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首页> 外文期刊>Estuaries and Coasts >Modeling Trophic Structure and Energy Flows in a Coastal Artificial Ecosystem Using Mass-Balance Ecopath Model
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Modeling Trophic Structure and Energy Flows in a Coastal Artificial Ecosystem Using Mass-Balance Ecopath Model

机译:使用质量平衡生态路径模型对沿海人工生态系统的营养结构和能量流建模

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摘要

Using a large-scale enclosed sea area in northern Hangzhou Bay as a case study, the trophic interactions, energy flows, and ecosystem properties of a coastal artificial ecosystem were analyzed by ecotrophic modeling using Ecopath with Ecosim software (EwE, 5.1 version). The model consists of 13 functional groups: piscivorous fish, benthic-feeding fish, zooplanktivorous fish, herbivorous fish, crabs, shrimp, mollusca, infauna, carnivorous zooplankton, herbivorous zooplankton, macrophytes, phytoplankton, and detritus. Input information for the model was gathered from published and unpublished reports and from our own estimates during the period 2006–2007. Results show that the food web in the enclosed sea area was dominated by a detritus pathway. The trophic levels of the groups varied from 1.00 for primary producers and detritus to 3.90 for piscivorous fish in the coastal artificial system. Using network analysis, the system network was mapped into a linear food chain, and five discrete trophic levels were found with a mean transfer efficiency of 9.8% from detritus and 9.4% from primary producer within the ecosystem. The geometric mean of the trophic transfer efficiencies was 9.6%. Detritus contributed 57% of the total energy flux, and the other 43% came from primary producers. The ecosystem maturity indices—total primary production/total respiration, Finn’s cycling index, and ascendancy—were 2.56, 25.0%, and 31.0%, respectively, showing that the coastal artificial system is at developmental stage according to Odum’s theory of ecosystem development. Generally, this is the first trophic model of a large-scale artificial sea enclosure in China and provides some useful insights into the structure and functioning of the system.
机译:以杭州湾北部的一个大型封闭海域为例,使用Ecosim软件(EwE,5.1版),通过生态营养建模,分析了沿海人工生态系统的营养相互作用,能流和生态系统特性。该模型由13个功能组组成:食鱼,底栖摄食鱼,浮游动物,食草鱼,螃蟹,虾,软体动物,动物,食肉浮游动物,食草浮游动物,大型植物,浮游植物和碎屑。该模型的输入信息来自已发布和未发布的报告以及我们自己在2006-2007年期间的估计。结果表明,封闭海域的食物网主要是碎屑途径。在沿海人工系统中,这些组的营养水平从主要生产者和碎屑的1.00到食鱼的3.90不等。使用网络分析,将系统网络映射到线性食物链,发现五个离散的营养水平,其生态系统中碎屑的平均转移效率为9.8%,初级生产者的平均转移效率为9.4%。营养传递效率的几何平均值为9.6%。碎屑占总能量通量的57%,其他43%来自初级生产者。生态系统成熟度指数(总初级生产力/总呼吸量,芬兰循环指数和上升率)分别为2.56、25.0%和31.0%,表明根据Odum的生态系统发展理论,沿海人工系统处于发育阶段。通常,这是中国第一个大型人工海域的营养模型,并为系统的结构和功能提供了一些有用的见识。

著录项

  • 来源
    《Estuaries and Coasts》 |2011年第2期|p.351-363|共13页
  • 作者单位

    School of Environmental Science and Engineering, Sun Yat-sen University, No. 135 Xingang West Road, Guangzhou, 510275, China;

    Key Laboratory of Mariculture, Ecology and Quality Control, Ministry of Agriculture, South China Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Guangzhou, 510300, China;

    School of Environmental Science and Engineering, Sun Yat-sen University, No. 135 Xingang West Road, Guangzhou, 510275, China;

    College of Fisheries and Life Science, Shanghai Ocean University, Shanghai, 201306, China;

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

    Ecopath model; Trophic structure; Energy transfer; Trophic level; Detrital flows; Artificial ecosystem;

    机译:生态路径模型营养结构能量传递营养水平碎屑流人为生态系统;

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