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Integrated management of nutrients from the watershed to coast in the subtropical region

机译:亚热带地区从流域到海岸的养分综合管理

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This paper is a brief review on nutrient variation (changes in element concentrations and ratios) and the associated aquatic ecosystem responses in the subtropical region. Human activities have significantly modified both the flux and the ratio of nutrients delivered to aquatic ecosystems. Climate perturbations influence the hydrological regime and enhance nutrient mineralization and transport from land to receiving waters. Changes in land use and damming have resulted in changes in the balance among nitrogen, phosphorus and silicon elements, thus increasing the risk of algal bloom. Nutrient variation and its ecological effects in the subtropical region could be more significant than in other areas because of rapid development and high population. Aquatic ecosystems respond to nutrient variation in complex and dynamic ways resulting in eutrophication, hypoxia/anoxia, acidification, and changes in phytoplankton and microbial communities. This review suggests that harmful algal bloom, jellyfish bloom, and serious pathogens are often associated with nutrient variations. The current challenges to scientific research and management include the facts that (1) the link between nutrient dynamics and ecosystem responses is poorly understood; (2) monitoring data to support modeling and management are scarce; (3) aquatic ecosystems are site-specific and/or situation-specific and are highly dynamic, giving greater complexity in research and management; and (4) the lack of regional coordination in traditional management causes transboundary gaps. To address these current challenges, an integrated management framework was proposed for effective nutrient management. Institutional arrangements should be developed to coordinate across multiple government agencies and other stakeholders from watershed to coast. The framework should integrate an interdisciplinary scientific approach and adaptive principles regarding nutrient management.
机译:本文简要回顾了亚热带地区的养分变化(元素浓度和比例的变化)以及相关的水生生态系统响应。人类活动大大改变了向水生生态系统输送的养分通量和养分比例。气候扰动会影响水文状况,并增强营养矿物质的沉积和从土地到接收水的运输。土地利用和大坝的变化导致氮,磷和硅元素之间的平衡发生变化,从而增加了藻华的风险。由于发展迅速和人口众多,亚热带地区的养分变化及其生态影响可能比其他地区更大。水生生态系统以复杂和动态的方式对养分变化做出反应,导致富营养化,缺氧/缺氧,酸化以及浮游植物和微生物群落的变化。这项审查表明有害的藻华,水母藻和严重的病原体通常与养分变化有关。当前科学研究和管理面临的挑战包括以下事实:(1)人们对营养动力学和生态系统响应之间的联系了解甚少; (2)缺乏支持建模和管理的监视数据; (3)水生生态系统是针对特定地点和/或特定情况的,并且高度动态,给研究和管理带来了更大的复杂性; (4)传统管理中缺乏区域协调会造成跨界差距。为了应对这些当前的挑战,为有效的营养管理提出了一个综合管理框架。应制定机构安排,以协调多个政府机构和其他利益相关者,从流域到海岸。该框架应整合有关营养管理的跨学科科学方法和适应性原则。

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  • 来源
    《Current opinion in environmental sustainability》 |2012年第2期|p.233-242|共10页
  • 作者

    Nengwang Chen; Huasheng Hong;

  • 作者单位

    State Key Laboratory of Marine Environmental Science, Xiamen University, PR China,Coastal and Ocean Management Institute, Xiamen University, PR China;

    State Key Laboratory of Marine Environmental Science, Xiamen University, PR China,Coastal and Ocean Management Institute, Xiamen University, PR China;

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