Xu Hao, Fu Guangtao, Ye Qian, Lyu Mei, Yan Xiaoyu
Environment and Sustainability Institute, Faculty of Environment, Science and Economy, University of Exeter, Penryn Campus, Penryn TR10 9FE, UK; Renewable Energy Group, Engineering Department, Faculty of Environment, Science and Economy, University of Exeter, Penryn Campus, Penryn TR10 9FE, UK.
Centre for Water Systems, Faculty of Environment, Science and Economy, University of Exeter, Exeter EX4 4QF, UK.
Water Res. 2024 Nov 15;266:122350. doi: 10.1016/j.watres.2024.122350. Epub 2024 Aug 28.
Urban water systems in China are facing multiple challenges, including rapid urbanisation, climate change and infrastructure ageing. It is crucial to evaluate their environmental performance from a holistic perspective in planning and management processes. To the best of our knowledge, there is a lack of nationwide life cycle assessment (LCA) studies on China's urban water systems that cover all system stages. Therefore, this study aims to present a comprehensive and nationwide LCA analysis that pinpoints the environmental hotspots and their major sources across China. This study was conducted based on water utility databases at the province level, covering water abstraction and treatment, waterwork sludge treatment, water distribution, sewage collection, stormwater drainage, wastewater treatment and sewage sludge treatment. Nine environmental impact categories were calculated and analysed. The results reveal the inequity of environmental impacts across provinces, with overall impacts geographically higher in the east and south, lower in the west and north. However, at the functional unit level, the impacts in the northern and northeastern provinces are higher than other regions. Most environmental categories are dominated by multiple water system stages. The analyses of underlying drivers found that purchased electricity is the primary source of several environmental impacts. This study provides a holistic understanding of the environmental performance of China's urban water systems, offers some insights for comprehensive decision-making support on sustainable water system management, and can also serve as a benchmark for future scenario analysis to explore options for reducing environmental impact.
中国的城市供水系统面临着多重挑战,包括快速城市化、气候变化和基础设施老化。在规划和管理过程中,从整体角度评估其环境绩效至关重要。据我们所知,目前缺乏对中国城市供水系统涵盖所有系统阶段的全国性生命周期评估(LCA)研究。因此,本研究旨在进行全面的全国性LCA分析,找出中国各地的环境热点及其主要来源。本研究基于省级水务数据库开展,涵盖取水与处理、水厂污泥处理、供水、污水收集、雨水排水、污水处理及污泥处理。计算并分析了九个环境影响类别。结果揭示了各省环境影响的不均衡性,总体影响在地理上东部和南部较高,西部和北部较低。然而,在功能单元层面,北部和东北部省份的影响高于其他地区。大多数环境类别由多个供水系统阶段主导。对潜在驱动因素的分析发现,外购电力是若干环境影响的主要来源。本研究全面了解了中国城市供水系统的环境绩效,为可持续供水系统管理的综合决策支持提供了一些见解,也可作为未来情景分析的基准,以探索减少环境影响的方案。