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首页> 外文期刊>Aquaculture Environment Interactions >Discharge of nutrient wastes from salmon farms: environmental effects, and potential for integrated multi-trophic aquaculture.
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Discharge of nutrient wastes from salmon farms: environmental effects, and potential for integrated multi-trophic aquaculture.

机译:鲑鱼养殖场排放的营养废物:对环境的影响以及综合多营养水产养殖的潜力。

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We quantified release rates of carbon (C), nitrogen (N) and phosphorus (P) waste from Norwegian salmon farms in 2009 in order to evaluate the theoretical environmental influence on surrounding waters and the potential for integrated multi-trophic aquaculture (IMTA) driven by salmon aquaculture. Of the total feed input, 70% C, 62% N and 70% P were released into the environment, equivalent to an annual discharge of about 404000, 50600 and 9400 t of C, N and P, respectively, based on total salmon production of 1.02x106 t. We predicted that 48% of feed C was respired as CO2, 45% of feed N was excreted as dissolved inorganic N (DIN), and 18% of feed P was excreted as dissolved inorganic P (DIP). Approximately 44% of feed P was released as particles, dominating solid wastes. The mean food conversion ratio (feed supplied per fish produced) of Norwegian salmon farms was 1.16+or-0.08 SE in 2009. Estimates of the potential for IMTA driven by salmon farming showed a far higher potential for seaweed production based on the released DIN than for mussel production based on released appropriately sized particulate organic carbon (POC). The daily volumetric loading rates of DIN from salmon farms (range for counties: 40 to 501 micro g N m-3 d-1) were <15% of the natural loading rate of nitrate from deep water, suggesting that the nutrient loading rate is within safe limits.
机译:我们评估了2009年挪威鲑鱼养殖场的碳(C),氮(N)和磷(P)废物的释放速率,以评估理论上对周围水域的环境影响以及整合多营养水产养殖(IMTA)驱动的潜力通过鲑鱼养殖。在总饲料投入中,有70%的碳,62%的氮和70%的磷释放到环境中,基于鲑鱼总产量,分别相当于每年分别排放404000、50600和9400吨碳,氮和磷为1.02x10 6 t。我们预测48%的饲料C以CO 2 的形式被呼吸,45%的饲料N以溶解的无机N(DIN)的形式被排出,18%的饲料P以溶解的无机P(DIP)的形式被排出。 )。约44%的进料P以颗粒形式释放,占固体废物的大部分。 2009年挪威鲑鱼养殖场的平均食物转化率(每生产的鱼提供的饲料)为1.16+或-0.08 SE。对鲑鱼养殖驱动的IMTA潜力的估计显示,基于释放的DIN,海藻生产的潜力远高于用于生产贻贝,其基于释放的适当大小的颗粒有机碳(POC)。鲑鱼养殖场(县范围:40至501 micro g N m -3 d -1 )的DIN日体积负荷率小于自然负荷的15%深水中硝酸盐的比率,表明养分负载率在安全范围内。

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