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Emerging effluent management strategies in marine fish-culture farms located in European coastal wetlands

机译:位于欧洲沿海湿地的海水养鱼场的新兴污水管理策略

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Coastal wetlands are suitable sites for land-based fish culture in ponds and tanks, but environmental constraints on effluent discharges are stringent for these areas. In order to limit effluent loading, different techniques have been proposed and are beginning to be implemented by aquaculturists. On the Atlantic coast of Europe (France, Portugal, Spain, etc.), growout farms for sea bass (Dicentrarchus labrax), sea bream (Sparus aurata) or turbot (Scophthalmus maximus) are often located in wetlands where salt ponds were previously built. Downstream from the rearing ponds, sedimentation ponds are used to reduce particulate matter exportation. Using fish farm effluents, the continuous mass culture of microalgae has been the subject of experiments converting ammonia and phosphates into diatoms, with the systematic addition of required amounts of limiting nutrients (silicon as sodium silicate, or phosphorus as phosphoric acid). New physical treatments may be added if partial recirculation systems are employed, such as immersed foam fractionators, specifically developed for aquaculture ponds. Integrated systems may be emergent practices for reducing the effluent pollutant discharge without additional cost, in addition to producing a complementary income to that resulting from the production of the main culture species.
机译:沿海湿地是在池塘和水箱中进行陆上鱼类养殖的合适场所,但是这些地区对废水排放的环境限制非常严格。为了限制废水负荷,已经提出了各种技术,并且水产养殖者开始采用这些技术。在欧洲的大西洋沿岸(法国,葡萄牙,西班牙等),鲈鱼(Dicentrarchus labrax),鲷鱼(Sparus aurata)或大菱t(Scophthalmus maximus)的养殖场通常位于以前曾建有盐塘的湿地中。在饲养池的下游,沉淀池用于减少颗粒物的输出。使用鱼类养殖场的废水,微藻的连续大规模培养一直是将氨和磷酸盐转化为硅藻的实验主题,并系统地添加了所需量的限制性养分(硅为硅酸钠,磷为磷酸)。如果采用部分再循环系统,例如专门为水产养殖池塘开发的浸没式泡沫分馏器,则可以增加新的物理处理方法。集成系统可能是减少废水污染物排放而无需额外成本的新兴方法,除了产生与主要养殖物种生产相关的补充收入外。

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