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首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Influence of hydrological connectivity on winter limnology in floodplain lakes of the Saskatchewan River Delta, Saskatchewan
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Influence of hydrological connectivity on winter limnology in floodplain lakes of the Saskatchewan River Delta, Saskatchewan

机译:萨斯喀彻温省萨斯喀彻温河三角洲漫滩湖水文连通性对冬季湖泊学的影响

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摘要

Globally, hydrological connectivity between rivers and their floodplains has been reduced by river flow management and land transformation. The Saskatchewan River Delta is North America's largest inland delta and a hub for fish and fur production. To determine the influence of connectivity on limnology within this northern floodplain, water chemistry and stable isotopes (delta O-18 and delta H-2) were analyzed during the winter of 2014 in 26 shallow lakes along a hydrological gradient. A total of five lake connectivity categories were determined by optical remote sensing imagary of surface water coverage area from years of varying flood intensities. Accuracy of categories was verified by degree of O-18 and H-2 enrichment within lakes. Both isotopes showed marked successional enrichment between connectivity categories, with more isolated lakes exhibiting greater enrichment. Water chemistry in lakes with greater connectivity to the main channel were characterized by higher pH, dissolved oxygen, nitrates, and sulfates and lower total nitrogen, total phosphorus, and ammonium compared with more isolated lakes. These findings illustrate how connectivity influences water chemistry in northern floodplain lakes and how it might determine the suitability of these lakes as winter refuge for fishes. Additionally, our study provides supporting evidence for the effective use of optical remote sensing imagery, an inexpensive and accessible source of data for researchers, when determining connectivity characteristics of large northern floodplain systems. Additionally, this study provides further evidence that the inundation of floodplain lakes by river water during peak discharge has an impact on the conditions within the lakes long into the winter ice-cover season. Understanding the year-round influence of river-floodplain connection is imperative for assessing potential impacts of climate change and future water regulation on such ecosystems.
机译:在全球范围内,河流流量管理和土地转化减少了河流与其洪泛区之间的水文联系。萨斯喀彻温河三角洲是北美最大的内陆三角洲,也是鱼类和毛皮生产的枢纽。为了确定该连通性对北部洪泛平原内湖泊学的影响,我们在2014年冬季沿水文梯度对26个浅湖中的水化学和稳定同位素(δO-18和δH-2)进行了分析。通过多年的洪水强度变化,通过光学遥感想象的地表水覆盖区域确定了总共五个湖泊连通性类别。湖泊中O-18和H-2的富集程度验证了类别的准确性。两种同位素都显示出连通性类别之间显着的连续富集,更多孤立的湖泊表现出更大的富集。与更多孤立湖泊相比,与主要水道连通性更高的湖泊的水化学特征是较高的pH值,溶解氧,硝酸盐和硫酸盐以及较低的总氮,总磷和铵。这些发现说明了连通性如何影响北部洪泛区湖泊的水化学,以及如何确定这些湖泊是否适合作为鱼类的冬季避难所。此外,我们的研究为确定北部大型洪泛区系统的连通性特征时有效利用光学遥感影像提供了支持性证据,光学遥感影像是研究人员的廉价且易于访问的数据源。此外,这项研究提供了进一步的证据,表明在洪峰排放期间,河水淹没了漫滩湖,这对整个冬季冰雪覆盖期的湖泊状况都有影响。为了评估气候变化和未来水调节对此类生态系统的潜在影响,必须了解河漫滩的全年影响。

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