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Effect of production quotas on economic and environmental values of growth rate and feed efficiency in sea cage fish farming

机译:生产配额对网箱养鱼经济和环境价值增长率和饲料效率的影响

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摘要

In sea cage fish farming, production quotas aim to constrain the impact of fish farming on the surrounding ecosystem. It is unknown how these quotas affect economic profitability and environmental impact of genetic improvement. We combined bioeconomic modelling with life cycle assessment (LCA) to calculate the economic (EV) and environmental (ENV) values of thermal growth coefficient (TGC) and feed conversion ratio (FCR) of sea bass reared in sea cages, given four types of quota commonly used in Europe: annual production (Qprod), annual feed distributed (Qannual_feed), standing stock (Qstock), and daily feed distributed (Qdaily_feed). ENV were calculated for LCA impact categories climate change, eutrophication and acidification. ENV were expressed per ton of fish produced per year (ENV(fish)) and per farm per year (ENV(farm)). Results show that irrespective of quota used, EV of FCR as well as ENV(fish) and ENV(farm) were always positive, meaning that improving FCR increased profit and decreased environmental impacts. However, the EV and the ENV(fish) of TGC were positive only when quota was Qstock or Qdaily_feed. Moreover, the ENV(farm) of TGC was negative in Qstock and Qdaily_feed quotas, meaning that improving TGC increased the environmental impact of the farm. We conclude that Qstock quota and Qdaily_feed quota are economically favorable to a genetic improvement of TGC, a major trait for farmers. However, improving TGC increases the environmental impact of the farm. Improving FCR represents a good opportunity to balance out this increase but more information on its genetic background is needed to develop breeding programs improving FCR.
机译:在海水网箱养鱼中,生产配额旨在限制养鱼对周围生态系统的影响。这些配额如何影响经济效益和遗传改良对环境的影响尚不得而知。我们将生物经济模型与生命周期评估(LCA)结合起来,计算出四种网箱养殖鲈鱼的热生长系数(TGC)和饲料转化率(FCR)的经济(EV)和环境(ENV)值欧洲常用的配额:年产量(Qprod),年度饲料分配(Qannual_feed),常备库存(Qstock)和每日饲料分配(Qdaily_feed)。针对LCA影响类别(气候变化,富营养化和酸化)计算了ENV。 ENV表示为每年生产的每吨鱼(ENV(鱼))和每年每个养殖场(ENV(农场))。结果表明,无论使用何种配额,FCR的EV值以及ENV(鱼)和ENV(农场)的值始终为正,这意味着改善FCR可以增加利润,并减少对环境的影响。但是,仅当配额为Qstock或Qdaily_feed时,TGC的EV和ENV(鱼)才为正。此外,TGC的ENV(农场)在Qstock和Qdaily_feed配额中为负,这意味着改良TGC会增加农场的环境影响。我们得出的结论是,Qstock配额和Qdaily_feed配额在经济上有利于TGC的遗传改良,这是农民的主要特征。但是,改善TGC会增加农场的环境影响。改善FCR代表了一个很好的机会,可以抵消这种增加,但是需要更多有关其遗传背景的信息,以制定改良FCR的育种计划。

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