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Inland Marine Fish Culture in Low Salinity Recirculating Aquaculture Systems

机译:低盐循环水产养殖系统中的内陆海水鱼类养殖

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摘要

Expansion of marine aquaculture is challenged by the high cost and limited availability of coastal land and water resources, effluent concerns, high production costs, restricted growing seasons, lack of quality fingerlings, and inadequate regulatory and permitting processes. Many of these constraints can be addressed with inland marine fish culture in low salinity recirculating systems as production models. We describe recent and ongoing development of technologies in four principal areas: 1) engineering and system design; 2) year-round fingerling production; 3) diet development; and 4) physiological adaptation of marine fish to low salinity environments using genomic approaches. It is anticipated these technologies could find application for rearing euryhaline marine fish throughout approximately 2/3 of the U.S. where low salinity groundwater is available. This approach will reduce the need to be located near the coast, reduce the volume of saltwater effluent, and reduce the carbon footprint of marine finfish production.
机译:海水养殖的扩张面临着成本高昂和沿海土地和水资源有限,出水问题,高昂的生产成本,生长季节受限,鱼种质量欠佳以及监管和许可流程不足等挑战。在低盐度循环系统中,内陆海水鱼类养殖可以作为生产模型来解决许多这些限制。我们在四个主要领域描述技术的最新发展和持续发展:1)工程和系统设计; 2)全年生产鱼种; 3)饮食发展; 4)利用基因组方法使海水鱼类适应低盐度环境。预计这些技术将可用于在美国约有2/3的低盐度地下水可用的地方养殖淡滨海鱼。这种方法将减少在海岸附近的需要,减少盐水流出量,并减少海洋有鳍鱼类生产的碳足迹。

著录项

  • 来源
    《水産総合研究センター研究報告》 |2012年第35期|65-75|共11页
  • 作者单位

    United States Department of Agriculture, Agricultural Research Service, Sustainable Marine Aquaculture Systems, 5600 U.S. Hwy 1 N. Fort Pierce, Florida 34946;

    United States Department of Agriculture, Agricultural Research Service, Sustainable Marine Aquaculture Systems, 5600 U.S. Hwy 1 N. Fort Pierce, Florida 34946;

    Harbor Branch Oceanographic Institute, Florida Atlantic University, Center for Aquaculture and Stock Enhancement, 5600 U.S. Hwy 1 N. Fort Pierce, Florida 34946;

    United States Geological Survey, Upper Midwest Environmental Sciences Center, 2630 Fanta Reed Road, La Crosse, Wisconsin 54603;

    Purdue University, Department of Forestry and Natural Resources, 195 Marsteller West Lafayette, Indiana 47907;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    low salinity; marine fish; recirculating systems;

    机译:低盐度;海鱼;循环系统;

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