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1995-2004 年间加拿大空气和降水监测网络与国家大气沉降计划获取的降水化学测量值比较。

Comparison of precipitation chemistry measurements obtained by the Canadian Air and Precipitation Monitoring Network and National Atmospheric Deposition Program for the period 1995-2004.

机构信息

Branch of Quality Systems, US Geological Survey, Denver Federal Center, Mail Stop 401, Bldg. 95, Box 25046, Denver, CO 80225, USA.

出版信息

Environ Monit Assess. 2010 May;164(1-4):111-32. doi: 10.1007/s10661-009-0879-8. Epub 2009 May 6.

Abstract

Precipitation chemistry and depth measurements obtained by the Canadian Air and Precipitation Monitoring Network (CAPMoN) and the US National Atmospheric Deposition Program/National Trends Network (NADP/NTN) were compared for the 10-year period 1995-2004. Colocated sets of CAPMoN and NADP instrumentation, consisting of precipitation collectors and rain gages, were operated simultaneously per standard protocols for each network at Sutton, Ontario and Frelighsburg, Ontario, Canada and at State College, PA, USA. CAPMoN samples were collected daily, and NADP samples were collected weekly, and samples were analyzed exclusively by each network's laboratory for pH, H(+), Ca(2+), Mg(2+), Na(+), K(+), NH4(+), Cl(-), NO3(-), and SO4(2-). Weekly and annual precipitation-weighted mean concentrations for each network were compared. This study is a follow-up to an earlier internetwork comparison for the period 1986-1993, published by Alain Sirois, Robert Vet, and Dennis Lamb in 2000. Median weekly internetwork differences for 1995-2004 data were the same to slightly lower than for data for the previous study period (1986-1993) for all analytes except NO3(-), SO4(2-), and sample depth. A 1994 NADP sampling protocol change and a 1998 change in the types of filters used to process NADP samples reversed the previously identified negative bias in NADP data for hydrogen-ion and sodium concentrations. Statistically significant biases (alpha = 0.10) for sodium and hydrogen-ion concentrations observed in the 1986-1993 data were not significant for 1995-2004. Weekly CAPMoN measurements generally are higher than weekly NADP measurements due to differences in sample filtration and field instrumentation, not sample evaporation, contamination, or analytical laboratory differences.

摘要

1995-2004 年期间,对加拿大空气和降水监测网络 (CAPMoN) 和美国国家大气沉降计划/国家趋势网络 (NADP/NTN) 获得的降水化学和深度测量结果进行了比较。安大略省萨顿和弗雷利堡以及宾夕法尼亚州立大学的科帕斯莫恩和 NADP 仪器同时按照每个网络的标准协议进行操作,这些仪器由降水收集器和雨量计组成。CAPMoN 样品每天采集,NADP 样品每周采集,样品仅由每个网络的实验室按照 pH 值、H(+)、Ca(2+)、Mg(2+)、Na(+)、K(+)、NH4(+)、Cl(-)、NO3(-)和 SO4(2-)进行分析。比较了每个网络的每周和年度降水加权平均浓度。这项研究是 Alain Sirois、Robert Vet 和 Dennis Lamb 于 2000 年发表的前一次网络间比较的后续研究。对于 1995-2004 年的数据,与前一个研究期(1986-1993 年)的数据相比,1994 年 NADP 采样方案的改变和用于处理 NADP 样品的过滤器类型的改变导致除了 NO3(-)、SO4(2-)和样品深度之外,所有分析物的每周网络间中位数差异相同或略低。1986-1993 年数据中观测到的氢离子和钠离子浓度的 NADP 数据的先前确定的负偏差由于氢离子和钠离子浓度的 NADP 数据的先前确定的负偏差由于 1994 年 NADP 采样方案的改变和用于处理 NADP 样品的过滤器类型的改变而得到纠正。在 1986-1993 年数据中观察到的钠离子和氢离子浓度的统计上显著偏差(alpha = 0.10)在 1995-2004 年期间并不显著。由于样品过滤和现场仪器的差异,而不是样品蒸发、污染或分析实验室的差异,CAPMoN 的每周测量值通常高于 NADP 的每周测量值。

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