Centre for Environment and Sustainability, University of Surrey , Guildford GU2 7XH, United Kingdom.
Department of Chemical Engineering, University of Bath , Bath BA2 7AY, United Kingdom.
Environ Sci Technol. 2017 Aug 1;51(15):8643-8653. doi: 10.1021/acs.est.7b00867. Epub 2017 Jul 17.
Society currently relies heavily on centralized production and large scale distribution infrastructures to meet growing demands for goods and services, which causes socioeconomic and environmental issues, particularly unsustainable resource supply. Considering local production systems as a more sustainable alternative, this paper presents an insight-based approach to the integrated design of local systems providing food, energy, and water to meet local demands. The approach offers a new hierarchical and iterative decision and analysis procedure incorporating design principles and ability to examine design decisions, in both synthesis of individual yet interconnected subsystems and integrated design of resource reuse across the entire system. The approach was applied to a case study on design of food-energy-water system for a locale in the U.K.; resulting in a design which significantly reduced resource consumption compared to importing goods from centralized production. The design process produced insights into the impact of one decision on other parts of the problem, either within or across different subsystems. The result was also compared to the mathematical programming approach for whole system optimization from previous work. It was demonstrated that the new approach could produce a comparable design while offering more valuable insights for decision makers.
社会目前严重依赖集中式生产和大规模分配基础设施来满足不断增长的商品和服务需求,这导致了社会经济和环境问题,特别是不可持续的资源供应。考虑到本地生产系统是一种更可持续的选择,本文提出了一种基于洞察力的方法,用于综合设计提供食物、能源和水以满足本地需求的本地系统。该方法提供了一种新的分层和迭代决策和分析程序,结合了设计原则和检查设计决策的能力,包括综合单个但相互关联的子系统的设计和整个系统中资源再利用的综合设计。该方法应用于英国一个地方的食品-能源-水系统设计的案例研究;与从集中生产进口商品相比,该设计显著减少了资源消耗。设计过程深入了解了一个决策对问题的其他部分的影响,无论是在不同的子系统内部还是跨子系统。结果还与之前工作中针对整个系统优化的数学规划方法进行了比较。结果表明,新方法可以产生可比的设计,同时为决策者提供更有价值的见解。
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