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首页> 外文期刊>Journal of Water Resource and Protection >Influence of Constructed Wetland and Soil Filter Systems in the Dynamics of Phytoplankton Functional Groups of Two Subtropical Fish Farm Wastewaters
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Influence of Constructed Wetland and Soil Filter Systems in the Dynamics of Phytoplankton Functional Groups of Two Subtropical Fish Farm Wastewaters

机译:人工湿地和土壤过滤系统对两种亚热带鱼类养殖场废水浮游植物官能团动力学的影响

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Environmental pressure, land utilization, and economic feasibility have resulted in the development of alternatives to treatment fish farm wastewater. We examined the influence of two water treatment systems—a constructed wetland (CW) and a soil filter system (SF)—on the constitution of the phytoplankton community analyzed through the functional grouping of species and nutrients removal of aquaculture farm. The CW provided high removal efficiency: 82.9% for ammonia, 87.0% for nitrate, 96.9% for nitrite, 85.5% for total phosphorus, 88.5% for SRP and 71.6% for BOD. Removal efficiency of SF was lower than CW, removing 82.1% of ammonia, 7.2% of total phosphorus, 45.9% of SRP and 39.4% of nitrite, but was satisfactory. The functional group F, made up of Chlorophyceae Dictyosphaerium pulchellum and Kirchneriella lunaris, was the most representative in both systems, followed by functional group P and constituted by Zygnemaphyceae Melosira sp. The number of functional groups decreased in the outlet of the two treatment systems, where S1, H1 and W1, characteristic of eutrophic environment, were retained. Data show that CW and the SF system are potentially applicable to the fish farm wastewater treatment and ensure an improvement in water quality.
机译:环境压力,土地利用和经济可行性已导致开发替代养鱼场废水的替代方法。我们研究了两种水处理系统(人工湿地(CW)和土壤过滤系统(SF))对浮游植物群落组成的影响,通过对水产养殖场物种的功能分组和营养去除功能进行了分析。连续水的去除效率很高:氨气为82.9%,硝酸盐为87.0%,亚硝酸盐为96.9%,总磷为85.5%,SRP为88.5%,BOD为71.6%。 SF的去除效率低于CW,去除了82.1%的氨,7.2%的总磷,45.9%的SRP和39.4%的亚硝酸盐,但令人满意。在两个系统中最具代表性的是由小球藻Dictyosphaerium pulchellum和Kirchneriella lunaris组成的官能团F,其次是官能团P,由Zygnemaphyceae Melosira sp组成。在两个处理系统的出口处,保留了富营养化环境特征的S1,H1和W1,其官能团的数量减少了。数据表明,连续水和SF系统可能适用于养鱼场废水处理,并确保水质得到改善。

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