Research on the Coupling Coordination Relationship between Urbanization and the Air Environment: A Case Study of the Area of Wuhan
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Area
2.2. Data Pre-Processing
2.3. Methods
2.3.1. Construct the Comprehensive Index System
First Grade Indicators | wAHP | wMSD | AW1 | Basic Grade Indicators | wAHP | wMSD | AW2 | AW3 |
---|---|---|---|---|---|---|---|---|
Demographic urbanization | 0.338 | 0.200 | 0.269 | Percentage of nonagricultural population (%) | 0.345 | 0.251 | 0.298 | 0.080 |
Urban population density (person/km2) | 0.180 | 0.247 | 0.214 | 0.058 | ||||
Percentage of second industry employment (%) | 0.207 | 0.256 | 0.231 | 0.062 | ||||
Percentage of tertiary industry employment (%) | 0.268 | 0.246 | 0.257 | 0.069 | ||||
Spatial urbanization | 0.294 | 0.258 | 0.276 | Built-up area (km2) | 0.266 | 0.215 | 0.241 | 0.067 |
Per capita area of roads (m2) | 0.180 | 0.195 | 0.188 | 0.052 | ||||
Urban living space per capita (m2/person) | 0.249 | 0.210 | 0.229 | 0.063 | ||||
Coverage rate of green area in built-up area (%) | 0.172 | 0.198 | 0.185 | 0.051 | ||||
Park green area per capita (m2) | 0.133 | 0.182 | 0.157 | 0.043 | ||||
Economic urbanization | 0.201 | 0.301 | 0.251 | GDP per capita (RMB) | 0.234 | 0.163 | 0.199 | 0.050 |
Percentage of second industry in GDP (%) | 0.192 | 0.163 | 0.178 | 0.045 | ||||
Gross value of industrial output (billion RMB) | 0.191 | 0.164 | 0.177 | 0.044 | ||||
The Hoffman coefficient (%) | 0.181 | 0.168 | 0.175 | 0.044 | ||||
Coal consumption(10 thousand tons) | 0.087 | 0.184 | 0.135 | 0.034 | ||||
The unit GDP energy consumption (tons of standard coal per10 thousands RMB) | 0.115 | 0.158 | 0.136 | 0.034 | ||||
Social urbanization | 0.167 | 0.241 | 0.204 | Urban per capita disposable income (RMB) | 0.258 | 0.204 | 0.231 | 0.047 |
Per capita total retail sales of social consumer goods (Yuan) | 0.204 | 0.203 | 0.203 | 0.041 | ||||
Numbers of running buses and taxis | 0.137 | 0.192 | 0.165 | 0.034 | ||||
Private vehicle ownership | 0.193 | 0.204 | 0.198 | 0.040 | ||||
Urban housing construction area (104 m2) | 0.208 | 0.198 | 0.203 | 0.041 |
First Grade Indicators | wAHP | wMSD | AW1 | Basic Grade Indicators | wAHP | wMSD | AW2 | AW3 |
---|---|---|---|---|---|---|---|---|
Air Environmental Quality | 0.443 | 0.354 | 0.399 | Sulfur dioxide concentration (μg/m3) | 0.293 | 0.212 | 0.253 | 0.101 |
Nitrogen dioxide concentration (μg/m3) | 0.227 | 0.238 | 0.232 | 0.093 | ||||
PM10 concentration (μg/m3) | 0.325 | 0.279 | 0.302 | 0.120 | ||||
Urban average fallout (ton/km2·month) | 0.155 | 0.271 | 0.213 | 0.085 | ||||
Air Environmental Pressure | 0.329 | 0.395 | 0.362 | Total volume of waste gas emission (100 million cu. m) | 0.235 | 0.175 | 0.205 | 0.074 |
Volume of soot emission (10,000 tons) | 0.194 | 0.159 | 0.177 | 0.064 | ||||
Volume of industrial soot emission (10,000 tons) | 0.118 | 0.183 | 0.150 | 0.054 | ||||
Volume of industrial dust emission (10,000 tons) | 0.111 | 0.179 | 0.145 | 0.052 | ||||
Volume of sulfur dioxide emission (10,000 tons) | 0.207 | 0.153 | 0.180 | 0.065 | ||||
Volume of industrial sulfur dioxide emission (10,000 tons) | 0.135 | 0.151 | 0.143 | 0.052 | ||||
Air Environmental Control | 0.228 | 0.251 | 0.239 | Percentage of pollution treatment in GDP (%) | 0.161 | 0.206 | 0.184 | 0.044 |
Industrial waste gas treatment facilities | 0.203 | 0.181 | 0.192 | 0.046 | ||||
Percentage of industrial soot removed (%) | 0.201 | 0.189 | 0.195 | 0.047 | ||||
Percentage of industrial dust removed (%) | 0.178 | 0.204 | 0.191 | 0.046 | ||||
Percentage of industrial sulfur dioxide removed (%) | 0.257 | 0.220 | 0.238 | 0.057 |
2.3.2. Evaluation of the Indicators’ Weight
2.3.3. The Coupling Coordination Degree Model (CCDM)
First Grade Index | Second Grade Index | Third Grade Index | Features | |
---|---|---|---|---|
Balanced Development (Acceptable Interval) | 0.8 < D ≤ 1.0 | Superior Balanced Development | g(E) − f(U) > 0.1 | Superiorly Balanced Development with Urbanization Lagged |
f(U) − g(E) > 0.1 | Superiorly Balanced Development with Air Environment Lagged | |||
0 ≤ |f(U) − g(E)| ≤ 0.1 | Superiorly Balanced Development with Urbanization and Air Environment | |||
Transitional Development (Transitional Interval) | 0.5 < D ≤ 0.8 | Barely Balanced Development | g(E) − f(U) > 0.1 | Barely Balanced Development with Urbanization Lagged |
f(U) − g(E) > 0.1 | Barely Balanced Development with Air Environment Lagged | |||
0 ≤ |f(U) − g(E)| ≤ 0.1 | Barely Balanced Development with Urbanization and Air Environment | |||
Unbalanced Development (Unacceptable Interval) | 0.3 < D ≤ 0.5 | Slightly Unbalanced Development | g(E) − f(U) > 0.1 | Slightly Unbalanced Development with Urbanization Hindered |
f(U) − g(E) > 0.1 | Slightly Unbalanced Development with Hindered Air Environment | |||
0 ≤ |f(U) − g(E)| ≤ 0.1 | Slightly Unbalanced Development with Urbanization and Air Environment | |||
0 < D ≤ 0.3 | Seriously Unbalanced Development | g(E) − f(U) > 0.1 | Seriously Unbalanced Development with Urbanization Hindered | |
f(U) − g(E) > 0.1 | Seriously Unbalanced Development with Air Environment Hindered | |||
0 ≤ |f(U) − g(E)| ≤ 0.1 | Seriously Unbalanced Development with Urbanization and Air Environment |
3. Results and Discussions
3.1. Variations of Comprehensive Urbanization and Air Environment Index
3.1.1. Variations of Comprehensive Urbanization
3.1.2. Variations of Comprehensive Level of Air Environment
3.2. Coupling Results of Comprehensive Urbanization (α) and the Air Environment (β)
Year | Case1: α = 2/3, β = 1/3 | Case2: α = 1/2, β = 1/2 | Case3: α = 1/3, β = 2/3 |
---|---|---|---|
1996 | Slightly Unbalanced Development with Urbanization Hindered | Barely Balanced Development with Urbanization Lagged | Barely Balanced Development with Urbanization Lagged |
1997 | Slightly Unbalanced Development with Urbanization Hindered | Slightly Unbalanced Development with Urbanization Hindered | |
1998 | |||
1999 | Barely Balanced Development with Urbanization Lagged | ||
2000 | Barely Balanced Development with Urbanization Lagged | Barely Balanced Development with Urbanization Lagged | |
2001 | Slightly Unbalanced Development with Urbanization Hindered | ||
2002 | Barely Balanced Development with Urbanization Lagged | ||
2003 | |||
2004 | |||
2005 | |||
2006 | Barely Balanced Development with Urbanization and Air Environment | Barely Balanced Development with Urbanization and Air Environment | Barely Balanced Development with Urbanization and Air Environment |
2007 | |||
2008 | |||
2009 | Superiorly Balanced Development with Urbanization and Air Environment | Superiorly Balanced Development with Urbanization and Air Environment | Superiorly Balanced Development with Urbanization and Air Environment |
2010 | |||
2011 | |||
2012 | |||
2013 | Superiorly Balanced Development with Air Environment Lagged | Superiorly Balanced Development with Air Environment Lagged | Superiorly Balanced Development with Air Environment Lagged |
3.3. Fit Curve between Urbanization and Air Environment
4. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
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Ding, L.; Zhao, W.; Huang, Y.; Cheng, S.; Liu, C. Research on the Coupling Coordination Relationship between Urbanization and the Air Environment: A Case Study of the Area of Wuhan. Atmosphere 2015, 6, 1539-1558. https://doi.org/10.3390/atmos6101539
Ding L, Zhao W, Huang Y, Cheng S, Liu C. Research on the Coupling Coordination Relationship between Urbanization and the Air Environment: A Case Study of the Area of Wuhan. Atmosphere. 2015; 6(10):1539-1558. https://doi.org/10.3390/atmos6101539
Chicago/Turabian StyleDing, Lei, Weituo Zhao, Yalin Huang, Shenggao Cheng, and Chao Liu. 2015. "Research on the Coupling Coordination Relationship between Urbanization and the Air Environment: A Case Study of the Area of Wuhan" Atmosphere 6, no. 10: 1539-1558. https://doi.org/10.3390/atmos6101539
APA StyleDing, L., Zhao, W., Huang, Y., Cheng, S., & Liu, C. (2015). Research on the Coupling Coordination Relationship between Urbanization and the Air Environment: A Case Study of the Area of Wuhan. Atmosphere, 6(10), 1539-1558. https://doi.org/10.3390/atmos6101539