Introduction: The long-term extensive development of resource-based cities makes them face problems such as resource exhaustion, industrial structure imbalance, ecological environment deterioration, which urgently need to carry out green transformation.
Methods: In this study, Entropy-CRITIC-TOPSIS model and coupling coordination degree model were constructed to estimate and analyze the coordinated development level of industrial structure upgrading and ecological environment of 19 resource-based cities in Northeast China from 2010 to 2021.
Results: The results showed that the coupling coordination situation between industrial structure rationalization and ecological environment in 19 resource-based cities were unsatisfactory, and the proportion of uncoordinated development between industrial structure rationalization and ecological environment was as high as 89.47%. In comparison, the coupling coordination situation between industrial structure advancement and ecological environment were relatively better, with all cities' industrial structure upgrading and ecological environment systems being basically coordinated or above.
Discussion: This suggests that resource-based cities in Northeast China should still focus on improving the rational allocation of resources, environmental protection, and coordinated development of resource utilization. The conclusion of this study provides a theoretical basis for the sustainable development of domestic resource-based cities, and can also be used as a reference for domestic and foreign resource-based cities or regions.
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http://dx.doi.org/10.3389/fpubh.2025.1527306 | DOI Listing |
Front Public Health
March 2025
Australian National University, Canberra, ACT, Australia.
Introduction: The long-term extensive development of resource-based cities makes them face problems such as resource exhaustion, industrial structure imbalance, ecological environment deterioration, which urgently need to carry out green transformation.
Methods: In this study, Entropy-CRITIC-TOPSIS model and coupling coordination degree model were constructed to estimate and analyze the coordinated development level of industrial structure upgrading and ecological environment of 19 resource-based cities in Northeast China from 2010 to 2021.
Results: The results showed that the coupling coordination situation between industrial structure rationalization and ecological environment in 19 resource-based cities were unsatisfactory, and the proportion of uncoordinated development between industrial structure rationalization and ecological environment was as high as 89.
Sci Rep
February 2025
Shanghai Power Equipment Research Institute Co., Ltd., Shanghai, 200240, China.
Resource-based cities (RBCs) have historically been constrained by their inherent characteristics, impeding rapid shifts in energy consumption patterns and exerting substantial pressure on regional decarbonization efforts. Herein, 18 RBCs in southwestern China were taken as the research object. Firstly, a resilience index system was constructed for the resource ecosystem and socio-economic system of RBCs, and the optimization mutation level algorithm was used to measure the resilience level of each city.
View Article and Find Full Text PDFEnviron Monit Assess
February 2025
School of Architecture and Design, China University of Mining and Technology, 221116, Xuzhou, China.
Coal resource-based cities were once pillars of significant economic and social development, but after resource exhaustion, these cities are at a critical crossroads and need to transition towards sustainable development and ecological urban renewal. The unique landscape patterns of these cities are associated with extensive coal mining, and their dynamic changes are intrinsically linked to habitat quality. However, this relationship has not been fully explored in existing research.
View Article and Find Full Text PDFJ Environ Manage
February 2025
School of Public Health, Shandong Second Medical University, Weifang, 261053, China. Electronic address:
The changes in ecosystems of resource-based cities are closely related to human activities and resource extraction. Understanding the temporal and spatial differentiation characteristics of ecosystems and identifying the main influencing factors on ecosystem services are crucial for optimizing the spatial security pattern of resource-based cities. Previous studies have seldom examined how different factors affect various levels of ecosystem service value (ESV) in segmented ways.
View Article and Find Full Text PDFHeliyon
January 2025
Xining Natural Resources Comprehensive Survey Center, China Geological Survey, Xining, 810000, China.
In response to the challenges of significant governance difficulties, low regulatory efficiency, and high enforcement difficulty in the ecological governance system of Qinghai Province, this study proposes an innovative solution aimed at remarkably enhancing the ecological governance system and capabilities nationwide. Through an in-depth analysis of the core advantages of blockchain technology (BT), this study customizes a set of blockchain-based ecological governance strategies for Qinghai Province, while also providing valuable references for the ecological governance of other resource-based cities. The innovation of this study lies in the application of BT to the field of ecological governance, particularly in the management of ecological environments in resource-based cities.
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