首页> 外文期刊>The Journal of Applied Ecology >Towards environmentally friendly finfish farming: A potential for mussel farms to compensate fish farm effluents
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Towards environmentally friendly finfish farming: A potential for mussel farms to compensate fish farm effluents

机译:迈向环境友好型有鳍鱼类养殖:贻贝养殖场补偿养鱼场废水的潜力

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Abstract Aquaculture is seen as a possible solution to meet the rising demand for fish but only if the sector reduces its use of wild fish in feed as well as its environmental impacts. The cultivation of extractive species along with fish farming (the integrated multi‐trophic aquaculture system) has a potential to mitigate the adverse environmental effects of fish farming. The dynamic energy budget (DEB) modelling is a powerful tool to be used in different aquaculture settings to achieve the Blue Growth goals set by the commission. This study explored the potential of mussel for bioremediation at finfish farms to develop environmentally sustainable finfish farming solutions in the eutrophic Baltic Sea region. The study integrated the DEB models of blue mussels Mytilus edulis/trossulus and rainbow trout Oncorhynchus mykiss and a regional hydrodynamic‐biogeochemical model to explore the potential of mussel farming to fully compensate nutrient discharges from finfish farms. The DEB models demonstrated that despite suboptimal mussel growth conditions (low salinity), mussel farming has a potential to fully compensate for the discharge of nutrients from fish farms and thereby provide a solution for sustainable fish farming in the Baltic Sea region. Synthesis and applications. As such fish farming may become a necessary enabler of economically sustainable mussel farming in the region. Mussel farming facilitates finfish farming licensing whereas finfish farming covers some costs of mussel farming thereby increasing the economic feasibility of this activity in the region.
机译:摘要 水产养殖被视为满足日益增长的鱼类需求的可能解决方案,但前提是该部门必须减少野生鱼类在饲料中的使用及其对环境的影响。采掘性物种的养殖和鱼类养殖(综合多营养水产养殖系统)有可能减轻鱼类养殖对环境的不利影响。动态能源预算(DEB)模型是一个强大的工具,可用于不同的水产养殖环境,以实现委员会设定的蓝色增长目标。本研究探讨了贻贝在有鳍鱼类养殖场生物修复方面的潜力,以在富营养化的波罗的海地区开发环境可持续的有鳍鱼类养殖解决方案。该研究整合了蓝贻贝Mytilus edulis/trossulus和虹鳟鱼Oncorhynchus mykiss的DEB模型和区域流体动力学-生物地球化学模型,以探索贻贝养殖在充分补偿有鳍鱼类养殖场营养物质排放方面的潜力。DEB模型表明,尽管贻贝生长条件欠佳(低盐度),但贻贝养殖有可能完全补偿养鱼场的营养物质排放,从而为波罗的海地区的可持续鱼类养殖提供解决方案。合成与应用.因此,鱼类养殖可能成为该地区经济上可持续的贻贝养殖的必要推动力。贻贝养殖促进了有鳍鱼类养殖许可,而有鳍鱼类养殖则支付了贻贝养殖的一些成本,从而增加了该区域这项活动的经济可行性。

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