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回归基础——利用传统方法估算淡水对酸化的敏感性。

Back to the basics - estimating the sensitivity of freshwater to acidification using traditional approaches.

机构信息

Department of Forest Resources Management, The University of British Columbia, Forest Sciences Centre, 2045-2424 Main Mall, Vancouver, BC V6T 1Z4, Canada.

出版信息

J Environ Manage. 2010 May;91(5):1227-36. doi: 10.1016/j.jenvman.2010.01.013. Epub 2010 Feb 26.

Abstract

This study examines the effects of acidifying sulphur emissions on freshwater ecosystems in the traditional territory of Treaty 8 First Nations in British Columbia (BC). Due to the absence of detailed water chemistry data for most lakes in the region, revised empirical methods for estimating freshwater sensitivity to acidification are formulated using linear regression relationships between individual chemical measurements, and critical loads of acidity calculated using the Steady State Water Chemistry (SSWC) model. Lake alkalinity is the most effective chemical indicator of acidification sensitivity in northeast BC. Critical loads of acidity (CL(A)) estimated using alkalinity range from 0.0827 to 9.48 keq ha(-1) yr(-1). Sulphur deposition estimates range from 0.0113 to 0.303 keq ha(-1) yr(-1) and do not exceed the estimated CL(A) at any of the study lakes. The spatial situation of both the lakes and the emission sources is responsible for the lack of exceedances, and expanded/continued monitoring is recommended to account for geological variability and source proliferation. Measurements of lake conductivity and alkalinity provide a means of community monitoring for freshwater acidification sensitivity as part of cumulative effects management strategies.

摘要

本研究考察了酸化硫排放对不列颠哥伦比亚省(BC)条约 8 第一民族传统领地内淡水生态系统的影响。由于该地区大多数湖泊缺乏详细的水质化学数据,因此使用线性回归关系来制定修订后的经验方法,以评估单个化学测量值和使用稳态水化学(SSWC)模型计算的酸度临界负荷之间的淡水酸化敏感性。湖碱度是不列颠哥伦比亚省东北部酸化敏感性的最有效化学指标。使用碱度估算的酸度临界负荷(CL(A))范围为 0.0827 至 9.48 keq ha(-1) yr(-1)。硫沉积估算值范围为 0.0113 至 0.303 keq ha(-1) yr(-1),在研究的任何湖泊中均未超过估计的 CL(A)。湖泊和排放源的空间情况是造成这种情况的原因,建议扩大/继续监测,以考虑地质变异性和源扩散。湖泊电导率和碱度的测量为淡水酸化敏感性的社区监测提供了一种手段,作为累积效应管理策略的一部分。

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