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首页> 外文期刊>The Science of the Total Environment >Effects of metal mining effluent on Atlantic salmon (Salmo salar) and slimy sculpin (Cottus cognatus): using artificial streams to assess existing effects and predict future consequences
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Effects of metal mining effluent on Atlantic salmon (Salmo salar) and slimy sculpin (Cottus cognatus): using artificial streams to assess existing effects and predict future consequences

机译:金属采矿废水对大西洋鲑(Salmo salar)和黏糊糊的杜鹃(Cottus cognatus)的影响:使用人工流评估现有影响并预测未来后果

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In the summer of 2000, the effects of metal mine discharge on fish growth and exercise performance were assessed at a Zn-Pb-Cu mine in New Brunswick, Canada. Juvenile Atlantic salmon (Salmo salar) were exposed to 0%, 20%, and 80% treated metal mine effluent in a mobile, fish-only artificial stream system. Fish were fed commercial salmon pellets throughout the study. Young-of-the-year slimy sculpins (Cottus cognatus) were exposed to the same treatments in a multitrophic level, modular artificial stream system or mesocosm, in which the fish were dependent on seeded algae and invertebrates for nutrition. Treatment concentrations were chosen to represent existing discharge dilutions (80%) and a scenario of reduced effluent discharge (20%) as predicted upon mine closure (scheduled for 2008). Al, Ba, B, Fe, Mn, Sr, Tl, Ti, and Zn increased in a concentration-dependent fashion across the three treatments. Salmon body burdens of Ba, Cd, Li, Cu, Mn, Se, Sr, and Zn were increased in the 80% treatment, while Tl increased across all treatment levels. Mortalities and depressions in growth in both fish species paralleled treatment concentrations (80%> 20%> 0%). Salmon liver weight was significantly greater in fish exposed to 20% and 80% effluent in a concentration-dependent fashion. Exercise performance in fish, as assessed by the ability to recover from forced exercise, showed little effect of treatment. The contamination of the receiving environment by mine discharges has led to loss of fish, making it impossible to study the system in situ. However, the use of the artificial stream systems enabled us to assess effects of present conditions on fish, as well as the potential impacts of mine reclamation. The 20% discharge predicted following mine reclamation is potentially favourable for the reinstitution of native fishes into the system. Crown Copyright (c) 2004 Published by Elsevier B.V. All rights reserved.
机译:2000年夏天,在加拿大新不伦瑞克省的Zn-Pb-Cu矿山评估了金属矿山排泄物对鱼类生长和运动性能的影响。在移动的,仅鱼的人工流系统中,少年大西洋鲑鱼(Salmo salar)暴露于0%,20%和80%处理过的金属矿山废水中。在整个研究过程中,将鱼用商业鲑鱼颗粒喂养。一年生的黏糊糊的杜鹃(Cottus cognatus)在多营养水平,模块化人工流系统或中观世界中接受了相同的处理,其中鱼依赖于藻类和无脊椎动物的营养。选择处理浓度以代表现有的排污稀释度(80%)和如关闭矿山所预测的那样减少污水排放(20%)的情景(计划于2008年进行)。在三种处理中,Al,Ba,B,Fe,Mn,Sr,Tl,Ti和Zn以浓度依赖的方式增加。在80%处理中,Ba,Cd,Li,Cu,Mn,Se,Sr和Zn的鲑鱼身体负担增加,而在所有处理水平下T1均增加。两种鱼类的死亡率和生长降低与治疗浓度(80%> 20%> 0%)平行。暴露于浓度分别为20%和80%的污水中的鱼的鲑鱼肝重明显更大。根据从强迫运动中恢复的能力评估,鱼的运动表现几乎没有治疗效果。排雷对接收环境的污染导致鱼类损失,因此无法就地研究该系统。但是,使用人工水流系统使我们能够评估当前状况对鱼类的影响以及矿山复垦的潜在影响。矿山开垦后预计的20%排放量可能有利于将本地鱼类重新安置到系统中。官方版权(c)2004,Elsevier B.V.保留所有权利。

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