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Trends in Summer Chemistry Linked to Productivity in Lakes Recovering from Acid Deposition in the Adirondack Region of New York

机译:与纽约阿迪朗达克地区酸沉降恢复的湖泊生产力相关的夏季化学趋势

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摘要

The US Environmental Protection Agency established the Adirondack Effects Assessment Program (AEAP) to evaluate and monitor the status of biological communities in lakes in the Adirondack region of New York that have been adversely affected by acid deposition. This program includes chemical analysis of 30 lakes, sampled two to three times each summer. Results of trends analysis for lake chemistry and chlorophyll a (chlor a) are presented for 1994 to 2003, and a general comparison is made with recent results of the Adirondack Long-Term Monitoring (ALTM) Program, which included chemical analysis of all but two of these lakes (plus an additional 24 lakes) monthly, year-round for 1992–2004. Increases in pH were found in 25 of the 30 AEAP lakes (P < 0.05) and increases in acid-neutralizing capacity (ANC) were found in 12 of the 30 lakes (P < 0.05). Concentrations of both SO 4 2− and Mg2+ decreased in 11 lakes (P < 0.05), whereas concentrations of NO 3 − decreased in 20 lakes (P < 0.05). Concentrations of NH 4 + decreased in 10 lakes at a significance level of P < 0.05 and in three other lakes based on P < 0.1. Concentrations of inorganic and organic monomeric aluminum generally were below the reporting limit of 1.5 μmol L−1, but decreases were detected in four and five lakes, respectively (P < 0.1). Concentrations of chlor a increased in seven lakes at a significance level of P < 0.05 and two lakes at a significance level of P < 0.1. A significant inverse correlation was also found between chlor a and NO 3 − concentrations in nine lakes at a significance level of P < 0.05 and two lakes at a significance level of P < 0.1. Results of AEAP analysis of lake chemistry were similar to those of the ALTM Program, although decreases in SO 4 2− concentrations were more evident in the year-round ALTM record. Overall, the results suggest (a) a degree of chemical recovery from acidification during the summer, (b) an increase in phytoplankton productivity, and (c) a decreasing trend in NO 3 − concentrations resulting from the increased productivity.
机译:美国环境保护局建立了阿迪朗达克效应评估计划(AEAP),以评估和监测纽约阿迪朗达克地区湖泊中受到酸沉降不利影响的生物群落的状况。该程序包括对30个湖泊的化学分析,每年夏天采样2至3次。给出了1994年至2003年的湖泊化学和叶绿素a(氯a)趋势分析结果,并对与阿迪朗达克长期监测(ALTM)计划的最新结果进行了一般比较,其中包括除两个以外的所有分析1992-2004年间,这些湖中的湖水(加上另外的24个湖)全年无休。在30个AEAP湖泊中有25个发现pH升高(P <0.05),在30个湖泊中12个中发现了中和酸的能力(ANC)。 11个湖泊中SO 4 2 − 和Mg2 + 的浓度均降低(P <0.05),而20个湖泊中NO 3 -的浓度降低(P <0.05)。 P <0.05)。 NH 4 + 的浓度在10个湖泊中以P <0.05的显着性水平下降,而其他三个湖泊中以P <0.1为基础。无机和有机单体铝的浓度通常低于报告的极限值1.5μmolL-1 ,但分别在四个和五个湖泊中检测到了下降(P <0.1)。在七个湖泊中,氯的浓度以P <0.05的显着性水平增加,在两个湖泊中以P <0.1的显着性水平增加。在P <0.05的显着水平的9个湖泊和P <0.1的显着水平的两个湖泊中,氯a和NO 3 -浓度之间也存在显着的反相关关系。尽管在全年的ALTM记录中,SO 4 2-浓度的降低更为明显,但是AEAP分析湖泊化学的结果与ALTM计划的结果相似。总体而言,结果表明:(a)夏季从酸化过程中恢复的化学程度,(b)浮游植物生产力提高,以及(c)由以下原因导致的NO 3 -浓度下降趋势提高生产力。

著录项

  • 来源
    《Ecosystems》 |2006年第8期|1306-1317|共12页
  • 作者单位

    Department of Natural Resource Sciences and LA University of Maryland College Park Maryland 20742 USA;

    US Geological Survey 425 Jordan Road Troy New York 12180 USA;

    Darrin Fresh Water Institute Rensselaer Polytechnic Institute 5060 Lakeshore Drive Bolton Landing New York 12810 USA;

    New York State Department of Environmental Conservation 625 Broadway Albany New York 12233-3502 USA;

    Darrin Fresh Water Institute Rensselaer Polytechnic Institute 5060 Lakeshore Drive Bolton Landing New York 12810 USA;

    Darrin Fresh Water Institute Rensselaer Polytechnic Institute 5060 Lakeshore Drive Bolton Landing New York 12810 USA;

    Darrin Fresh Water Institute Rensselaer Polytechnic Institute 5060 Lakeshore Drive Bolton Landing New York 12810 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    acid deposition; productivity; lake chemistry; summer chemistry; nitrogen; chorophylla; Adirondack lakes;

    机译:酸沉积;生产率;湖化学;夏季化学;氮;叶绿素;阿地伦达克湖;

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