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首页> 外文期刊>Ecological indicators >Long-term sulphate and inorganic nitrogen mass balance budgets in European ICP Integrated Monitoring catchments (1990-2012)
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Long-term sulphate and inorganic nitrogen mass balance budgets in European ICP Integrated Monitoring catchments (1990-2012)

机译:欧洲ICP综合监测流域中的长期硫酸盐和无机氮质量平衡预算(1990-2012)

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摘要

Empirical evidence based on integrated environmental monitoring including physical, chemical and biological variables is essential for evaluating the ecosystem benefits of costly emission reduction policies. The international multidisciplinary ICP IM (International Cooperative Programme on Integrated Monitoring of Air Pollution Effects on Ecosystems) programme studies the integrated effects of air pollution and climate change on ecosystems in unmanaged and calibrated forested catchments. We calculated site-specific annual input-output budgets for sulphate (SO4) and total inorganic nitrogen (TIN=NO3N + NH4-N) for 17 European ICP IM sites in 1990-2012. Temporal trends for input (deposition) and output (runoff water) fluxes and the net retentionet release of SO4 and TIN were also analysed. Large differences in the input and output fluxes of SO4 and TIN reflect important gradients of air pollution effects in Europe, with the highest deposition and runoff water fluxes at IM sites located in southern Scandinavia and in parts of Central and Eastern Europe and the lowest fluxes at more remote sites in northern European regions. A significant decrease in the total (wet + dry) deposition of non-marine SO4 and bulk deposition of TIN was found at 90% and 65% of the sites, respectively. Output fluxes of non-marine SO4 in runoff decreased significantly at 65% of the sites, indicating positive effects of the international emission abatement actions in Europe during the last 20 years. Catchments retained SO4 in the early and mid 1990s, but this shifted towards a net release in the late 1990s, which may be due to the mobilization of legacy S pools accumulated during times of high atmospheric SO4 deposition. Despite decreased deposition, TIN output fluxes and retention rates showed a mixed response with both decreasing (9 sites) and increasing (8 sites) trend slopes, and trends were rarely significant. In general, TIN was strongly retained in the catchments not affected by natural disturbances. The long-term annual variation in net releases for SO4 was explained by variations in runoff and SO4 concentrations in deposition, while a variation in TIN concentrations in runoff was mostly associated with a variation of the TIN retention rate in catchments. The net release of SO4 from forest soils may delay the recovery from acidification for surface waters and the continued enrichment of nitrogen in catchment soils poses a threat to terrestrial biodiversity and may ultimately lead to a higher TIN runoff through N-saturation. Continued monitoring and further evaluations of mass balance budgets are thus needed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:基于综合的环境监测(包括物理,化学和生物变量)的经验证据对于评估昂贵的减排政策对生态系统的好处至关重要。国际多学科的ICP IM(对生态系统造成的空气污染影响进行综合监测的国际合作计划)计划研究了空气污染和气候变化对未经管理和校准的森林集水区生态系统的综合影响。我们计算了1990-2012年间欧洲ICP IM站点的17个特定站点的年度硫酸盐(SO4)和总无机氮(TIN = NO3N + NH4-N)的投入产出预算。还分析了输入(沉积)和输出(径流水)通量的时间趋势以及SO4和TIN的净保留/净释放。 SO4和TIN的输入和输出通量的巨大差异反映了欧洲空气污染影响的重要梯度,位于斯堪的纳维亚南部以及中欧和东欧部分地区的IM地点沉积和径流水通量最高,而在欧洲中部和东部的IM通量最低。北欧地区的偏远地区。非海洋SO4的总(湿+干)沉积量和TIN的大量沉积量分别显着下降,分别位于90%和65%的位置。径流中非海洋SO4的输出通量在65%的地点显着下降,表明过去20年欧洲国际减排行动的积极作用。在1990年代初和中期,流域保留了SO4,但在1990年代后期转向净释放,这可能是由于动员了大气中SO4含量高的时期积累的遗留S池。尽管沉积减少,但TIN输出通量和保留率显示出混合的响应,同时趋势斜率减小(9个位点)和增加(8个位点),并且趋势很少显着。通常,TIN被牢固保留在不受自然干扰影响的流域中。 SO4净释放量的长期年度变化可以通过径流和沉积物中SO4浓度的变化来解释,而径流中TIN浓度的变化主要与流域TIN保留率的变化有关。森林土壤中SO4的净释放可能会延迟地表水酸化的恢复,流域土壤中氮的持续富集对陆地生物多样性构成威胁,并可能最终通过N饱和导致更高的TIN径流。因此,需要继续监测和进一步评估质量平衡预算。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Ecological indicators》 |2017年第5期|15-29|共15页
  • 作者单位

    Finnish Environm Inst SYKE, POB 140, FI-00251 Helsinki, Finland;

    Aleksandras Stulginskis Univ, Forest Monitoring Lab, LT-53362 Kaunas Dist, Lithuania;

    Bavarian Forest Natl Pk, Freyunger Str 2, D-94481 Grafenau, Germany;

    Norwegian Inst Bioecon Res, POB 115, NO-1431 As, Norway;

    Norwegian Inst Water Res, Gaustadalleen 21, NO-0349 Oslo, Norway;

    Environm Agcy Austria, Dept Ecosyst Res & Data Informat Management, Spittelauer Lande 5, A-1090 Vienna, Austria;

    Tartu Univ, Inst Ecol & Earth Sci, Vanemuise St 46, EE-51014 Tartu, Estonia;

    Finnish Environm Inst SYKE, POB 140, FI-00251 Helsinki, Finland;

    State Ltd Latvian Environm, Geol & Meteorol Ctr, 165 Maskavas Str, LV-1019 Riga, Latvia;

    Finnish Environm Inst SYKE, POB 140, FI-00251 Helsinki, Finland;

    Environm Agcy Austria, Dept Ecosyst Res & Data Informat Management, Spittelauer Lande 5, A-1090 Vienna, Austria;

    Czech Geol Survey, Dept Geochem, Klarov 3, CZ-11821 Prague 1, Czech Republic;

    Nat Resources Inst Finland Luke, Latokartanonkaari 9, FI-00790 Helsinki, Finland;

    Swedish Univ Agr Sci, POB 7050, SE-75007 Uppsala, Sweden;

    Finnish Meteorol Inst, POB 503, FI-00101 Helsinki, Finland;

    Nat Resources Inst Finland Luke, Latokartanonkaari 9, FI-00790 Helsinki, Finland;

    Czech Hydrometeorol Inst, Observ Kosetice, CZ-39422 Kosetice, Czech Republic;

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

    Sulphur; Nitrogen; Mass balance; Retention; Net release; Trends;

    机译:硫;氮;质量平衡;保留力;净释放;趋势;

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