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Environmental impact of two successive chemical treatments in a small shallow eutrophied lake: Part II. Case of copper sulfate

机译:小型浅水富营养化湖泊中两次连续化学处理对环境的影响:第二部分。硫酸铜案

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The appearance of cyanobacteria (> 10 colony per ml) was not prevented after alum treatment. In order to prevent cyanobacteria efflorescences in a small shallow polymictic lake (Courtille, France), copper sulfate was applied. Treatment level was 63 蘥 1~(-1) as Cu~(2+) from CuSO_4, 5 H)2O. Cyanobacteria were kept under control during the summer. Microcystis sp. completely disappeared, which allowed swimming in the lake throughout the tourist season. Microcystis only reappeared 2 months after the treatment. Copper content in the water column only returned to its background level 2 months after copper addition. This high residence time of copper in the water might have been caused by complexation and adsorption of copper on natural organic matter, whose level was high in the ecosystem studied. A mechanism of transfer of 'truly' dissolved copper towards particulate copper has been underlined and explains the disappearance of this fraction of copper in the water column.
机译:明矾处理后,没有阻止蓝细菌的出现(每毫升> 10个菌落)。为了防止在一个小的浅多晶湖(法国库尔提)中的蓝细菌风化,应用了硫酸铜。以CuSO_4,5 H)2O处理的Cu〜(2+)的水平为63蘥1〜(-1)。夏季,蓝细菌一直处于控制之下。微囊藻完全消失了,这使得整个旅游季节都可以在湖中游泳。微囊肿仅在治疗后2个月再次出现。添加铜后两个月,水柱中的铜含量仅恢复到其背景水平。铜在水中的高停留时间可能是由于铜在天然有机物上的络合和吸附所致,而天然有机物在研究的生态系统中含量很高。已经强调了“真正”溶解的铜向颗粒状铜的转移机理,并解释了水柱中这部分铜的消失。

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