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Climatic effects on water quality in areas with acid sulfate soils with commensurable consequences on the reproduction of burbot (Lota lota L.)

机译:对酸硫酸盐土壤中水质的气候作用,对伯特繁殖的繁殖后果(Lota Lota L.)的繁殖后果

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Due to discharge from acid sulfate (a.s.) soils, watercourses and coastal areas in the Gulf of Bothnia are periodically heavily acidified with high concentrations of potentially toxic metals. Data on water quality from 2005 to 2014 in an embanked lake, an estuary of four rivers in western Finland, showed repeated events with acidic water (pH 5.5) with high concentrations of Al. Size fractionation and species modeling of Al showed that a significant part of the Al occurred as highly toxic small-size fractions (dissolved 1 kDa and colloidal 1 kDa-0.45 mu m) as free ions and complexed to sulfate. The larval abundance of the burbot (Lota lota L.) was shown to be sensitive to acidity during the wintertime spawning migration and spawning. Bearing in mind the importance of estuaries of the northern Baltic Sea as spawning and nursery areas of fish, the reoccurring failure in the reproduction of fish may cause a more serious threat for the lake and adjacent coastal fish stocks than the spectacular, but less frequent, mass kills of adult fish. This demonstrates the close relationship between climate, hydrology, water geochemistry and the aquatic coastal ecosystem in areas affected by a.s. soils. As the current forecast of climate chance indicates warmer winters with more continuous runoff, the effects can become even more prominent. This study also shows that the annual larvae abundance of burbot may be used as a bioindicator and an instrument for the fisheries for obtaining more comprehensive knowledge of the ecological effects of acidic metal discharge from a.s. soils.
机译:由于从酸性硫酸盐(A.)的土壤中排出,两种海湾的水道和沿海地区都以高浓度的潜在毒性金属酸化。 2005年到2014年水质数据在芬兰西部的四条河口中的堤防湖中的2005年到2014年,表现出具有高浓度Al的酸性水(pH <5.5)的重复事件。 A1的大小分馏和物种建模显示,Al的重要部分作为自由离子作为游离离子的高毒性小尺寸分数(溶解1kDa和胶体1kda-0.45μm)并络合至硫酸盐。在冬季产卵迁移和产卵期间,Burbot(Lota Lota L.)的幼虫丰富对酸度敏感。铭记北部波罗的海的河口河口的重要性和鱼类的苗圃地区,鱼类再生的失败可能会对湖泊和邻近的沿海鱼类股来造成更严重的威胁,但越来越少,大众杀死成人鱼。这证明了气候,水文,水地球化学与受A.S.影响地区的水生沿海生态系统之间的密切关系。土壤。随着目前的气候偶然预测表明较温暖的冬季越来越持续径流,效果可能变得更加突出。本研究还表明,年度幼虫丰富的毛刺可以用作生物indicator和渔业的仪器,以获得从A.S的酸性金属排放的生态作用的更全面了解。土壤。

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