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首页> 外文期刊>Environmental Science & Technology >Role of Shellfish Aquaculture in the Reduction of Eutrophication in an Urban Estuary
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Role of Shellfish Aquaculture in the Reduction of Eutrophication in an Urban Estuary

机译:贝类水产养殖在减少城市河口富营养化中的作用

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src="http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/esthag/2018/esthag.2018.52.issue-1/acs.est.7b03970/20171226/images/medium/es-2017-03970z_0002.gif">Land-based management has reduced nutrient discharges; however, many coastal waterbodies remain impaired. Oyster “bioextraction” of nutrients and how oyster aquaculture might complement existing management measures in urban estuaries was examined in Long Island Sound, Connecticut. Eutrophication status, nutrient removal, and ecosystem service values were estimated using eutrophication, circulation, local- and ecosystem-scale models, and an avoided-costs valuation. System-scale modeling estimated that 1.31% and 2.68% of incoming nutrients could be removed by current and expanded production, respectively. Up-scaled local-scale results were similar to system-scale results, suggesting that this up-scaling method could be useful in bodies of water without circulation models. The value of removed nitrogen was estimated using alternative management costs (e.g., wastewater treatment) as representative, showing ecosystem service values of $8.5 and $470 million per year for current and maximum expanded production, respectively. These estimates are conservative; removal by clams in Connecticut, oysters and clams in New York, and denitrification are not included. Optimistically, the calculation of oyster-associated removal from all leases in both states (5% of bottom area) plus denitrification losses showed increases to 10%–30% of annual inputs, which would be higher if clams were included. Results are specific to Long Island Sound, but the approach is transferable to other urban estuaries.
机译:src =“ http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/esthag/2018/esthag.2018.52.issue-1/acs.est.7b03970/20171226/images/medium /es-2017-03970z_0002.gif“>基于土地的管理减少了养分排放;但是,许多沿海水体仍然受损。在康涅狄格州的长岛海湾,研究了牡蛎对营养物的“生物提取”以及牡蛎养殖如何补充城市河口现有的管理措施。富营养化状况,养分去除和生态系统服务价值是使用富营养化,循环,局部和生态系统规模模型以及可避免的成本估值来估算的。系统规模的模型估计,当前生产和扩大生产可以分别去除1.31%和2.68%的输入养分。局部放大的结果与系统放大的结果相似,表明这种放大方法在没有循环模型的水体中可能有用。以替代管理成本(例如废水处理)为代表来估算去除的氮的价值,显示当前和最大的扩大生产的生态系统服务价值分别为每年8.5美元和4.7亿美元。这些估计是保守的;不包括康涅狄格州的蛤,纽约的牡蛎和蛤的去除以及反硝化作用。乐观地讲,在两个州(底面积的5%)的所有租约中,与牡蛎有关的清除量加上反硝化损失的计算表明,增加到年度投入的10%–30%,如果包括蛤c,这一数字会更高。结果特定于长岛之声,但该方法可转移到其他城市河口。

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  • 来源
    《Environmental Science & Technology 》 |2018年第1期| 173-183| 共11页
  • 作者单位

    National Centers for Coastal Ocean Science, Silver Spring, Maryland 20910, United States;

    Departamento de Ciencias e Engenharia do Ambiente, Faculdade Ciencias e Tecnologia, Universidade Nova de Lisboa, Qta Torre, 2829-516, Monte de Caparica, Portugal;

    Departamento de Ciencias e Engenharia do Ambiente, Faculdade Ciencias e Tecnologia, Universidade Nova de Lisboa, Qta Torre, 2829-516, Monte de Caparica, Portugal;

    NOAA Fisheries NEFSC Milford Laboratory, 212 Rogers Avenue, Milford, Connecticut 06460, United States;

    NOAA Fisheries NEFSC Milford Laboratory, 212 Rogers Avenue, Milford, Connecticut 06460, United States;

    NOAA Fisheries NEFSC Milford Laboratory, 212 Rogers Avenue, Milford, Connecticut 06460, United States;

    Departamento de Ciencias e Engenharia do Ambiente, Faculdade Ciencias e Tecnologia, Universidade Nova de Lisboa, Qta Torre, 2829-516, Monte de Caparica, Portugal;

    HDR, Inc., 1 International Boulevard, 10th Floor, Suite 1000, Mahwah, New Jersey 07495-0027, United States;

    HDR, Inc., 1 International Boulevard, 10th Floor, Suite 1000, Mahwah, New Jersey 07495-0027, United States;

    New Hampshire Department of Environmental Services, Durham, New Hampshire 03824, United States;

    Department of Biological Sciences, Jackson Estuarine Laboratory, 85 Adams Point Road, Durham, New Hampshire 03824, United States;

    Northern Economics, Inc., 1455 NW Leary Way, Suite 400, Seattle Washington 98107, United States;

    East Coast Shellfish Growers Association, 1121 Mooresfield Road, Wakefield, Rhode Island 02879, United States;

    National Centers for Coastal Ocean Science, Silver Spring, Maryland 20910, United States;

    National Centers for Coastal Ocean Science, Silver Spring, Maryland 20910, United States;

    National Centers for Coastal Ocean Science, Silver Spring, Maryland 20910, United States;

    National Health and Environmental Effects Research Laboratory, Atlantic Ecology Division, Environmental Protection Agency Office of Research and Development, 27 Tarzwell Drive, Narragansett, Rhode Island 02882, United States;

    National Health and Environmental Effects Research Laboratory, Atlantic Ecology Division, Environmental Protection Agency Office of Research and Development, 27 Tarzwell Drive, Narragansett, Rhode Island 02882, United States;

    Environmental Protection Agency Long Island Sound Office, Government Center, Suite 9-11, 888 Washington Blvd., Stamford, Connecticut 06904-2152, United States;

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