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Effect of feed and feeding in the culture of salmonids on the marine aquatic environment: a synthesis for European aquaculture.

机译:鲑鱼养殖中饲料和饲料对海洋水生环境的影响:欧洲水产养殖的合成。

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Marine aquaculture has grown rapidly, so are the concerns regarding the environmental impacts caused by the industry. In particular, increasing discharges of solid and dissolved fish excretions, nutrients and therapeutic chemicals have coincided with greater public awareness of the possibility of environmental damage. This has stimulated a number of criticisms, drawn from a wide spectrum of interests, ranging from the use of natural fish stocks to produce fish meal for aquafeeds to the effects of enhanced nutrient input on the coastal marine environment. The present study reviews available information on the environmental effects of feeding practices in salmonid aquaculture in Europe. Accumulation of waste food and fish faecal material results in changes in the sediment under the fish cages, characterized by a low redox potential, high content of organic material and accumulation of nitrogenous and phosphorous compounds. Although significant environmental impacts have been reported in the literature at distances of up to 100 m from the cages, in general, such impacts are reported to be localized to within 20-50 m around the cages. For farmed salmon and trout, mass balance models have been developed for nitrogen and phosphorus, indicating that 50% of the nitrogen and 28% of the phosphorus supplied with the food are wasted in dissolved form. The maximum nutrient release can be estimated from the hydrographic conditions in the immediate vicinity of the farm such as water volume, tidal water exchange and currents. At present production levels, improvements in the feeding efficiency and feed quality of aquafeeds can reduce waste and consequent environmental impacts..
机译:海洋水产养殖发展迅速,因此对该行业造成的环境影响的关注也在增加。特别是,固体和溶解的鱼类排泄物,营养物质和治疗性化学物质的排放量增加,与此同时,公众也越来越意识到环境破坏的可能性。从广泛的兴趣出发,这引起了许多批评,从使用天然鱼类种群生产用于水产饲料的鱼粉到增加营养素输入对沿海海洋环境的影响。本研究综述了欧洲鲑鱼养殖中饲养方式对环境影响的可用信息。浪费的食物和鱼粪便的积累导致鱼笼下沉积物的变化,其特征是氧化还原电位低,有机物含量高以及氮和磷化合物的积累。尽管文献报道在距网箱最远100 m处产生了显着的环境影响,但一般而言,据报道这种影响仅限于网箱周围20-50 m之内。对于养殖鲑鱼和鳟鱼,已经开发了氮和磷的质量平衡模型,表明随食物一起提供的氮的50%和磷的28%被溶解了。可以从农场附近的水文条件(例如水量,潮汐水交换和水流)估算最大的养分释放。以目前的生产水平,水产饲料的饲喂效率和饲料质量的提高可以减少浪费并减少对环境的影响。

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