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Long-term trends and variation of acidity, COD_(Mn) and colour in coastal rivers of Western Finland in relation to climate and hydrology

机译:与气候和水文学有关的西芬兰沿海河流酸,COD_(Mn)和颜色的长期趋势和变化

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摘要

High acidity caused by geochemical processes and intensive land use of acid sulphate (AS) soils have continuously degraded the status of water bodies in Western Finland. Despite this, research on the long-term pattern and dynamics of acidification in rivers affected by acid sulphate soils is scarce. This study examined changes in alkalinity and pH value during the period 1913-2007 in nine large Finnish rivers discharging into the Gulf of Bothnia. In addition, patterns of COD_(Mn) and colour were analysed during the period 1961-2007. Relationships between pH, alkalinity, COD_(Mn) and colour and climate variables were also studied. In four rivers with no AS soil impact (Kokemaeenjoki, Kemijoki, Iijoki and Oulujoki), critically low pH levels did not occur during the study period, whereas three rivers exposed to minor or moderate levels of runoff from AS soils (Lestijoki, Kalajoki, and Siikajoki) had all periods with critically low pH and alkalinity. The most severe acidity problems occurred in the rivers Kyroenjoki and Lapuanjoki, with extensive drainage of AS soils being the main reason for the low pH status. Maximum discharge was clearly related to the acidity status of many rivers during the autumn-winter runoff period, when a significant negative linear correlation was found between maximum discharge and minimum pH in the rivers affected by AS soils. There was also a more distinct relationship between maximum chemical oxygen demand (COD_(Mn)) and minimum pH in autumn runoff than in spring. COD_(Mn) levels significantly increased with increasing discharge in the rivers with no or minor AS soil impact. Climate change is predicted to increase river flow in general and winter discharge in particular, and therefore the acidity problems in affected rivers may increase in a future climate.
机译:由于地球化学过程和酸性土壤(AS)土地的大量使用而引起的高酸度,使芬兰西部的水体状况持续恶化。尽管如此,关于受酸性硫酸盐土壤影响的河流酸化的长期模式和动力学的研究却很少。这项研究检查了1913-2007年期间流入博特尼亚湾的9条芬兰大河中碱度和pH值的变化。此外,分析了1961-2007年期间的COD_(Mn)和颜色模式。还研究了pH,碱度,COD_(Mn)与颜色和气候变量之间的关系。在研究期间,未对AS土壤造成影响的四条河流(Kokemaeenjoki,Kemijoki,Iijoki和Oulujoki)未发生临界pH值极低的情况,而三河流经AS土壤的径流处于中等或中等水平的水(Lestijoki,Kalajoki和Siikajoki)所有时期的pH值和碱度都极低。最严重的酸度问题发生在Kyroenjoki和Lapuanjoki河中,AS土的大量排水是pH值低的主要原因。在秋冬径流期间,最大流量显然与许多河流的酸度状态有关,而在受土壤土壤影响的河流中,最大流量和最低pH之间存在显着的线性负相关关系。与春季相比,秋季径流中的最大化学需氧量(COD_(Mn))和最低pH之间存在更明显的关系。在没有或仅有少量AS土壤影响的情况下,随着河流排放量的增加,COD_(Mn)水平显着增加。预计气候变化将总体上增加河流流量,尤其是冬季排放,因此,在未来的气候中,受影响河流的酸度问题可能会增加。

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  • 来源
    《Science of the total environment》 |2010年第21期|p.5019-5027|共9页
  • 作者单位

    Water Resources and Environmental Engineering Laboratory, Department of Process and Environmental Engineering, P.O. Box 4300, University of Oulu, FIN-90014 Oulu, Finland;

    rnFinnish Environment Institute, P.O. Box PL 35, FIN-40014 University of Jyvaeskylae, Finland;

    Thule Institute, P.O. Box 7300, University of Oulu, FIN-90014 Finland;

    rnWater Resources and Environmental Engineering Laboratory, Department of Process and Environmental Engineering, P.O. Box 4300, University of Oulu, FIN-90014 Oulu, Finland;

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

    river; pH; alkalinity; trend; acid sulphate soils; runoff;

    机译:河;pH值碱度趋势;酸性硫酸盐土壤;径流;
  • 入库时间 2022-08-17 13:56:23

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