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Recovery of acidified Sudbury, Ontario, Canada, lakes: a multi-decade synthesis and update

机译:康复苏布劳,安大略省,加拿大,湖泊:多十年综合和更新

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The Sudbury region of northeastern Ontario, Canada, provides one of the world's best examples of the resilience of aquatic ecosystems after reductions in atmospheric contaminant deposition. Thousands of lakes around the Sudbury metal smelters were badly damaged by acid deposition. Lakes closest to the smelters were also contaminated by metal particulates. However, large reductions in atmospheric SO2 and metal emissions starting in the early 1970s have led to widespread chemical improvements in these lakes, and recovery has been observed for various aquatic biota. Studies of Sudbury-area lakes are advancing our understanding of chemical and biological lake recovery; however, recovery is a complicated process and much remains to be learned. Biological recovery has often been slow to follow chemical recovery, and it has become apparent that the recovery of lakes from acidification is closely linked to interactions with other large-scale environmental stressors like climate change and Ca declines. Thus, in our multiple-stressor world, recovery may not bring individual lakes back to their exact former state. However, with time, substantial natural biological recovery toward typical lake communities can be reasonably expected for most but not necessarily all biota. For organisms with limited dispersal ability, particularly fish, human assistance may be necessary to re-establish typical communities. In lakes where food webs have been severely altered, re-establishment of typical diverse fish communities may in fact be an important element aiding the recovery of other important components of aquatic ecosystems including zooplankton and benthic macroinvertebrates. In the lakes closest to the smelters, where historically watersheds as well as lakes were severely damaged, the recovery of aquatic systems will be closely linked to ongoing terrestrial recovery and rehabilitation, particularly through the benefits of increased inputs of terrestrially derived organic matter. The dramatic lake recovery observed in the Sudbury area points to a brighter future for these lakes. However, continued monitoring will be needed to determine future changes and help guide the management and protection of Sudbury-area lakes in this multiple-stressor age.
机译:加拿大东北北欧省东北部的萨德伯里地区提供了世界上减少大气污染物沉积后水生生态系统的最佳实例之一。萨克伯里金属冶炼厂周围成千上万的湖泊被酸沉积严重损坏。最接近冶炼厂的湖泊也被金属颗粒污染。然而,在20世纪70年代初开始的大气SO2和金属排放的大量减少导致这些湖泊的化学改善,并且针对各种水生生物征观察到恢复。萨德伯里地区湖泊的研究推进了对化学和生物湖泊恢复的理解;但是,恢复是一个复杂的过程,并且仍有待学习。生物恢复往往缓慢遵循化学回收率,并且显而易见的是,从酸化的湖泊恢复与其他大规模环境压力源相互作用密切相关,如气候变化和CA下降。因此,在我们的多重压力源世界中,恢复可能不会将个别湖泊带回其确切的前州。然而,随着时间的推移,对于典型的湖社区来说,可以合理地预期大量的自然生物恢复,但最重要的是,但不一定是所有的Biota。对于有限的分散能力,特别是鱼类,人类援助可能需要在重建典型社区的情况下进行有限的生物。在湖泊中,食品网的严重改变,重新建立典型的各种鱼类社区可能实际上是一个重要的元素,了解在包括浮游动物和底栖大型椎骨门内的水生生态系统其他重要组成部分的回收。在最接近冶炼厂的湖泊中,历史流域以及湖泊严重受损,水产系统的恢复将与持续的陆地复苏和康复密切相关,特别是通过彻底衍生的有机物质投入的益处。萨德伯里地区观察到的戏剧性湖泊回收点为这些湖泊的光明未来。但是,需要继续监测来确定未来的变更,并帮助指导萨德伯里地区湖泊在这种多重压力率时代的管理和保护。

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