主管单位:中国科学技术协会
主办单位:中国地理学会
承办单位:华东师范大学

世界地理研究 ›› 2026, Vol. 35 ›› Issue (6): 103-121.DOI: 10.3969/j.issn.1004-9479.2026.06.20250481

• 专栏:可持续转型地理的全球经验与中国实践 • 上一篇    

中国资源型城市碳排放的时空演变与影响因素——基于能源消费视角

段冶1(), 刘阳1, 李迪1, 韩增林2()   

  1. 1.辽宁师范大学,地理科学学院,大连 116029
    2.辽宁师范大学,海洋可持续发展研究院,大连 116029
  • 收稿日期:2025-04-21 修回日期:2025-12-16 出版日期:2026-06-15 发布日期:2026-06-26
  • 通讯作者: 韩增林
  • 作者简介:段冶(1989—),男,副教授,硕导,博士,研究方向:能源地理、能源与碳排放,E-mail:dydl@lnnu.edu.cn
  • 基金资助:
    国家自然科学基金项目(41976206);辽宁省教育厅项目(JYTMS20231064);辽宁省科技计划联合计划项目(辽宁省自然科学基金项目)(2025-MSLH-425)

The spatio-temporal evolution and influencing factors of carbon emissions in China's resource-based cities: A perspective of energy consumption

Ye DUAN1(), Yang LIU1, Di LI1, Zenglin HAN2()   

  1. 1.School of Geographic Sciences, Liaoning Normal University, Dalian 116029, China
    2.Institute of Marine Sustainable Development, Liaoning Normal University, Dalian 116029, China
  • Received:2025-04-21 Revised:2025-12-16 Online:2026-06-15 Published:2026-06-26
  • Contact: Zenglin HAN

摘要:

研究基于地级市层面的能源、环境、社会及经济数据,核算出118个资源型城市2006—2021年的工业碳排放,并构建能源消费结构的绿色质量指标(GREENQ),结合双变量空间自相关分析等方法和门槛-STIRPAT模型等工具,系统揭示了时序上能源绿色转型与碳排放之间的空间交互和耦合特征,并深入探究能源绿色转型对资源型城市碳排放的影响机制。研究发现:①中国资源型城市工业碳排放整体上呈现出“北高南低、东部高中西部增长”的空间格局,随时间推移,工业碳排放总量呈现出显著的空间集聚特征。绿色质量指标的空间分异与碳排放关联特征明显,呈现多极化集聚态势。②能源绿色转型作为门槛变量,对碳排放呈现出明显的单一门槛效应,门槛值为0.426 7,且具有阶段性影响特征,绿色质量指标与碳排放呈显著负相关。③在不同生命周期的资源型城市中,绿色质量指标在不同水平阶段、时间演变维度、经济分区以及工业基础类别等多个维度呈现显著异质性,工业碳排放的影响机制随之呈现明显异质性特征。最后从优化调整能源消费结构、加强创新要素集聚、提高能源效率等方面提出对策建议。

关键词: 碳排放, 能源绿色转型, 时空演变, 门槛-STIRPAT模型, 资源型城市

Abstract:

This study uses prefecture-level data on energy, environment, society, and the economy to calculate industrial carbon emissions in 118 resource cities from 2006 to 2021. It constructs a green quality indicator (GREENQ) for the energy consumption structure. The study combines bivariate spatial autocorrelation analysis and the STIRPAT-threshold effect model to reveal the spatial interaction and coupling characteristics between energy green transition and carbon emissions in a time series, and to explore the influence mechanism of energy green transition on carbon emissions in resource cities. The study found that:①The overall industrial carbon emissions in China's resource-based cities exhibit a spatial pattern of "higher in the north and lower in the south, and higher in the east, while the central and western regions show a growing trend. Over time, the total industrial carbon emissions show a significant spatial clustering characteristic. The spatial differentiation of green quality indicators is closely related to carbon emissions, presenting a multi-polarized clustering feature.②As a threshold variable (GREENQ), the energy green transition shows a significant single threshold effect on carbon emissions, with a threshold value of 0.426 7. The phased impact is significant, and the green quality indicators are significantly negatively correlated with carbon emissions.③Different resource-based cities at different life cycles show significant heterogeneity in multiple dimensions, such as different levels of green quality indicators, time evolution dimensions, economic divisions, and industrial base categories. The impact mechanism of industrial carbon emissions also presents obvious heterogeneity characteristics. Finally, countermeasures and suggestions are proposed from various aspects, including adjusting the energy consumption structure, strengthening the concentration of innovative elements, and enhancing energy efficiency.

Key words: carbonemissions, energy green transition, spatial-temporal evolution, STIRPAT-threshold effect model, resource-based cities