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食物网的热力学视角:量化基于碎屑的生态系统中的熵产生。

A thermodynamic perspective on food webs: quantifying entropy production within detrital-based ecosystems.

作者信息

Meysman Filip J R, Bruers Stijn

机构信息

Netherlands Institute of Ecology (NIOO-KNAW), Centre for Estuarine and Marine Ecology, Korringaweg 7, 4401 NT Yerseke, The Netherlands.

出版信息

J Theor Biol. 2007 Nov 7;249(1):124-39. doi: 10.1016/j.jtbi.2007.07.015. Epub 2007 Jul 20.

Abstract

Because ecosystems fit so nicely the framework of a "dissipative system", a better integration of thermodynamic and ecological perspectives could benefit the quantitative analysis of ecosystems. One obstacle is that traditional food web models are solely based upon the principles of mass and energy conservation, while the theory of non-equilibrium thermodynamics principally focuses on the concept of entropy. To properly cast classical food web models within a thermodynamic framework, one requires a proper quantification of the entropy production that accompanies resource processing of the food web. Here we present such a procedure, which emphasizes a rigorous definition of thermodynamic concepts (e.g. thermodynamic gradient, disequilibrium distance, entropy production, physical environment) and their correct translation into ecological terms. Our analysis provides a generic way to assess the thermodynamic operation of a food web: all information on resource processing is condensed into a single resource processing constant. By varying this constant, one can investigate the range of possible food web behavior within a given fixed physical environment. To illustrate the concepts and methods, we apply our analysis to a very simple example ecosystem: the detrital-based food web of marine sediments. We examine whether entropy production maximization has any ecological relevance in terms of food web functioning.

摘要

由于生态系统非常契合“耗散系统”的框架,因此更好地整合热力学和生态学观点可能有益于生态系统的定量分析。一个障碍是,传统的食物网模型仅基于质量和能量守恒原理,而非平衡热力学理论主要关注熵的概念。为了将经典食物网模型恰当地置于热力学框架内,需要对伴随食物网资源处理过程的熵产生进行恰当的量化。在此,我们提出这样一种程序,它强调对热力学概念(如热力学梯度、不平衡距离、熵产生、物理环境)进行严格定义,并将其正确转化为生态学术语。我们的分析提供了一种评估食物网热力学运行的通用方法:所有关于资源处理的信息都被浓缩为一个单一的资源处理常数。通过改变这个常数,可以研究在给定固定物理环境下食物网可能的行为范围。为了说明这些概念和方法,我们将分析应用于一个非常简单的示例生态系统:基于碎屑的海洋沉积物食物网。我们研究熵产生最大化在食物网功能方面是否具有任何生态相关性。

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