RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2022, Vol. 31 >> Issue (9): 1873-1883.doi: 10.11870/cjlyzyyhj202209001

    Next Articles

Study on Spatial Coupling Characteristics of Regional Development and Resource-Environment Carrying Capacity and Path of High-Quality Development in Yangtze River Economic Belt

MA Zhi-yuan1,2,DUAN Xue-jun1,2,WANG Lei1,2,WANG Ya-zhu1,2   

  1. (1.Nanjing Institute of Geography and Limnology,Chinese Academy of Sciences,Nanjing 210008,China;2.Key Laboratory of Watershed Geographic Sciences,Chinese Academy of Sciences,Nanjing 210008,China)
  • Online:2022-09-20 Published:2022-09-29

Abstract: High-quality development is a strategic initiative and basic path to solve the contradictory problems of regional development and resource-environment carrying capacity. Reconstructing the index system of regional development and resource-environment carrying capacity, with the help of coupled and coordinated development type analysis framework, using CRITIC-EWM combination weighting method, coupled and coordinated degree model, MCO and other methods, coupled and coordinated degree model, Markov chain and other methods, we analyzed the spatial and temporal patterns, simultaneous development, coupled and coordinated characteristics and development types of regional development and resource-environment carrying capacity of Yangtze River Economic Belt from 2010 to 2018. The results show that: (1) Regional development and resource-environment carrying capacity are mainly driven by sharing and resource-environment governance capabilities; the spatial match between them is high, with “double synchronization” and “lagging carrying capacity” types predominating in the downstream, and “lagging development” and “double lagging” types in the middle and upper reaches, respectively. (2) The degree of coupling coordination is rising at a low level, with spatial diffusion and concentration in upstream and downstream, and in midstream and upstream respectively; the grade evolution shows stable characteristics, and it is difficult to achieve leapfrog transfer, with active grade transformation in downstream and midstream cities, and the phenomenon of “club convergence” in upstream cities. (3) Based on the analytical framework, cities in the Yangtze River Economic Belt are classified into 20 types of coupled and coordinated development in terms of dynamic factors, relative and absolute development levels. It is suggested that in the future, effectiveness, innovativeness, and resource-environment utilization efficiency are important grips to adopt regulatory instruments and policies to help promote high-quality development according to local conditions.

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] LIU Gang, , LIU Kunlin, WANG Weiqian, ZHAO Shuang. Analysis of Immigrants’ Satisfaction Degree in Water Quality#br# —— Empirical Research of Ordinal Logistic Regression[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1355 .
[2] KONG Feng, , SUN Shao, WANG Yifei, LU Lili, . Temporal and Spatial Variation Pattern of Waterlogging Events in Eastern China in Recent 56 Years[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1405 .
[3] MA Hai-liang, JIANG Ming-dong, HOU Ya-ru. Spatial Distribution and Influencing Factors of Traditional Villages:A Case of Wuyue Culture Region[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(08): 1693 .
[4] SUN Sirui, XIE Ping, , CHEN Kebing, SANG Yanfang, DONG Qianjin, NING Maijin, ZHOU Hui. Impact of Different Refill Operation Rules of the Three Gorges Reservoir on the Water Level of the Outlet of Dongting Lake[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(08): 1819 .
[5] . [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, , (): 0 .
[6] ZHU Hong-bo, WU Xi, YUAN Yuan. The Calculation of Population Carrying Capacity Based on Land Natural and Economic Dual Attributes of Western Region in China[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(12): 2684 -2696 .
[7] HU Nai-juan, SHI Hang, ZHU Li-qun, . Effects of Different Straw Returning Modes on Carbon Footprint in a Rice-Wheat Rotation System[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(12): 2775 -2783 .
[8] BAN Xuan, ZHU Bi-ying, SHU Peng, DU Hong, LV Xiao-rong. Trend and Driving Force of Climate and Hydrological Process in Hanjiang Basin[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(12): 2817 -2829 .
[9] WEN Gao-hui, YANG Gang-qiao. Impact of Cultivated Land Fragmentation on Farmers’ Willingness to Land Ownership Adjustment in Rural Land Consolidation[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(03): 623 -631 .
[10] GAO Yan-li, DONG Jie, LI Lu, LI Hong-bo. Study on the Effectiveness and Mechanism of Carbon Emission Right Trading Policy: Based on the Perspective of Inter-Provincial Difference in the Construction Land Carbon Emission Intensity[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 0, (): 783 -793 .