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全球基准站点的生态系统监测。

Ecosystem monitoring at global baseline sites.

机构信息

Idaho National Engineering Laboratory, Center for Environmental Monitoring and Assessment, EG& G Idaho, Inc., P.O. Box 1625, 83415, Idaho Falls, ID, USA.

出版信息

Environ Monit Assess. 1991 Apr;17(1):3-31. doi: 10.1007/BF00402459.

Abstract

Integrated ecosystem and pollutant monitoring is being conducted at prototype global baseline sites in remote areas of the Noatak National Preserve, Alaska, the Wind River Mountains, Wyoming, and Torres del Paine National Park, Chile. A systems approach has been used in the design of these projects. This approach includes: (1) evaluation of source-receptor relationships, (2) multimedia (i.e., air, water, soil, biota) monitoring of key contaminant pathways within the environment, (3) the use of selected ecosystem parameters to detect anthropogenic influence, and (4) the application of a systems conceptual framework as a heuristic tool.Initial short-term studies of air quality (e.g. SO2, NO2) plus trace metal concentrations in mosses generally indicate pristine conditions at all three of the above sites as expected although trace metals in mosses were higher at the Wyoming site. Selected ecosystem parameters for both terrestrial (e.g. litter decomposition) and aquatic (e.g. shredders, a macroinvertebrate functional feeding group) habitats at the Wyoming site reflected baseline conditions when compared to other studies.Plans also are being made to use U.S. Department of Energy Research Parks for global change monitoring. This will involve cross-site analyses of existing ecological databases and the design of a future monitoring network based on a systems approach as outlined in this paper.

摘要

正在对阿拉斯加诺塔克国家保护区、怀俄明州风河山脉和智利托雷斯德尔潘恩国家公园等偏远地区的原型全球基线站点进行综合生态系统和污染物监测。在这些项目的设计中采用了系统方法。该方法包括:(1)评估源-汇关系,(2)对环境中关键污染物途径的多介质(即空气、水、土壤、生物群)进行监测,(3)利用选定的生态系统参数来检测人为影响,以及(4)应用系统概念框架作为启发式工具。对空气质量(例如 SO2、NO2)和苔藓中痕量金属浓度的短期初步研究通常表明,所有三个上述地点的条件都很原始,尽管怀俄明州的苔藓中痕量金属含量更高。与其他研究相比,怀俄明州陆地(例如凋落物分解)和水生(例如撕食者,一种大型无脊椎动物功能摄食群)栖息地的选定生态系统参数反映了基线条件。还计划利用美国能源部研究园进行全球变化监测。这将涉及对现有生态数据库的跨站点分析,并根据本文概述的系统方法设计未来的监测网络。

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