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Designing sustainable energy supply chains by the P-graph method for minimal cost, environmental burden, energy resources input

机译:通过P图方法设计可持续能源供应链,以最小化成本,环境负担和能源资源投入

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摘要

We present a,computer-aided methodology for designing sustainable supply chains using the P-graph framework to develop supply chain structures which are then analyzed using cost, the cost of producing electricity, and two sustainability metrics: the ecological footprint and the emergy input. These metrics respectively represent environmental burden in terms of land use and energy resources. The results are the continuation of a research effort between members of the Office of Research and Development (ORD) of the U.S. EPA and the University of Pannonia. In earlier work, the basis of the research, the integration of supply chain design and sustainability were presented. There, the P-graph framework provided a mathematically rigorous procedure for synthesizing optimal and alternative suboptimal networks subject to profitability and ecological footprint criteria. In this work the effort is extended with another sustainability metric, emergy. Emergy, a measure of the energy used up in transformations directly and indirectly to make a product or maintain a service, was assessed for each energy production supply chain. The proposed methodology demonstrates the optimal design of a supply chain which provides electric power and heat to an agricultural region with agricultural wastes that can potentially be recovered as renewable resources. The results of the study indicate that, compared to using electricity from the grid and/or natural gas, renewable energy resources can yield substantial cost reductions of up to 17%, as well as significant ecological footprint and emergy reductions. These results indicate that it is possible to design more sustainable supply chains that are also cost-effective. Published by Elsevier Ltd.
机译:我们提供了一种计算机辅助方法,用于使用P-graph框架设计可持续供应链,以开发供应链结构,然后使用成本,发电成本和两个可持续性指标进行分析:生态足迹和能值投入。这些指标分别代表了土地使用和能源方面的环境负担。结果是美国EPA研究与发展办公室(ORD)成员与Pannonia大学之间继续进行研究工作。在早期的工作中,提出了研究的基础,供应链设计与可持续性的整合。在那里,P-graph框架提供了数学上严格的程序,用于合成受获利能力和生态足迹标准约束的最优和替代次优网络。在这项工作中,我们的工作还扩展了另一个可持续性指标,即能值。对每个能源生产供应链都评估了能值,该能值是转化中直接或间接消耗的能量,用于生产产品或维持服务。拟议的方法论证了供应链的最佳设计,该供应链利用农业废料向农业地区提供电力和热能,这些废料有可能作为可再生资源回收。研究结果表明,与使用电网和/或天然气发电相比,可再生能源可以节省多达17%的成本,并且可以显着减少生态足迹和能源消耗。这些结果表明,可以设计出更具成本效益的更可持续的供应链。由Elsevier Ltd.发布

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