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首页> 外文期刊>International journal of applied mechanics >Identifying Ecosystem Key Factors to Support Sustainable Water Management
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Identifying Ecosystem Key Factors to Support Sustainable Water Management

机译:识别生态系统关键因素,以支持可持续水管理

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There is a growing consensus that sustainable development requires a behavioral change, forced by firm decision-making. However, existing decision-supporting tools are unlikely to provide relevant information, hampered by the complexity of combined socio-economic and natural systems Protecting the intrinsic value of ecosystems and providing sufficient natural resources for human use at the same time leads up to a wide span of management, ranging from species traits to governance. The aim of this study is to investigate the interactions between the natural and economic systems from the perspective of sustainable development. The way to reduce systems complexity by selecting key factors of ecosystem functioning for policy and management purposes is discussed. To achieve this, the Pentatope Model is used as a holistic framework, an ecosystem nodes network is developed to select key factors, and a combined natural and socio-economic valuation scheme is drawn. These key factors abiotic resources and conditions, biodiversity, and biomass are considered fundamental to the ecosystem properties habitat range and carrying capacity. Their characteristics are discussed in relation to sustainable water management. The conclusion is that sustainable development requires environmental decision-making that includes the intrinsic natural value, and should be supported by ecological modelling, additional environmental quality standards, and substance balances.
机译:可持续发展需要越来越多的共识,需要采取行动变革,由坚定的决策。然而,现有的决策工具不太可能提供相关信息,受到保护社会经济和自然系统的复杂性,保护生态系统的内在价值,并同时为人类使用提供足够的自然资源,导致广泛的跨度管理,从物种特征到治理。本研究的目的是从可持续发展的角度调查自然和经济系统之间的相互作用。讨论了通过选择对政策和管理目的的生态系统功能的关键因素来降低系统复杂性的方法。为了实现这一目标,Pentatope模型用作整体框架,开发了一种生态系统节点网络以选择关键因素,并绘制了一种自然和社会经济估值方案。这些关键因素非生物资源和条件,生物多样性和生物量被认为是生态系统物业栖息地范围和承载能力的基础。它们的特征是关于可持续水管理的讨论。结论是可持续发展需要环境决策,包括内在自然价值,并应得到生态建模,额外的环境质量标准和物质余额的支持。

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