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Reservoirs and water management influence fish mercury concentrations in the western United States and Canada

机译:水库和水管理影响美国西部和加拿大的鱼类汞浓度

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Anthropogenic manipulation of aquatic habitats can profoundly alter mercury (Hg) cycling and bioaccumulation. The impoundment of fluvial systems is among the most common habitat manipulations and is known to increase fish Hg concentrations immediately following impoundment. However, it is not well understood how Hg concentrations differ between reservoirs and lakes at large spatial and temporal scales or how reservoir management influences fish Hg concentrations. This study evaluated total Hg (THg) concentrations in 64,386 fish from 883 reservoirs and 1387 lakes, across the western United States and Canada, to assess differences between reservoirs and lakes, as well as the influence of reservoir management on fish THg concentrations. Fish THg concentrations were 1.4-fold higher in reservoirs (0.13 ± 0.011 μg/g wet weight ± standard error) than lakes (0.09 ± 0.006), though this difference varied among ecoregions. Fish THg concentrations were 1.5- to 2.6-fold higher in reservoirs than lakes of the North American Deserts, Northern Forests, and Mediterranean California ecoregions, but did not differ between reservoirs and lakes in four other ecoregions. Fish THg concentrations peaked in three-year-old reservoirs then rapidly declined in 4-12 year old reservoirs. Water management was particularly important in influencing fish THg concentrations, which were up to 11 -times higher in reservoirs with minimum water storage occurring in May, June, or July compared to reservoirs with minimum storage occurring in other months. Between-year changes in maximum water storage strongly influenced fish THg concentrations, but within-year fluctuations in water levels did not influence fish THg concentrations. Specifically, fish THg concentrations increased up to 3.2-fold over the range of between-year changes in maximum water storage in all ecoregions except Mediterranean California. These data highlight the role of reservoir creation and management in influencing fish THg concentrations and suggest that water management may provide an effective means of mitigating Hg bioaccumulation in some reservoirs.
机译:人为地操纵水生生境可以极大地改变汞(Hg)循环和生物蓄积性。河流系统的蓄水是最常见的栖息地操纵方法之一,已知蓄水后会立即增加鱼的汞浓度。然而,人们还没有很好地理解在大的时空尺度上水库和湖泊之间的汞浓度如何不同,或者水库管理如何影响鱼类的汞浓度。这项研究评估了美国西部和加拿大的883个水库和1387个湖泊中64,386条鱼的总Hg(THg)浓度,以评估水库和湖泊之间的差异,以及水库管理对鱼类THg浓度的影响。水库中鱼类THg浓度(0.13±0.011μg/ g湿重±标准误差)比湖泊(0.09±0.006)高1.4倍,尽管这一差异在不同的生态区域之间有所不同。水库中鱼类THg的浓度比北美沙漠,北部森林和地中海加州生态区的湖泊高1.5至2.6倍,但在其他四个生态区中的水库和湖泊之间没有差异。鱼类THg浓度在3岁的水库中达到峰值,然后在4-12岁的水库中迅速下降。水的管理对影响鱼类体内的THg浓度尤为重要,与其他月份最低储存量的水库相比,最低储存量在5月,6月或7月的水库中高出11倍。最大储水量的年际变化强烈影响鱼类的THg浓度,但年内水位波动并未影响鱼类的THg浓度。具体而言,在除地中海加州以外的所有生态区中,鱼类最大水储量的年变化范围内,鱼类的三价汞浓度增加了多达3.2倍。这些数据强调了水库的建立和管理在影响鱼类体内三价汞浓度中的作用,并表明水管理可能为减轻某些水库中汞的生物积累提供了有效的手段。

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