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The development of sustainable saltwater-based food production systems: a review of established and novel concepts

机译:可持续的以盐水为基础的食品生产系统的发展:既有观念和新颖观念的回顾

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摘要

The demand for seafood products on the global market is rising, particularly in Asia, as affluence and appreciation of the health benefits of seafood increase. This is coupled with a capture fishery that, at best, is set for stagnation and, at worst, significant collapse. Global aquaculture is the fastest growing sector of the food industry and currently accounts for approximately 45.6% of the world’s fish consumption. However, the rapid development of extensive and semi-extensive systems, particularly intensive marine-fed aquaculture, has resulted in worldwide concern about the potential environmental, economic, and social impacts of such systems. In recent years, there has been a significant amount of research conducted on the development of sustainable saltwater-based food production systems through mechanical (e.g., recirculatory aquaculture (RAS) systems) methods and ecosystem-based approaches (e.g., integrated multi-trophic aquaculture (IMTA)). This review article will examine the potential negative impacts of monocultural saltwater aquaculture operations and review established (RAS) and novel (IMTA; constructed wetlands; saltwater aquaponics) saltwater-based food production systems and discuss their (potential) contribution to the development of sustainable and environmentally-friendly systems.
机译:随着对海产品的富裕程度和对健康益处的认识的提高,全球市场对海鲜产品的需求正在上升,尤其是在亚洲。加上捕捞渔业,充其量将陷入停滞,最糟糕的是将其严重破坏。全球水产养殖是食品工业中增长最快的部门,目前约占世界鱼类消费量的45.6%。然而,广泛的和半广泛的系统,特别是集约化海洋养殖的快速发展,已引起全世界对这种系统的潜在环境,经济和社会影响的关注。近年来,通过机械(例如循环水产养殖(RAS)系统)方法和基于生态系统的方法(例如综合多营养水产养殖)发展基于盐水的可持续粮食生产系统方面,已经进行了大量研究。 (IMTA))。这篇评论文章将研究单一养殖咸水养殖业务的潜在负面影响,并回顾已建立的(RAS)和新型的(IMTA;人工湿地;咸水共生)基于盐水的粮食生产系统,并讨论其对可持续和可持续发展的(潜在)贡献。环保系统。

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