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热带泻湖养殖区水质与浮游植物分布的关系。

Relationship between water quality and phytoplankton distribution of aquaculture areas in a tropical lagoon.

机构信息

Archaeology, Environmental Changes and Geo-Chemistry (AMGC), Vrije Universiteit Brussel, Brussels, Belgium.

Faculty of Environmental Science, University of Sciences, Hue University, Hue, Vietnam.

出版信息

Environ Monit Assess. 2024 Oct 24;196(11):1099. doi: 10.1007/s10661-024-13245-2.

Abstract

Aquaculture activities can affect water quality and phytoplankton composition. Our study estimated phytoplankton density and composition relating to aquaculture-impacted environmental factors. We analyzed water quality and phytoplankton at 35 sites in a tropical brackish lagoon, including inside aquaculture ponds (integrated farming of fish, shrimp, and crab), at wastewater discharge points, within 300 m of these points, and farther out in the lagoon. Measurements were taken after aquaculture activities started in March and again in July. In both periods, total nitrogen (TN), total phosphorus (TP), chlorophyll-a (Chl-a), and turbidity decreased from the aquaculture ponds to the farther lagoon areas. Principal component analysis showed that nutrients, turbidity, and Chl-a were critical factors in aquaculture ponds, while salinity, temperature, pH, dissolved oxygen (DO), and water depth influenced water quality outside the ponds. Phytoplankton density was higher in July than in March due to aquaculture characteristics. Redundancy analysis indicated that phytoplankton, typical of inorganic, turbid, shallow lakes, was present throughout, whereas marine phytoplankton characterized the open water area (OWA). Marine phytoplankton caused a higher Shannon-Wiener index in July compared to March for OWA. Phytoplankton in aquaculture ponds was dominated by Oscillatoria spp., while Thalassiosira spp. dominated outside the ponds. We also identified indicator genera for two connected lagoons. Although constant water exchange prevented identifying specific indicator phytoplankton groups for aquaculture, this revealed the impact of wastewater from aquaculture ponds on the natural environment in the lagoons. Research on phytoplankton communities is necessary for the sustainable development of aquaculture and environmental management in coastal lagoons.

摘要

水产养殖活动会影响水质和浮游植物组成。我们的研究旨在评估与水产养殖相关的环境因子对浮游植物密度和组成的影响。我们分析了热带咸水泻湖 35 个地点的水质和浮游植物,包括水产养殖池塘(鱼、虾和蟹综合养殖)内部、废水排放点、这些点 300 米范围内以及泻湖更远处。测量是在 3 月水产养殖活动开始后和 7 月再次进行的。在这两个时期,总氮(TN)、总磷(TP)、叶绿素-a(Chl-a)和浊度都从水产养殖池塘向更远的泻湖区域降低。主成分分析表明,在水产养殖池塘中,营养物质、浊度和 Chl-a 是关键因素,而盐度、温度、pH 值、溶解氧(DO)和水深则影响池塘外的水质。浮游植物密度由于水产养殖的特点,7 月高于 3 月。冗余分析表明,整个池塘都存在典型的无机、浑浊、浅湖浮游植物,而开阔水域(OWA)则以海洋浮游植物为特征。与 3 月相比,OWA 中海洋浮游植物在 7 月导致 Shannon-Wiener 指数更高。水产养殖池塘中的浮游植物主要由 Oscillatoria spp. 组成,而池塘外则以 Thalassiosira spp. 为主。我们还确定了两个相连泻湖的指示属。尽管持续的水交换阻止了为水产养殖确定特定的指示浮游植物群,但这揭示了水产养殖池塘废水对泻湖自然环境的影响。对浮游植物群落的研究对于水产养殖和沿海泻湖的环境管理的可持续发展是必要的。

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