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潜流湿地净化技术对池塘循环水养殖系统浮游植物群落变化的影响
引用本文:朱晓荣,顾建国,曹卢,岳益超,王红卫,宋学宏.潜流湿地净化技术对池塘循环水养殖系统浮游植物群落变化的影响[J].水产养殖,2014(4):21-28.
作者姓名:朱晓荣  顾建国  曹卢  岳益超  王红卫  宋学宏
作者单位:[1]常州市武进区水产技术推广站,江苏常州213159 [2]常州市武进区礼嘉镇农技农机站,江苏常州213176 [3]苏州大学基础医学与生物科学学院,江苏苏州215123
基金项目:江苏省太湖治理池塘循环水养殖工程项目
摘    要:构建"潜流湿地+生态池"的湿地生态系统,并以纯生态池净化系统作为对照区,对实验区与对照区内的浮游植物群落结构进行分析,评价该系统的运行效果。结果表明:循环水养殖工程正式运行后,体系中的养殖池塘浮游植物种类数由多到少的顺序为养殖池塘(对照区)养殖池塘(实验区)外河。养殖池塘的浮游植物密度、生物量及生物多样性指数高于外河。经过3级净化后水体浮游植物种类由高到低的顺序为外河净化系统(对照区)净化系统(实验区),密度与生物量迅速下降。生物多样性指数也低于外河,但随着运行时间的增加,其生物多样性指数持续增加。同时,实验区浮游植物多样性均小于对照区,水体营养盐去除更彻底,水质净化效率更高。

关 键 词:潜流湿地  浮游植物  净化效率

The study about the change of phytoplankton community based on undercurrent wetland purification technics water circulation of farming systems
Zhu Xiaorong Gu Jianguo Cao Lu Yue Yichao Wang Hongwei Song Xuehong.The study about the change of phytoplankton community based on undercurrent wetland purification technics water circulation of farming systems[J].Journal of Aquaculture,2014(4):21-28.
Authors:Zhu Xiaorong Gu Jianguo Cao Lu Yue Yichao Wang Hongwei Song Xuehong
Institution:Zhu Xiaorong Gu Jianguo Cao Lu Yue Yichao Wang Hongwei Song Xuehong ( 1 .Wujin Aquaculture Technology Extension Station, Changzhou, 213159, China; 2.Agrculture Service Center of Lijia Town in Wujin, Changzhou, 213176, China ; 3.School of Biology and Basic Medical Sciences, Soochow University, Suzhou 215123, China)
Abstract:A wetland ecological system composing of subsurface flow wetland and biological purification process was constructed and a purification system by single biological treatment was used as contrast area in this study. In order to assess the operation effects of the wetland ecological system, the differences in yields, aquaculture benefits and phytoplankton community structures between test area and control area were comparatively analyzed. The main results were summarized as follows: After discharged water-recirculating aquaculture engineering was practiced, the highest number of phytoplankton species occurred in fish farming ponds in control area,followed by those in test area, and by outside river,in descending order. The densities and biomass of phytoplankton species, and species diversity index in farming ponds were higher than those in outside river. By 3 sequential purification procedures, the outside river had the highest number of phytoplankton species, followed by control area, and the last one was test area respectively. The densities and biomass decreased rapidly, and the species diversity index was also lower than that in the outside river. Subsequently,the species diversity index continuously increased with the running time of the system. In addition, the phytoplankton species diversity in test area was lower than that in control area, nutrient salts were removed more thoroughly in test area, indicating higher water-purifying efficiency.
Keywords:subsurface flow wetland  phytoplankton  purification efficiency
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