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Boreal forest riparian zones regulate stream sulfate and dissolved organic carbon

机译:北方森林河岸带调节河流硫酸盐和溶解有机碳

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摘要

In boreal forest catchments, solute transfer to streams is controlled by hydrological and biogeochemical processes occurring in the riparian zone (RZ). However, RZs are spatially heterogeneous and information about solute chemistry is typically limited. This is problematic when making inferences about stream chemistry. Hypothetically, the strength of links between riparian and stream chemistry is time-scale dependent. Using a ten-year (2003 - 2012) dataset from a northern Swedish catchment we evaluated the suitability of RZ data to infer stream dynamics at different time scales. We focus on the role of the RZ versus upslope soils in controlling sulfate (SO_4~(2-)) and dissolved organic carbon (DOC). A priori, declines in acid deposition and redox-mediated SO_4~(2-) pulses control sulfur (S) fluxes and pool dynamics, which in turn affect dissolved organic carbon (DOC). We found that the catchment is currently a net source of S, presumably due to release of the S pool accumulated during the acidification period. In both, RZ and stream, SO_4~(2-) concentrations are declining over time, whereas DOC is increasing. No temporal trends in SO_4~(2-) and DOC were observed in upslope mineral soils. SO_4~(2-) explained the variation of DOC in stream and RZ, but not in upslope mineral soil. Moreover, as SO_4~(2-) decreased with time, temporal variability of DOC increased. These observations indicate that: (1) SO_4~(2-) is still an important driver of DOC trends in boreal catchments and (2) RZ processes control stream SO_4~(2-) and subsequently DOC independently of upslope soils. These phenomena are likely occurring in many regions recovering from acidification. Because water flows through a heterogeneous mosaic of RZs before entering the stream, upscaling information from limited RZ data to the catchment level is problematic at short-time scales. However, for long-term trends and annual dynamics, the same data can provide reasonable representations of riparian processes and support meaningful inferences about stream chemistry.
机译:在北方森林流域,溶质向河流的转移是通过河岸带(RZ)发生的水文和生物地球化学过程控制的。但是,RZ在空间上是异质的,有关溶质化学的信息通常受到限制。在推断物流化学时,这是有问题的。假设地,河岸化学与河流化学之间的联系强度取决于时间尺度。我们使用瑞典北部流域的十年(2003年至2012年)数据集,评估了RZ数据在不同时标下推断河流动力学的适用性。我们重点研究了RZ与上坡土壤在控制硫酸盐(SO_4〜(2-))和溶解有机碳(DOC)中的作用。先验地,酸沉积的下降和氧化还原介导的SO_4〜(2-)脉冲控制着硫(S)的通量和池动力学,进而影响溶解的有机碳(DOC)。我们发现流域目前是S的净来源,大概是由于酸化期间积累的S池的释放。在RZ和流中,SO_4〜(2-)的浓度均随时间下降,而DOC则在增加。在上坡矿物土壤中未观察到SO_4〜(2-)和DOC的时间趋势。 SO_4〜(2-)解释了DOC在河流和RZ中的变化,但在上坡矿质土壤中没有。此外,随着SO_4〜(2-)随时间减少,DOC的时间变异性增加。这些观察结果表明:(1)SO_4〜(2-)仍然是北方集水区DOC趋势的重要驱动力;(2)RZ过程独立于上坡土壤控制流SO_4〜(2-)和DOC。这些现象很可能发生在从酸化中恢复的许多地区。由于水在进入河流之前先流过RZ的异构镶嵌,因此在短时间尺度上将信息从有限的RZ数据提升到集水区是有问题的。但是,对于长期趋势和年度动态,相同的数据可以提供河岸过程的合理表示,并支持有关河流化学的有意义的推断。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第1期|110-122|共13页
  • 作者单位

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences (SLU), Lennart Hjelms vaeg 9, SE, 750 07 Uppsala, Sweden;

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences (SLU), Lennart Hjelms vaeg 9, SE, 750 07 Uppsala, Sweden;

    Department of Forest Ecology and Management, Swedish University of Agricultural Sciences (SLU), Skogsmarksgraend, SE, 901 83 Umea, Sweden;

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences (SLU), Lennart Hjelms vaeg 9, SE, 750 07 Uppsala, Sweden,Centre for Ecology and Hydrology, Environment Centre Wales, Deiniol Road, Bangor LL57 2UW, United Kingdom;

    Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences (SLU), Lennart Hjelms vaeg 9, SE, 750 07 Uppsala, Sweden;

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

    Heterogeneity; Acidification; Upscaling; Catchment science; Biogeochemistry; DOC;

    机译:异质性酸化;升级;流域科学;生物地球化学;DOC;

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