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化学污染对水陆食物网的生态危害和经济损失:从业者的研究设计工具。

Ecological Harm and Economic Damages of Chemical Contamination to Linked Aquatic-Terrestrial Food Webs: A Study-Design Tool for Practitioners.

机构信息

Columbia Environmental Research Center, US Geological Survey, Columbia, Missouri, USA.

Office of Policy Analysis, US Department of the Interior, Washington, District of Columbia, USA.

出版信息

Environ Toxicol Chem. 2023 Sep;42(9):2029-2039. doi: 10.1002/etc.5609. Epub 2023 Apr 17.

Abstract

Contamination of aquatic ecosystems can have cascading effects on terrestrial consumers by altering the availability and quality of aquatic insect prey. Comprehensive assessment of these indirect food-web effects of contaminants on natural resources and their associated services necessitates using both ecological and economic tools. In the present study we present an aquatic-terrestrial assessment tool (AT2), including ecological and economic decision trees, to aid practitioners and researchers in designing contaminant effect studies for linked aquatic-terrestrial insect-based food webs. The tool is tailored to address the development of legal claims by the US Department of the Interior's Natural Resource Damage Assessment and Restoration Program, which aims to restore natural resources injured by oil spills and hazardous substance releases into the environment. Such cases require establishing, through scientific inquiry, the existence of natural resource injury as well as the determination of the monetary or in-kind project-based damages required to restore this injury. However, this tool is also useful to researchers interested in questions involving the effects of contaminants on linked aquatic-terrestrial food webs. Stylized cases exemplify how application of AT2 can help practitioners and researchers design studies when the contaminants present at a site are likely to lead to injury of terrestrial aerial insectivores through loss of aquatic insect prey and/or dietary contaminant exposure. Designing such studies with ecological endpoints and economic modeling inputs in mind will increase the relevance and cost-effectiveness of studies, which can in turn improve the outcomes of cases and studies involving the ecological effects of contaminants on food webs. Environ Toxicol Chem 2023;42:2029-2039. Published 2023. This article is a U.S. Government work and is in the public domain in the USA. Environmental Toxicology and Chemistry published by Wiley Periodicals LLC on behalf of SETAC.

摘要

水生生态系统的污染会通过改变水生昆虫猎物的可利用性和质量,对陆地消费者产生级联效应。全面评估污染物对自然资源及其相关服务的这些间接食物网效应,需要同时使用生态和经济工具。在本研究中,我们提出了一种水生-陆地评估工具(AT2),包括生态和经济决策树,以帮助从业者和研究人员设计用于连接的水生-陆地基于昆虫的食物网的污染物效应研究。该工具针对美国内政部自然资源损害评估和恢复计划提出的法律索赔进行了定制,该计划旨在恢复因溢油和有害物质释放到环境中而受损的自然资源。在这种情况下,需要通过科学调查来确定自然资源受损的存在,并确定恢复这种受损所需的货币或实物项目损害。然而,该工具对于有兴趣研究污染物对连接的水生-陆地食物网影响的研究人员也很有用。示例案例说明了如何应用 AT2 来帮助从业者和研究人员设计研究,当现场存在的污染物可能通过失去水生昆虫猎物和/或饮食污染物暴露导致陆地空中食虫动物受伤时。考虑到生态终点和经济建模输入来设计这些研究,将提高研究的相关性和成本效益,从而改善涉及污染物对食物网的生态影响的案例和研究的结果。环境毒理化学 2023;42:2029-2039. 2023 年出版。本文是美国政府的工作,在美国境内属于公有领域。环境毒理化学由 Wiley Periodicals LLC 代表 SETAC 出版。

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