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Toxicity identification evaluation of ammonia, nitrite and heavy metals at the Stensund Wastewater Aquaculture plant, Sweden

机译:瑞典Stensund废水水产养殖场对氨,亚硝酸盐和重金属的毒性鉴定评估

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The Stensund Wastewater Aquaculture plant was built in 1989. The plant is contained in a greenhouse because of its northern location with a temperate climate; The plant receives wastewater from 40 persons and has a residence time of 30 days. The purification concept is to use a constructed aquatic food chain (algae, zooplankton and fish) combined with hydroponic culture of higher plants to further deplete the nutrients in the wastewater. However, the production of algae and zooplankton has not been working as expected from pilot studies. The purpose of this investigation was to study if toxic chemicals were limiting the production of zooplankton (Daphnia magna) in the aquaculture treatment system. Grab samples were taken at six sites and tested for acute toxicity to Daphnia magna and analyzed for BOD, COD, ammonium-, nitrite-, nitrate- and total nitrogen, total phosphorus and heavy metals (Cd, Ci, Cu, Ni, Pb, Zn). Toxicity to D. magna was also determined after addition of EDTA, sodium thiosulphate and pH adjustment of the,water to 6, 7 and 8, in order to assess if heavy metals and/or pH-dependent toxicants were present Potential toxicants, with concentrations high enough to intoxicate Daphnia magna, were Cu, ammonia and nitrite. Subsequent improvement of nitrification reduced the ammonia and nitrite concentrations as well as the toxicity. Furthermore, the improved production of algae and Daphnia at the Stensund Wastewater Aquaculture plant verified that the primary cause of toxicity was ammonia. (C) 1998 Published by Elsevier Science Ltd. All rights reserved. [References: 16]
机译:Stensund废水水产养殖厂建于1989年。该厂位于温室中,因为它的北部位置为温带气候。该工厂接收40个人的废水,停留时间为30天。净化的概念是使用构建的水生食物链(藻类,浮游动物和鱼类)与高等植物的水培法相结合,以进一步消耗废水中的养分。但是,藻类和浮游动物的生产并未像初步研究预期的那样运转。这项调查的目的是研究有毒化学物质是否限制了水产养殖处理系统中浮游动物(大型蚤)的生产。在六个地点采集了抓取的样品,并测试了其对水蚤的急性毒性,并分析了BOD,COD,铵,亚硝酸盐,硝酸盐和总氮,总磷和重金属(Cd,Ci,Cu,Ni,Pb,锌)。在添加EDTA,硫代硫酸钠和将水的pH值调节至6、7和8后,还测定了对D. magna的毒性,以评估是否存在重金属和/或pH依赖的有毒物质。铜,氨和亚硝酸盐的含量足以使大型蚤(Daphnia magna)陶醉。随后硝化作用的改善降低了氨和亚硝酸盐的浓度以及毒性。此外,Stensund废水水产养殖厂藻类和水蚤的产量提高,证实了毒性的主要原因是氨。 (C)1998由Elsevier Science Ltd.出版。保留所有权利。 [参考:16]

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