The economic and carbon emission benefits of container farms under different photovoltaic storage configurations

IF 4.4 2区 工程技术 Q2 ENERGY & FUELS
Yuduo Guo , Dong Liu , Lirui Wu , Xiaoran Zheng , Chuang Meng , Junwei Zhang , Pinzhen Chen
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引用次数: 0

Abstract

With climate change and the urbanised population increasing, people choose to use Container Farms (CFs) to secure a stable supply of vegetables in the city, while maintaining the man-made environment implies a large amount of energy consumption and carbon emission. Therefore, this study is the first to conduct a life cycle assessment (LCA) of CFs to establish a carbon footprint model. Considering the energy supply side and innovating since the existing research, an optimization model for optical storage operation strategy applicable to CFs is innovatively proposed with the goal of carbon reduction and economy, and the commonly used algorithms are analysed to give a suitable choice. Finally, calculations are performed for cities in six ASHRAE climate zones to verify the feasibility of the algorithm. It is found that CFs in six geographic locations emit 470.57 t–974.64 t of carbon over a 25-year service life, of which the operation phase accounts for about 98 %. Meanwhile, the addition of a photovoltaic storage system can reduce carbon emissions by 12–40 %. In terms of economics, Beijing has the highest Net present value (NPV) (¥42,154.99) and the shortest payback period PP, which is about 3.5 years on average, and other cities can achieve no loss in the use cycle. This study quantifies the carbon emissions from CFs and provides a solution for the sustainable development of urban agriculture, as well as a guide for its green energy use.
不同光伏储能配置下集装箱农场的经济效益和碳排放效益
随着气候变化和城市化人口的增加,人们选择使用集装箱农场(CFs)来确保城市蔬菜的稳定供应,同时维持人造环境意味着大量的能源消耗和碳排放。因此,本研究首次对cf进行生命周期评估(LCA),建立碳足迹模型。从能源供给侧出发,在已有研究的基础上进行创新,以碳减排和经济为目标,创新性地提出了一种适用于光存储运行策略的优化模型,并对常用算法进行了分析,给出了合适的选择。最后,对六个ASHRAE气候区的城市进行了计算,验证了算法的可行性。研究发现,6个地理位置的cf在25年的使用寿命内排放了470.57 t - 974.64 t的碳,其中运行阶段约占98%。同时,增加一个光伏存储系统可以减少12 - 40%的碳排放。在经济性方面,北京的净现值(NPV)最高,为42,154.99元,投资回收期PP最短,平均约为3.5年,其他城市在使用周期内可以实现无损失。本研究量化了cf的碳排放,为城市农业的可持续发展提供了解决方案,并为城市农业的绿色能源利用提供了指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Energy for Sustainable Development
Energy for Sustainable Development ENERGY & FUELS-ENERGY & FUELS
CiteScore
8.10
自引率
9.10%
发文量
187
审稿时长
6-12 weeks
期刊介绍: Published on behalf of the International Energy Initiative, Energy for Sustainable Development is the journal for decision makers, managers, consultants, policy makers, planners and researchers in both government and non-government organizations. It publishes original research and reviews about energy in developing countries, sustainable development, energy resources, technologies, policies and interactions.
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