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利用凤眼莲(凤眼蓝)和大薸对废水毒性进行植物修复。

Phytoremediation of wastewater toxicity using water hyacinth (Eichhornia crassipes) and water lettuce (Pistia stratiotes).

作者信息

Victor Kouamé Kouamé, Séka Yapoga, Norbert Kouadio Kouakou, Sanogo Tidou Abiba, Celestin Atsé Boua

机构信息

a Department of Management and Environmental Sciences , University of Nangui-Abrogoua , Abidjan , Côte d'Ivoire.

b Oceanological Research Center , Abidjan , Côte d'Ivoire.

出版信息

Int J Phytoremediation. 2016 Oct 2;18(10):949-55. doi: 10.1080/15226514.2016.1183567.

DOI:10.1080/15226514.2016.1183567
PMID:27159271
Abstract

This paper elucidates the phytoremediation potential of water hyacinth and water lettuce on the reduction of wastewater toxicity. Acute toxicity tests were performed in an aquarium with a population of Sarotherodon melanotheron, contaminated by different concentrations of wastewaters before and after phytoremediation with Eichhornia crassipes and Pistia stratiotes. Lethal concentrations (LC50) of the fish's population obtained during 24 hours of exposures were determined. COD, BOD, ammonium, TKN and PO4(3-) concentrations in wastewaters were of 1850.29, 973.33, 38.34, 61.49 and 39.23 mg L(-1), respectively, for each plant. Phytoremediation reduced 58.87% of ammonium content, 50.04% of PO4(3-), 82.45% of COD and 84.91% of BOD. After 15 days of the experiment, metal contents in treated wastewaters decreased from 6.65 to 97.56% for water hyacinth and 3.51 to 93.51% for water lettuce tanks. Toxicity tests showed that the mortality of fish exposed increased with increase in concentration of pollutants in wastewaters and the time of exposure. Therefore, the highest value of LC50 was recorded for fish subjected to 3 hours of exposure (16.37%). The lowest rate was obtained after an exposure of 20 to 24 hours (5.85%). After phytoremediation, the effluents purified by Eichhornia crassipes can maintain the fish life beyond 24 hours of exposure.

摘要

本文阐明了凤眼莲和大薸对降低废水毒性的植物修复潜力。在水族箱中对罗非鱼进行急性毒性试验,水族箱中的水受到不同浓度废水的污染,这些废水在经凤眼莲和大薸进行植物修复前后。测定了在24小时暴露期间鱼群的致死浓度(LC50)。每种植物处理的废水中化学需氧量(COD)、生化需氧量(BOD)、铵、总凯氏氮(TKN)和磷酸根离子(PO4(3-))的浓度分别为1850.29、973.33、38.34、61.49和39.23毫克/升。植物修复使铵含量降低了58.87%,PO4(3-)降低了50.04%,COD降低了82.45%,BOD降低了84.91%。实验15天后,凤眼莲处理的废水金属含量降低了6.65%至97.56%,大薸处理的废水金属含量降低了3.51%至93.

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