The Impacts of Loading From Acid Sulfate Soils on Boreal Estuarine Sediments

IF 4 2区 农林科学 Q2 SOIL SCIENCE
Krister Dalhem, Karoliina Kehusmaa, Joonas J. Virtasalo, Mats Åström, Peter Österholm
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Abstract

Estuaries play a vital role in the coastal environment by filtering pollutants and nutrients from catchment runoff. In areas where acid sulfate (AS) soils are abundant, the importance of the estuary as a coastal filter is heightened as AS soils typically stress the marine environment with acidic metal-laden drainage waters. In this study, we took sediment cores from a shallow estuary in Western Finland and used geochemical and palaeoecological methods to investigate how the estuary is affected by loading from AS soils. An overall decrease in diatom species richness and diversity in the estuarine sediments was found, with a clear change from species preferring pelagic conditions to species indicative of more eutrophic conditions. The change coincides with human disturbance during the early 20th century when extensive drainage and rework of forests and peatlands into agricultural use increased. Geochemical analyses show a significant enrichment of Cd, Ni, Co, Zn and Al in the estuarine sediments which correspond to the metal loads originating from the catchment AS soils. Our calculations, however, show that in comparison to the total load of soluble metals from the catchment area, more than 80% of chalcophiles and 70% of Al are transported further out to sea. We hypothesised that a precipitation gradient driven by changes in pH and salinity due to seawater mixing would form along a transect towards the estuary outlet. Instead, we found that physical sedimentation processes are stronger drivers for element transport, as enrichment takes place only in low-energy hydrodynamic conditions at greater water depths. Glacioisostatic land uplift and significant particle transport from the catchment area are further isolating the estuary, effectively moving the saline gradient seawards and diminishing the role of the estuary as a coastal filter. We also found that the estuarine sediments are hypersulfidic and contain stores of potential acidity significantly larger than conventional AS soils. Without proper management, disturbance of the estuarine sediments can cause disastrous consequences at a local level.

Abstract Image

酸性硫酸盐土对北方河口沉积物的荷载影响
河口通过过滤集水区径流中的污染物和营养物质,在沿海环境中起着至关重要的作用。在酸性硫酸盐(AS)土壤丰富的地区,河口作为海岸过滤器的重要性被提高,因为酸性硫酸盐土壤通常会对海洋环境造成酸性金属负载的排水。在这项研究中,我们从芬兰西部的一个浅河口采集了沉积物岩心,并使用地球化学和古生态学方法研究了河口如何受到AS土壤的载荷的影响。河口沉积物中硅藻物种丰富度和多样性总体呈下降趋势,从偏好远洋环境的物种向富营养化环境的物种明显转变。这一变化与20世纪初的人为干扰相吻合,当时森林和泥炭地的大规模排水和改造为农业用途的增加。地球化学分析表明,河口沉积物中Cd、Ni、Co、Zn和Al富集,与汇水区AS土壤的金属负荷相对应。然而,我们的计算表明,与来自集水区的可溶性金属的总负荷相比,超过80%的亲铜酸盐和70%的铝被运往更远的海域。我们假设,由海水混合引起的pH和盐度变化驱动的降水梯度将沿着河口出口的样带形成。相反,我们发现物理沉积过程是元素输运的更强驱动因素,因为富集只发生在较深的低能水动力条件下。冰川均衡陆地隆起和来自集水区的大量颗粒输送进一步隔离了河口,有效地将盐梯度向海方向移动,并减弱了河口作为海岸过滤器的作用。我们还发现河口沉积物是高硫化物的,并且含有比常规AS土壤更大的潜在酸度储存。如果没有适当的管理,河口沉积物的扰动会在局部造成灾难性的后果。
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来源期刊
European Journal of Soil Science
European Journal of Soil Science 农林科学-土壤科学
CiteScore
8.20
自引率
4.80%
发文量
117
审稿时长
5 months
期刊介绍: The EJSS is an international journal that publishes outstanding papers in soil science that advance the theoretical and mechanistic understanding of physical, chemical and biological processes and their interactions in soils acting from molecular to continental scales in natural and managed environments.
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