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A thermodynamic methodology to assess how different cultivation methods affect sustainability of agricultural systems

机译:评估不同耕作方式如何影响农业系统可持续性的热力学方法

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To evaluate environmental sustainability of complex systems, such as agricultural cultivation, it is necessary to adopt a systemic approach that considers all mass and energy flows that drive processes and that interlace, amplify, and influence each other. Emergy analysis, a thermodynamic-ecological methodology developed by Odum (1988), produces powerful indicators to evaluate process efficiency and to assess long-term sustainability. We performed a comparison among three cherry crops with different cultivation methods (traditional, biological and integrated) employing different inputs (natural and non-natural), in order to understand how agricultural systems should be developed in order to be economically successful with respect to the environment. Traditional methods using high quantities of non-natural inputs demonstrated unsustainability, while the integrated method of natural and purchased inputs turned out to be the best. The emergy approach demonstrated a powerful methodology to assess sustainability, and the indications obtained for cherry crops could be extrapolated to other types of cultivation. [References: 17]
机译:为了评估复杂系统(例如农业种植)的环境可持续性,有必要采用一种系统的方法,该方法应考虑驱动过程的所有质量和能量流,并相互交织,放大并相互影响。能值分析是由Odum(1988)开发的一种热力学生态方法,它产生了强有力的指标来评估过程效率和评估长期可持续性。我们对三种樱桃作物进行了比较,这些樱桃作物采用不同的种植方法(传统的,生物的和综合的),采用了不同的投入(自然和非自然),以了解如何发展农业系统,从而在经济上取得成功。环境。使用大量非自然输入的传统方法显示出不可持续性,而自然输入和购买输入的集成方法被证明是最好的。能值方法证明了评估可持续性的有效方法,并且樱桃作物获得的适应症可以推断为其他类型的种植。 [参考:17]

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