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Effects of organic effluents from a salmon farm on a fjord system. III. Linking deposition rates of organic matter and benthic productivity

机译:鲑鱼养殖场有机废水对峡湾系统的影响。三,将有机物的沉积速率与底栖生产力联系起来

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摘要

The vertical flux of organic matter and infauna production, biomass and abundance at six stations along a gradient away from a salmon farm, located in a western Norwegian fjord at a depth of 230 m and which produced 2910 tonnes of fish in 19 months, was measured repeatedly during an entire on-growth cycle. The study showed that large increases in benthic secondary production can result from the loading of organic waste in nutrient-poor systems like fjords and a strong correlation between annual sedimentation rates of particulate organic matter (carbon and nitrogen) and annual benthic secondary production was found. At the stations that received the bulk of the waste matter (stations situated within 250 m from the mooring point of the farm) infauna production followed feeding regimes at the farm and in 2004 annual benthic secondary production was 40 g ash-free dry weight mpo, 50 times as high as the production 550 to 3000 m away from the farm. Production close to the farm was mainly due to the polychaete Heteromastus filiformis and the bivalve Abra nitida in periods with moderate loadings of organic matter, and by the polychaete Capitella capitata in periods with high loadings. The results of the study further indicate that the threshold for increased infauna production in this deep benthic ecosystem had been reached at an annual flux of 500 g C mpo and that continuous loadings at this magnitude over time might cause overloading of fish farm localities.
机译:测量了位于挪威西部峡湾深230 m的鲑鱼养殖场沿六个坡度的六个站的垂直有机质和浮游动物产量,生物量和丰度的垂直通量,该鲑鱼养殖场在19个月内生产了2910吨鱼在整个成长周期中反复进行。研究表明,底栖次生产量的大幅度增加是由于营养缺乏系统(如峡湾)中有机废物的装载而导致的,颗粒有机物(碳和氮)的年沉降速率与底栖次生年产量之间存在很强的相关性。在接收大部分废物的站点(距农场系泊点不超过250 m的站点),根据该农场的饲养方式进行了动植物生产,2004年底栖次生为40克无灰干重mpo,距离农场550至3000 m的产量的50倍。靠近农场的生产主要是由于有机物中等负荷时期的多毛chaHeteromastus filiformis和双壳类Abra nitida以及高负荷时期的多毛CapCapitella capitata所致。研究结果进一步表明,在该深层底栖生态系统中,以每年500 g C mpo的通量达到了增加动植物数量的阈值,并且随着时间的推移持续不断地加载可能导致养鱼场的过载。

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