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Production and uptake of dissolved carbon, nitrogen, and phosphorus in overlying water of aquaculture shrimp ponds in subtropical estuaries, China

机译:水产养殖虾池中亚热带河池中溶解碳,氮和磷的生产和吸收

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摘要

Water quality deterioration can adversely affect the long-term sustainability of aquaculture industry. Understanding the processes of nutrient regeneration and uptake is important for improving water quality and the overall ecosystem health of aquaculture system. In spite of the importance of dissolved nutrients (DOC, DIC, N-NOx-, N-NH4+, and P-PO43-) in governing water quality and ecosystem functioning, the spatiotemporal variations in the production and uptake of dissolved nutrients in aquaculture ponds is still poorly understood. In this study, the nutrient production and uptake rates in the overlying water were quantified among different shrimp growth stages in the aquaculture ponds in the Min River Estuary (MRE) and Jiulong River Estuary (JRE), southeast China. Significant differences in the nutrient production and uptake rates in the overlying water were observed among the three growth stages and two estuaries. The temporal variations of DOC and DIC production rates in both estuarine ponds closely followed the seasonal cycle of temperature, while the difference in DOC and DIC production rates between the two estuaries was likely caused by differences in water salinity. The changes in the production and uptake rates of dissolved inorganic nitrogen (N-NOx- and N-NH4+) and P-PO43- in the water column over time were partly related to the interactions between thermal conditions and phytoplankton biomass (e.g., chlorophyll a concentrations) in the ponds. Our results demonstrate the complex dynamics and environmental risk of dissolved nutrients in subtropical shrimp ponds, and call for a more effective management of nutrient-laden wastewater in safeguarding the long-term sustainability of aquaculture production.
机译:水质恶化可能对水产养殖业的长期可持续性产生不利影响。了解营养素再生和摄取过程对于改善水质和水产养殖系统的整体生态系统健康是重要的。尽管溶解的营养素(DIC,DIC,N-NOX,N-NH4 +和P-NH43-)在治疗水质和生态系统功能中的重要性,但水产养殖池中溶解营养成分的生产和摄取的时空变化仍然明白很差。在这项研究中,山水河口(MRE)和九龙河口(JRE)的水产养殖池中的不同虾生长阶段的营养产量和摄取率在中国东南部的水产养殖池中定量。在三个生长阶段和两个河口中观察到覆盖水中营养素生产和摄取率的显着差异。河口池塘中的DOC和DIC生产率的时间变化紧密遵循季节性循环的温度,而两个河口之间的DOC和DIC生产率的差异可能是由水盐度的差异引起的。在生产和吸收溶解的无机氮的速率(N-NO x的和N-NH4 +)和P-PO43-在随时间的水柱变化部分与热条件和浮游植物生物量(例如,叶绿素a之间的相互作用浓度)在池塘里。我们的研究结果表明在保障养殖生产的长期可持续性的营养载货废水更有效地管理复杂的动态和溶解的养分在亚热带虾池环境风险和呼叫。

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