Whether Urban Development and Ecological Protection Can Achieve a Win-Win Situation—The Nonlinear Relationship between Urbanization and Ecosystem Service Value in China
Abstract
:1. Introduction
2. Models and Data Processing
2.1. Theoretical Model
2.2. Econometrical Model: Spatially Adaptive Semi-Parametric Model
2.3. Data Source and Descriptive Statistics
2.4. Calculation of ESV
3. Results
3.1. Spatial Pattern of ESV Per Capita
3.2. Urbanization and ESV Per Capita for the Whole Country
3.2.1. Nonlinear Relationship between Urbanization and ESV
3.2.2. The Linear Effect of Control Variables on ESV
3.2.3. Urbanization and ESV Per Capita for Subregions
4. Discussion
4.1. The Improvement in ESV Evaluation
4.2. The Spatial Heterogeneity in the Relationship between Urbanization and ESV
4.3. Time Series Analysis of the Relationship between Urbanization and ESV
5. Conclusions and Policy Implications
Author Contributions
Acknowledgments
Conflicts of Interest
References
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Variable (Abbreviation) | Notation | Mean |
---|---|---|
Regional GDP per capita (RGDP) | 31,651.2 | |
The total output of secondary and tertiary industries as a proportion of regional GDP (PST) | 0.9 | |
The number of full-time teachers per 1000 people (NFT) | 10.3 | |
Local fiscal expenditure (LFE) | 2324.3 | |
The number of hospital beds per 1000 people (NHB) | 3.7 |
Land Type | Cultivated Land | Pasture Land/Garden Land | Forest/Afforestation | Wetland | Water Body |
---|---|---|---|---|---|
The ESV per unit area | 3547.89 | 5241.00 | 12,628.69 | 24,597.21 | 20,366.69 |
Province | Region | ESV Per Capita | ||
---|---|---|---|---|
2003 | 2007 | 2015 | ||
Qinghai | Midwest | 260.46 | 255.39 | 8050.95 |
Xinjiang | Midwest | 30.09 | 55.02 | 802.79 |
Hainan | Eastern | 48.63 | 133.26 | 218.41 |
Inner Mongolia | Midwest | 7.88 | 23.36 | 194.79 |
Ningxia | Midwest | 3.84 | 3.70 | 53.42 |
Gansu | Midwest | 3.37 | 8.28 | 45.80 |
Heilongjiang | Midwest | 2.28 | 5.32 | 15.93 |
Guizhou | Midwest | 1.17 | 4.15 | 10.65 |
Shaanxi | Midwest | 0.76 | 1.24 | 10.61 |
Yunnan | Midwest | 2.32 | 5.31 | 10.30 |
Jilin | Midwest | 1.87 | 2.84 | 8.70 |
Sichuan | Midwest | 0.28 | 0.65 | 7.21 |
Guangxi | Midwest | 0.26 | 0.37 | 3.85 |
Chongqing | Midwest | 0.06 | 0.31 | 3.26 |
Jiangxi | Midwest | 0.66 | 0.93 | 2.47 |
Beijing | Eastern | 0.47 | 1.02 | 2.03 |
Fujian | Eastern | 0.34 | 0.46 | 1.10 |
Hubei | Midwest | 0.20 | 0.42 | 1.98 |
Hunan | Midwest | 0.18 | 0.45 | 1.89 |
Liaoning | Eastern | 0.29 | 0.50 | 1.65 |
Tianjin | Eastern | 0.44 | 0.63 | 1.62 |
Shanxi | Midwest | 0.51 | 0.78 | 1.48 |
Anhui | Midwest | 0.21 | 0.36 | 1.31 |
Hebei | Eastern | 0.15 | 0. 32 | 0.75 |
Zhejiang | Eastern | 0.13 | 0.20 | 0.60 |
Guangdong | Eastern | 0.13 | 0.12 | 0.41 |
Shanghai | Eastern | 0.12 | 0.21 | 0.40 |
Henan | Midwest | 0.06 | 0.13 | 0.37 |
Jiangsu | Eastern | 0.04 | 0.07 | 0.34 |
Shandong | Eastern | 0.10 | 0.13 | 0.27 |
. | Notation | Variables (Abbreviation) | Coefficient |
---|---|---|---|
Parametric Results | Regional GDP per capita (RGDP) | 4.31 × 10−5 (0.000) | |
Total output of secondary and tertiary industries as a proportion of regional GDP (PST) | −11.16 (0.000) | ||
The number of full-time teachers per thousand people (NFT) | −0.15 *** (0.000) | ||
Local fiscal expenditure (LFE) | −5.25× 10−4 *** (0.000) | ||
The number of hospital beds per thousand people (NHB) | 1.39 *** (0.000) | ||
Nonparametric Results | df | 5.94 | |
spar | 5.89 | ||
knots | 36 |
Notation | Variables (Abbreviation) | Coefficient | |
---|---|---|---|
Parametric Results | Regional GDP per capita (RGDP) | 5.24 × 10−5 (0.000) | |
Total output of secondary and tertiary industries as a proportion of regional GDP(PST) | −13.33 (0.000) | ||
The number of full-time teachers per thousand people (NFT) | −4.51 × 10−3 (0.816) | ||
Local fiscal expenditure (LFE) | −2.23 × 10−4 *** (0.000) | ||
The number of hospital beds per thousand people (NHB) | 0.39 *** (0.003) | ||
Nonparametric Results | df | 5.97 | |
spar | 3.86 | ||
knots | 33 |
Notation | Variables (Abbreviation) | Coefficient | |
---|---|---|---|
Parametric Results | Regional GDP per capita (RGDP) | 8.35 × 10−3 (0.127) | |
Total output of secondary and tertiary industries as a proportion of regional GDP (PST) | 771.20 (0.443) | ||
The number of full-time teachers per thousand people (NFT) | −79.89 *** (0.000) | ||
Local fiscal expenditure (LFE) | −0.23 *** (0.000) | ||
The number of hospital beds per thousand people (NHB) | 368.7 *** (0.000) | ||
Nonparametric Results | df | 2.00 | |
spar | 35.15 | ||
knots | 35 |
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Wu, Y.; Tang, M.; Zhang, Z.; Wu, B. Whether Urban Development and Ecological Protection Can Achieve a Win-Win Situation—The Nonlinear Relationship between Urbanization and Ecosystem Service Value in China. Sustainability 2019, 11, 3277. https://doi.org/10.3390/su11123277
Wu Y, Tang M, Zhang Z, Wu B. Whether Urban Development and Ecological Protection Can Achieve a Win-Win Situation—The Nonlinear Relationship between Urbanization and Ecosystem Service Value in China. Sustainability. 2019; 11(12):3277. https://doi.org/10.3390/su11123277
Chicago/Turabian StyleWu, Yingtao, Maogang Tang, Zhonghao Zhang, and Baijun Wu. 2019. "Whether Urban Development and Ecological Protection Can Achieve a Win-Win Situation—The Nonlinear Relationship between Urbanization and Ecosystem Service Value in China" Sustainability 11, no. 12: 3277. https://doi.org/10.3390/su11123277
APA StyleWu, Y., Tang, M., Zhang, Z., & Wu, B. (2019). Whether Urban Development and Ecological Protection Can Achieve a Win-Win Situation—The Nonlinear Relationship between Urbanization and Ecosystem Service Value in China. Sustainability, 11(12), 3277. https://doi.org/10.3390/su11123277