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首页> 外文期刊>Aquaculture Environment Interactions >Impacts of an integrated multi-trophic aquaculture system on benthic nutrient fluxes: a case study in Sanggou Bay, China
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Impacts of an integrated multi-trophic aquaculture system on benthic nutrient fluxes: a case study in Sanggou Bay, China

机译:一体化多营养水产养殖系统对底栖营养通量的影响:以中国桑沟湾为例

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摘要

ABSTRACT: Benthic nutrient fluxes in an integrated multi-trophic aquaculture (IMTA) bay—Sanggou Bay, China—were measured in June and September 2012. The benthic nutrient fluxes and total organic carbon (TOC) of sediment in this IMTA system were significantly lower than in monoculture bays. This was due to the efficient recycling of organic matter in the IMTA system, as revealed by historical data of annual production, dissolved inorganic nitrogen (DIN) concentration in seawater and TOC in sediment. Benthic nutrient fluxes in the IMTA system were mainly controlled by seawater temperature, dissolved oxygen (DO) and nutrient concentrations, which were strongly related to aquaculture activities. In June, the early growth phase of cultured finfish and bivalves contributed little to biodeposition, and benthic nutrient fluxes tended to be from the sediment to the seawater and contributed to algal growth. In September, the active growth of finfish and bivalves resulted in high concentrations of nutrients in the seawater and TOC in the sediment; 64% of the nitrogen and 25% of the phosphorus metabolized by bivalves were transferred from the seawater to the sediment.
机译:摘要:2012年6月和2012年9月,对中国多沟综合水产养殖(IMTA)湾(中国桑沟湾)的底栖营养通量进行了测量。该IMTA系统中底栖营养通量和沉积物的总有机碳(TOC)明显较低比单一养殖海湾这是由于IMTA系统中有机物的有效回收,如年产量,海水中溶解的无机氮(DIN)浓度和沉积物中的TOC的历史数据所揭示。 IMTA系统中的底栖养分通量主要受海水温度,溶解氧(DO)和养分浓度的控制,这与水产养殖活动密切相关。 6月,有鳍鱼类和双壳类鱼类的早期生长阶段对生物沉积的贡献很小,底栖营养通量倾向于从沉积物到海水,并有助于藻类的生长。 9月,有鳍鱼和双壳类鱼的活跃生长导致海水中的营养物质含量高,沉积物中的TOC含量高;被双壳类动物代谢的64%的氮和25%的磷从海水转移到沉积物中。

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