首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Dramatic diatom species assemblage responses in lakes recovering from acidification and metal contamination near Wawa, Ontario, Canada: a paleolimnological perspective
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Dramatic diatom species assemblage responses in lakes recovering from acidification and metal contamination near Wawa, Ontario, Canada: a paleolimnological perspective

机译:从加拿大安大略省瓦瓦附近的酸化和金属污染中恢复过来的湖泊中剧烈的硅藻物种集合反应:古湖泊学观点

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Several lakes near Wawa (Ontario, Canada) present a rare opportunity for studying rapid chemical and biological recovery from acidification and metal contamination. Surface water pH levels in some of these lakes have increased from 3 to 7 following local sulphur emission reductions and closure of an iron ore sintering plant. We used paleolimnological techniques to track diatom community responses to historical water quality changes in five lakes. Pre-industrial diatom assemblages recorded in lake sediments were dominated by species typical of circumneutral pH levels and were characterized by minimal species compositional change. Following the onset of sintering in 1939, there was a striking shift towards acid-and metal-tolerant Eunotia-dominated species assemblages, sometimes consisting of high quantities of teratological Eunotia valves. Recent dramatic water quality improvements, following first reductions in and then cessation of emissions, were accompanied by decreases in the relative abundance of benthic acid- and metal-tolerant species in the sediment record. However, diatom recovery trajectories did not entirely progress towards predisturbance communities, as the contemporaneous increase in relative abundance of other species was restricted to a few groups. Moreover, diatom responses were not synchronous among cores, with recovery rates influenced by local bedrock and the hydrological regime of each lake.
机译:Wawa附近的几个湖泊(加拿大安大略省)为研究从酸化和金属污染中快速回收化学和生物物质提供了难得的机会。在局部减少硫排放并关闭铁矿石烧结厂后,其中一些湖泊的地表水pH值已从3增加到7。我们使用古湖泊学技术来跟踪硅藻群落对五个湖泊中历史水质变化的响应。湖泊沉积物中记录的工业化前硅藻组合以周围环境pH值典型的物种为主导,其特征是物种组成的变化极小。自1939年开始烧结以来,向着耐酸和耐金属的以Eunotia为主的物种组合发生了惊人的转变,有时包括大量的具有致畸性的Eunotia瓣膜。在先减少排放然后停止排放之后,近期水质得到了显着改善,随之而来的是沉积物中记录的耐底层和耐金属物种的相对丰度下降。但是,硅藻的恢复轨迹并没有完全朝着扰动前的社区发展,因为其他物种相对丰度的同期增长仅限于少数群体。此外,硅藻的反应在岩心之间是不同步的,恢复速度受当地基岩和每个湖的水文状况影响。

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