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The maximum empower principle: An invisible hand controlling the self-organizing development of forest plantations in south China

机译:最大授权原则:控制中国南方森林人工林自组织发展的无形之手

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摘要

Derived from the maximum power principle (MPP), the maximum empower principle (MePP) is considered as the foundation of emergy theory and evaluation methods. However, it has often encountered some doubts since proposed, because of lacking sufficient empirical evidence. To test the validity of the MePP in the self-organization of forest ecosystems, this paper applied a process-based ecosystem model (Biome-BGC) to simulate the dynamics of biomass, litter and soil organic matter (SOM) of three forest plantations in south China during 1985-2007, and attempted to replicate their self-organizing processes. The simulated results and input flows were transformed to emergy as a common basis and, from the viewpoint of emergy synthesis, the dynamics of the production efficiency and empower of the three forest ecosystems were revealed along with their self-organizing developments over time. The results showed that three forest plantations had similar dynamic change patterns of emergy efficiency and empower, but the production efficiencies of them were not always consistent with their empower performances. The production efficiency firstly increased rapidly to maximums, and then decreased to optimal moderate values. However, the empower came to the maximums after the efficiency peaked and then fluctuated up and down, dependent on weather. These results implied that, a forest ecosystem in its self-organizing process tends toward maximum empower at optimal efficiency. Behind the maximum empower of the forest ecosystem is the desynchrony development of different components, e.g., biomass, litter and SOM; leaf, stem and root; biomass and biodiversity. As a whole, the MePP functions like an invisible hand controlling the general self-organizing development of forest ecosystems and pointing out the direction of their development.
机译:源自最大功率原理(MPP)的最大授权原理(MePP)被认为是能值理论和评估方法的基础。然而,由于缺乏足够的经验证据,自提出以来,它经常遇到一些疑问。为了测试MePP在森林生态系统自组织中的有效性,本文应用了基于过程的生态系统模型(Biome-BGC),模拟了三个人工林的生物量,凋落物和土壤有机质(SOM)的动态。 1985-2007年在中国南方,并试图复制其自组织过程。模拟结果和输入流被转换成能值作为通用基础,并且从能值合成的观点出发,揭示了三个森林生态系统的生产效率和授权动态以及它们随时间的自组织发展。结果表明,三个人工林的能效和授权动态变化模式相似,但它们的生产效率并不总是与其授权绩效保持一致。生产效率首先迅速提高到最大值,然后下降到最佳中等值。但是,在效率达到顶峰然后随天气变化上下波动之后,授权才发挥了最大作用。这些结果表明,森林生态系统在其自组织过程中倾向于以最佳效率获得最大的授权。森林生态系统最大能力的背后是不同组成部分(例如生物量,凋落物和SOM)的不同步发展;叶,茎和根;生物量和生物多样性。总体而言,MePP的作用就像一只看不见的手,控制着森林生态系统的总体自组织发展并指出了森林发展的方向。

著录项

  • 来源
    《Ecological indicators 》 |2013年第6期| 278-292| 共15页
  • 作者单位

    Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China, Key Laboratory of Urban Habitat Environmental Science and Technology, School of Environment and Energy, Peking University, Shenzhen 518055, China;

    Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China;

    Department of Environmental Science and Technology, University of Maryland, College Park, MD 20742, United States;

    Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China;

    Key Laboratory of Vegetation Restoration and Management of Degraded Ecosystems, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China;

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

    maximum empower principle; forest plantations; ecosystem process model; emergy synthesis;

    机译:最大授权原则;人工林;生态系统过程模型;能值综合;

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