Water-Energy-Carbon Nexus Within the Urban Eco-Transformation of the Beijing-Tianjin-Hebei Region

IF 2.3 4区 计算机科学 Q2 COMPUTER SCIENCE, ARTIFICIAL INTELLIGENCE
Expert Systems Pub Date : 2025-02-23 DOI:10.1111/exsy.70015
Yifei Wang, Ze Han, Xiangzheng Deng
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引用次数: 0

Abstract

Driven by rapid urbanisation, the Beijing-Tianjin-Hebei region (BTH) has experienced a dramatic increase in resource consumption and environmental strain. Investigating the relationships among water, energy and carbon can help balance efficient resource utilisation, environmental conservation and economic growth, while promoting sustainable urban development. This study develops an analytical framework for the water-energy-carbon nexus within the urban eco-transformation. Specifically, this study first illustrates the conceptual model for the interaction among water use, energy consumption and carbon emissions theoretically, then examines the water-energy-carbon dynamics in urbanisation and ecological transition of the BTH region. Furthermore, an empirical analysis was conducted taking Beijing city as the case study area to explore the water-energy-carbon nexus and its decoupling with socio-economic development. Results show rapid urbanisation has significantly increased population and economic scale, exerting substantial pressure on water resources, energy supply and the environment. The study reveals a significant positive interaction between water consumption, electricity consumption and carbon emissions in Beijing, with an inverted U-shaped parabolic relationship between GDP and population. Beijing is expected to decouple economic growth from carbon emissions after 2030 and from water consumption after 2037, reducing resource consumption and carbon emissions while sustaining economic growth. To achieve sustainable development, it is recommended that the Beijing-Tianjin-Hebei region accelerate industrial transformation, enhance water resource efficiency, develop clean energy and improve power system efficiency. This paper provides a theoretical foundation and practical insights for decision-making and facilitates ecological urbanisation in the Beijing-Tianjin-Hebei region.

京津冀地区城市生态转型中的水-能-碳关系
在快速城市化的推动下,京津冀地区的资源消耗和环境压力急剧增加。研究水、能源和碳之间的关系有助于平衡有效的资源利用、环境保护和经济增长,同时促进城市的可持续发展。本研究建立了城市生态转型中水-能-碳关系的分析框架。具体而言,本研究首先从理论上阐述了水资源利用、能源消耗和碳排放相互作用的概念模型,然后考察了北京城市城市化和生态转型中的水-能-碳动态。并以北京市为例进行实证分析,探讨水-能-碳关系及其与社会经济发展的脱钩关系。结果表明,快速城市化导致人口和经济规模显著增加,对水资源、能源供应和环境造成了巨大压力。研究发现,北京市用水量、用电量与碳排放之间存在显著的正交互作用,GDP与人口之间呈倒u型抛物线关系。北京有望在2030年后实现经济增长与碳排放的脱钩,在2037年后实现经济增长与水消耗的脱钩,在保持经济增长的同时减少资源消耗和碳排放。为实现可持续发展,建议京津冀地区加快产业转型,提高水资源利用效率,发展清洁能源,提高电力系统效率。本文为京津冀地区生态城市化的决策提供了理论基础和实践见解。
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
Expert Systems
Expert Systems 工程技术-计算机:理论方法
CiteScore
7.40
自引率
6.10%
发文量
266
审稿时长
24 months
期刊介绍: Expert Systems: The Journal of Knowledge Engineering publishes papers dealing with all aspects of knowledge engineering, including individual methods and techniques in knowledge acquisition and representation, and their application in the construction of systems – including expert systems – based thereon. Detailed scientific evaluation is an essential part of any paper. As well as traditional application areas, such as Software and Requirements Engineering, Human-Computer Interaction, and Artificial Intelligence, we are aiming at the new and growing markets for these technologies, such as Business, Economy, Market Research, and Medical and Health Care. The shift towards this new focus will be marked by a series of special issues covering hot and emergent topics.
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