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首页> 外文期刊>Journal of paleolimnology >Long-term precipitation-driven salinity change in a saline, peat-forming wetland in the Athabasca Oil Sands Region, Canada: a diatom-based paleolimnological study
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Long-term precipitation-driven salinity change in a saline, peat-forming wetland in the Athabasca Oil Sands Region, Canada: a diatom-based paleolimnological study

机译:长期降水驱动的盐度在盐水中的盐水,泥炭形成湿地在Athabasca油砂区域,加拿大:基于硅藻基古肌电学研究

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Saline wetlands represent potential natural analogs for reclaimed wetlands in the Athabasca Oil Sands Region (AOSR). Thus, an understanding of the drivers of salinity changes in natural wetlands can provide insight into how reconstructed peatlands in the AOSR may evolve given that they are constructed with saline oil sands reclamation materials. Here, we investigate the nature of salinity changes from the analysis of sediment cores at three ponds situated within a saline peat-forming wetland near Fort McMurray (Alberta). Past changes in salinity were reconstructed using weighted-averaging transfer functions based on diatoms and an environmental dataset from 32 saline boreal ponds. Results reveal complex "precipitation-surface water-groundwater" interactions associated with differences in the hydrologic functioning of the studied ponds, and their connectivity with shallow groundwater aquifers and adjacent wetlands. Relationships between cumulative departure from mean precipitation and DI-salinity suggest that precipitation may control salinity both directly and indirectly. In ponds recharged predominantly by meteoric water, precipitation may govern salinity directly by dilution of salt content in water, so that rises in precipitation result in a salinity decline. In ponds situated within a saline groundwater discharge zone, salinity may be influenced by precipitation indirectly through recharge of the saline aquifer, so increases in precipitation lead to rises in salinity. Our study suggests that complex salinity response to precipitation change, coupled with notable range of salinity fluctuation within natural saline fens should be considered while designing saline constructed wetlands and predicting their potential resilience under climate change.
机译:盐水湿地代表了Athabasca油砂区域(AOSR)中回收湿地的潜在天然类似物。因此,对天然湿地的盐度变化的驱动器的理解可以深入了解AOSR中的重建泥炭块的洞察力可能会在盐水砂挤出材料构建。在这里,我们调查盐度变化的性质从位于McMurray(Alberta)附近的盐水泥炭形成湿地的三个池塘中的沉积物核心的性质。使用基于硅藻的加权平均传递函数和来自32种盐水池塘池塘的环境数据集重建过去的盐度变化。结果揭示了与研究池塘水文功能的差异相关的复杂的“沉淀表面水土水”相互作用,以及与浅地下水含水层和邻近湿地的连接。累积偏离平均沉淀和二盐度之间的关系表明,降水可以直接和间接地控制盐度。在池塘主要由陨石充电,沉淀可以通过稀释水中的盐含量直接治理盐度,从而降水量升高导致盐度下降。在位于盐水地下排放区内的池塘中,盐度可能通过盐水含水层的充电间接地受到沉淀的影响,因此降水量的增加导致盐度上升。我们的研究表明,在设计盐水构造的湿地的同时,应考虑与天然盐水霜中的显着盐度波动的复杂盐度反应,同时考虑到天然盐水中的显着盐度波动。

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