The Efficiency of Urban–Rural Integration in the Yangtze River Economic Belt and Its Optimization
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Area
2.2. Materials
2.3. Methods
2.3.1. Evaluation of URID Efficiency
- Efficiency measurement index system
- 2.
- The EBM superefficiency model
2.3.2. Evaluation of the URID Level
- Level measurement index system
- 2.
- Vertical and horizontal scatter degree method
2.3.3. Evaluation of the URID Level
3. Results
3.1. General Change Characteristics in the Efficiency of URID
3.2. Evolution of the Spatiotemporal Pattern of URID Efficiency at the City Level
4. Discussion
4.1. Analysis of the Changing Law of URID Efficiency
4.1.1. Analysis of the Overall Laws of Change for URID Efficiency
4.1.2. Analysis of the Change Pattern of URID Efficiency at the City Cluster Level
4.2. Correlation between Carbon Emissions and URID Efficiency
4.3. Improvement of URID Efficiency
4.3.1. Input–Output Analysis of URID Efficiency
4.3.2. URID Efficiency Input–Output Path Optimization
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Index Attribute | Index Selection | ID |
---|---|---|
Input indicators | Education (100 million yuan) | Ip1 |
Science and technology (100 million yuan) | Ip2 | |
Culture, sports, and media (100 million yuan) | Ip3 | |
Social security and employment (100 million yuan) | Ip4 | |
Hygiene and health (100 million yuan) | Ip5 | |
Energy conservation and environmental protection (100 million yuan) | Ip6 | |
Urban and rural communities (100 million yuan) | Ip7 | |
Agriculture, forest, and water (100 million yuan) | Ip8 | |
Public transportation (100 million yuan) | Ip9 | |
Business services (100 million yuan) | Ip10 | |
Expenditure on housing security (100 million yuan) | Ip11 | |
Output indicators | The level of integrated urban and rural development | Op1 |
Carbon emission efficiency (ton/10,000) | Op2 | |
Carbon emissions (10,000 tons) | Op3 |
Dimensionality | Indicator Name | Indicator Calculation and Description | Attribute | Category |
---|---|---|---|---|
Economic integration | Per capita GDP | GDP/regional resident population (yuan) | + | Comprehensive |
Disposable income ratio of urban and rural residents | Per capita disposable income of urban residents/per capita disposable income of rural residents (%) | Comparison | ||
Per capita consumption ratio of urban and rural households | Per capita consumption expenditure of urban residents/per capita consumption expenditure of rural residents (%) | Comparison | ||
Engel’s coefficient ratio between urban and rural areas | Urban Engel’s coefficient/rural Engel’s coefficient (%) | + | Comparison | |
Binary contrast coefficient | (Output value of primary industry/employees of primary industry)/(output value of secondary and tertiary industries/employees of secondary and tertiary industries) (%) | + | Comparison | |
Social integration | Urban and rural cultural, educational and entertainment comparison coefficient | Per capita expenditure on cultural, educational and recreational services for urban residents/per capita expenditure on cultural, educational and recreational services for rural residents (%) | Comparison | |
Teacher–student ratio in basic education | Number of elementary education teachers/number of elementary education students (%) | + | Comprehensive | |
Contrast coefficient of medical care per capita between urban and rural areas | Per capita health care expenditure of urban residents/per capita health care expenditure of rural residents (%) | Comparison | ||
Urban and rural unemployment insurance coverage | Number of urban and rural residents covered by unemployment insurance/number of permanent residents (%) | + | Comprehensive | |
Population integration | Urban and rural population contrast coefficient | Urban population/rural population (%) | + | Comparison |
The ratio of nonagricultural employment to agricultural employment | Number of employees in the secondary and tertiary industries/number of employees in the primary industry/(%) | + | Comparison | |
Population urbanization level | Total urban population/total population (%) | + | Comprehensive | |
Ecological integration | Vegetation index | Urban and rural NDVA (normalized difference vegetation index) | + | Comprehensive |
Urban and rural sewage treatment | Centralized treatment rate of sewage treatment plant (%) | + | Comprehensive | |
Urban and rural domestic waste treatment | Harmless treatment rate of domestic waste (%) | + | Comprehensive | |
Space integration | Road network density | Highway operating mileage/total land area (km/km2) | + | Comprehensive |
Urban and rural internet user rate | Number of internet users in urban and rural areas/total number of households at the end of the year (%) | + | Comprehensive |
City | Input Redundancy Rate | Underproduction (Redundancy) Rate | ||||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Ip1 | Ip2 | Ip3 | Ip4 | Ip5 | Ip6 | Ip7 | Ip8 | Ip9 | Ip10 | Ip11 | Op1 | Op2 | Op3 | |
CYUA | −0.69 | −0.54 | −0.79 | −0.71 | −0.74 | −0.80 | −0.78 | −0.70 | −0.66 | −0.63 | −0.85 | 0.54 | 1.42 | −0.62 |
MRYRUA | −0.57 | −0.58 | −0.59 | −0.59 | −0.54 | −0.62 | −0.68 | −0.53 | −0.51 | −0.53 | −0.60 | 0.45 | 1.38 | −0.54 |
YRDUA | −0.76 | −0.87 | −0.82 | −0.66 | −0.70 | −0.76 | −0.90 | −0.67 | −0.68 | −0.71 | −0.77 | 0.60 | 3.91 | −0.78 |
Average value | −0.66 | −0.68 | −0.71 | −0.64 | −0.64 | −0.71 | −0.78 | −0.62 | −0.60 | −0.62 | −0.71 | 0.52 | 2.29 | −0.64 |
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Muga, G.; Hu, S.; Wang, Z.; Tong, L.; Hu, Z.; Huang, H.; Qu, S. The Efficiency of Urban–Rural Integration in the Yangtze River Economic Belt and Its Optimization. Sustainability 2023, 15, 2419. https://doi.org/10.3390/su15032419
Muga G, Hu S, Wang Z, Tong L, Hu Z, Huang H, Qu S. The Efficiency of Urban–Rural Integration in the Yangtze River Economic Belt and Its Optimization. Sustainability. 2023; 15(3):2419. https://doi.org/10.3390/su15032419
Chicago/Turabian StyleMuga, Gubu, Shougeng Hu, Zhilan Wang, Luyi Tong, Zongnan Hu, Hui Huang, and Shijin Qu. 2023. "The Efficiency of Urban–Rural Integration in the Yangtze River Economic Belt and Its Optimization" Sustainability 15, no. 3: 2419. https://doi.org/10.3390/su15032419
APA StyleMuga, G., Hu, S., Wang, Z., Tong, L., Hu, Z., Huang, H., & Qu, S. (2023). The Efficiency of Urban–Rural Integration in the Yangtze River Economic Belt and Its Optimization. Sustainability, 15(3), 2419. https://doi.org/10.3390/su15032419