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Sources and export of nutrients associated with integrated multi-trophic aquaculture in Sanggou Bay, China

机译:中国桑沟湾综合多营养水产养殖相关的养分来源和出口

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摘要

Field observations were made from 2012 to 2014 at an integrated multi-trophic aquaculture (IMTA) site in Sanggou Bay (SGB), China, to characterize the nutrients associated with aquaculture activities, and to assess the effects of aquaculture on nutrient cycles in the bay. Dissolved inorganic and organic nutrient levels were measured in rivers, groundwater, and SGB. Seasonal variations in nutrient concentrations were detected in the rivers, particularly enrichment of dissolved inorganic nitrogen (DIN) and silicate (DSi). Nutrient concentrations showed considerable seasonal variation, with higher and significantly different concentrations occurring in autumn than in the other seasons. The composition and distribution of nutrients were also affected by the species being cultured. Dissolved organic nitrogen and phosphorus (DON and DOP) accounted for 27 to 87% of total dissolved nitrogen and 34 to 81% of total dissolved phosphorus, respectively. Phosphorus may be a potentially limiting nutrient for phytoplankton growth in summer. Nutrient budgets were developed based on a simple steady-state box model. These showed that bivalve aquaculture was the major source of PO43-(contributing 64% of total influx) and led to increased riverine fluxes of PO43-. The results indicated that substantial quantities of nitrogen and DSi accumulated in sediments or were transformed into other forms (e.g. phytoplankton cell composition or particles). Large quantities of DIN and PO43- were removed from the bay through harvesting of seaweeds and bivalves, which represented up to 64 and 81% of total outflux, respectively. The results show that aquaculture activities play the most important role in nutrient cycling in SGB.
机译:2012年至2014年在中国桑沟湾(SGB)的综合多营养水产养殖(IMTA)站点进行了实地观察,以表征与水产养殖活动有关的营养成分,并评估水产养殖对海湾养分循环的影响。在河流,地下水和SGB中测量了溶解的无机和有机营养水平。在河流中检测到养分浓度的季节性变化,特别是溶解性无机氮(DIN)和硅酸盐(DSi)的富集。营养物浓度表现出明显的季节性变化,秋季的浓度比其他季节高且有显着差异。营养物质的组成和分布也受到所养殖物种的影响。溶解的有机氮和磷(DON和DOP)分别占溶解氮总量的27%至87%和溶解磷总量的34%至81%。磷可能是夏季浮游植物生长的潜在限制营养素。根据简单的稳态箱模型开发营养预​​算。这些表明双壳类水产养殖是PO43-的主要来源(占总流入量的64%),并导致PO43-的河流通量增加。结果表明大量氮和DSi沉积在沉积物中或转化为其他形式(例如浮游植物细胞组成或颗粒)。通过收获海藻和双壳类动物,从海湾中移走了大量的DIN和PO43-,分别占总流出量的64%和81%。结果表明,水产养殖活动在SGB的养分循环中起着最重要的作用。

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