关的潜在变化的有价值的工具,这主要是因为这些模型中隐含地考虑了对分配行为以及扩散和非扩散交换过程的热力学驱动。同样,食物网生物累积模型能够综合考虑与温度、生长速率、摄食偏好和分配行为等因素相关的变化对生物累积潜力的净效应。对于本研究中考虑的气候变化情景,这些工具表明,暴露浓度的变化通常在基准输出的 2 倍以内。基于对模型参数和基准输出不确定性的认识,作者建议在解释或推测全球气候变化的相对重要性时要谨慎,要考虑到气候变化将如何影响化学物质的归宿和生物有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69df/3601418/2d17228f2c62/etc0032-0020-f1.jpg

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