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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >The acidic lignite pit lakes of Germany-Microcosm experiments on acidity removal through controlled eutrophication
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The acidic lignite pit lakes of Germany-Microcosm experiments on acidity removal through controlled eutrophication

机译:德国酸性褐煤坑湖-通过富营养化去除酸度的微观实验

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Pit lakes in the Lausitz lignite-mining district of Germany are diverse in size and morphometry.Many are extremely acidic with pH < 3 and high iron concentrations.Productivity in most of the lakes is low and they support only simple food webs.Various methods are being investigated to remove acidity from the lake waters.The microcosm experiment described here employs controlled eutrophication to enhance element cycling and sediment-bound alkalinity generating processes.Sixty-litre microcosms with water and sediment from Lake Grunewalde(pH 3.0,Fe 14mgL~(-1),acidity(KB_(8.2))2mmolL~(-1)and phosphorus 4mu gL~(-1))were set-up under laboratory conditions.The addition of nutrients(organic carbon and phosphorus)led to dramatic increases in primary production associated with blooms of green algae(Chlamydomonas sp.)and diatoms(Eunotia exigua)but no substantial removal of acidity.Generation of temporary anaerobic conditions,through the addition of potatoes,led to the removal of 85% of acidity,all detectable dissolved iron,and an increase in pH from 3 to 7.These conditions were maintained with this treatment for the remainder of the 8-month observation period following removal of iron and protons from the water column.
机译:德国Lausitz褐煤开采区的深坑湖泊大小和形态各异,许多酸度极强,pH <3并且铁含量高,大多数湖泊的生产力低下,它们仅支持简单的食物网。正在研究中以去除湖水中的酸。此处描述的微观实验采用可控富营养化来增强元素循环和沉积物结合的碱度生成过程。来自Grunewalde湖(pH 3.0,Fe 14mgL〜(- 1)在实验室条件下设置酸度(KB_(8.2))2mmolL〜(-1)和磷4mu gL〜(-1))。添加的营养素(有机碳和磷)导致初级营养素显着增加产生与绿藻(Chlamydomonas sp。)和硅藻(Eunotia exigua)的水华有关,但没有明显的酸度去除。通过添加马铃薯产生暂时的厌氧条件,导致酸度去除了85%,全部可检测到的溶解铁,pH值从3增加到7。在从水柱中除去铁和质子后的8个月观察期的剩余时间内,通过这种处理可以维持这些条件。

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