Sustainable Population Size at the County Level under Limited Development Policy Constraints: Case Study of the Xihaigu Mountain Area, Northwest China
Abstract
:1. Introduction
2. Conceptual Framework
3. Study Area
4. Methods and Data
4.1. Research Methods
4.1.1. Population-Size and Environment-Quality Model
- (1).
- Population-Size and Environment-Quality Analytical Framework
- (2).
- Model Calculation
- If β1 ≠ 0, β2 ≠ 0, the curve will be the N type. In this case, when β1 < 0, β2 > 0, β3 > β22/3β1, the curve will be the inverted N type. When β1 > 0, β2 < 0, β3 < β22/3β1, the curve will be the N type.
- If β1 = 0, β2 ≠ 0, the curve will be the U type. In this case, when β2 > 0, the curve will be the U type. When β2 < 0, the curve will be the inverted U type.
- If β1 = 0, β2 = 0, the curve will be the linear type.
- (3).
- Population-Size and Environment-Quality Model Fitting
4.1.2. Evaluation of Population Carrying Capacity
- (1).
- Total Available Land Resources
- (2).
- Consumption Intensity of Land Resources
- (3).
- Population Carrying Capacity of Land Resources
4.1.3. Sustainable Population Size
- 1.
- The current population size is lower than the upper limit of land resource carrying capacity;If the population is increased within the upper limit, EQ will decline, that is, the marginal returns of EQ will diminish. We suggest that the current level of sustainable population size be maintained;If the increase in population within the upper limit improves EQ, that is, the marginal returns of EQ increase, we suggest that the sustainable population size be maintained between the current situation and the upper limit and within the “inflection point” of EQ.
- 2.
- The current population size is higher than the upper limit of land resource carrying capacity;Therefore, we recommended that the sustainable population size be reduced to the upper-limit level.
4.2. Variable Selection and Data Processing
4.2.1. Variable Selection
4.2.2. Data Sources and Processing
5. Results
5.1. Population Size under the Constraints of Environmental Quality
- (1).
- Inverted N-Shaped Curve and Population Inflection Point
- (2).
- Driving Factors of Environmental Quality Change
- (3).
- Environmental Economic Stage of the Counties’ Current Population Size
5.2. Population Size under the Constraints of Land Resources
5.3. Sustainable Population Size
6. Discussion
6.1. Necessity of Sustainable Population Size Research
6.2. Dynamics of Sustainable Population Size Accounting
6.3. Comparative Discussion with the Existing Research
7. Conclusions and Policy Implications
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Administrative Region | Industrial Land Use Intensity (ha/100 Million Yuan) | Per Capita Living Land Area (m2/Person) |
---|---|---|
Xiji county | 45.85 | 383.38 |
Longde County | 24.83 | 264.14 |
Jingyuan County | 64.64 | 313.53 |
Pengyang County | 27.35 | 570.08 |
Tongxin County | 21.33 | 430.99 |
Yanchi County | 36.63 | 888.87 |
Haiyuan County | 62.36 | 385.39 |
Variable | Category | Indicators | Unit |
---|---|---|---|
Population size (n) | Total population | Ten thousand people | |
Environmental quality (EQ) | Degree of environmental pollution | Volume of sulfur dioxide emissions per square kilometer (PL) | t/100 hm2 |
Volume of industrial soot (dust) emissions per square kilometer (PY) | t/100 hm2 | ||
Volume of industrial nitrogen oxides discharged per square kilometer (PD) | t/100 hm2 | ||
Annual proportion of excellent days of air quality (KQ) | % | ||
Ecosystem foundation | Afforestation area this year (ZL) | khm2 | |
Forest and grass coverage rate (LC) | % | ||
Energy consumption intensity of economic activities | Total energy consumption by GDP (NH) | tce/10,000 Yuan |
Administrative Region | Principal Component | PL | PY | PD | KQ | ZL | LC | NH |
---|---|---|---|---|---|---|---|---|
Seven Counties | 1 | 0.624 | 0.697 | 0.890 | 0.166 | −0.501 | 0.755 | 0.650 |
2 | −0.545 | −0.300 | 0.265 | −0.200 | 0.566 | 0.331 | 0.585 | |
3 | −0.098 | −0.302 | 0.051 | 0.934 | 0.037 | 0.207 | −0.013 | |
Xiji County | 1 | 0.709 | 0.656 | 0.87 | 0.375 | −0.069 | −0.721 | 0.939 |
2 | 0.444 | −0.427 | 0.198 | 0.577 | 0.851 | 0.452 | −0.042 | |
3 | 0.495 | 0.487 | −0.159 | −0.682 | 0.437 | 0.072 | −0.206 | |
Longde County | 1 | 0.851 | 0.038 | 0.548 | 0.635 | 0.664 | 0.641 | −0.564 |
2 | 0.094 | 0.846 | 0.727 | −0.493 | −0.472 | 0.08 | −0.115 | |
3 | 0.461 | 0.421 | −0.16 | 0.508 | −0.112 | −0.597 | 0.328 | |
Pengyang County | 1 | 0.497 | −0.403 | −0.029 | 0.872 | 0.836 | 0.879 | −0.563 |
2 | −0.301 | 0.641 | −0.716 | 0.357 | 0.469 | 0.043 | 0.629 | |
3 | 0.757 | 0.463 | 0.638 | 0.081 | 0.152 | −0.123 | 0.465 | |
Jingyuan County | 1 | 0.915 | 0.521 | 0.617 | −0.869 | 0.273 | −0.787 | 0.635 |
2 | −0.344 | 0.591 | 0.698 | 0.45 | 0.086 | 0.578 | 0.628 | |
3 | −0.084 | −0.449 | −0.057 | 0.152 | 0.922 | −0.069 | 0.269 | |
Haiyuan County | 1 | 0.93 | 0.699 | 0.591 | −0.585 | −0.624 | 0.636 | −0.06 |
2 | 0.283 | −0.585 | 0.23 | 0.754 | −0.212 | 0.424 | −0.808 | |
3 | 0.01 | 0.341 | 0.729 | 0.003 | 0.593 | −0.527 | −0.465 | |
Tongxin County | 1 | 0.634 | 0.929 | 0.909 | −0.34 | −0.534 | 0.002 | −0.82 |
2 | −0.385 | 0.207 | 0.173 | −0.476 | 0.622 | 0.978 | −0.076 | |
3 | 0.575 | 0.077 | −0.252 | −0.608 | 0.109 | −0.077 | 0.434 | |
Yanchi County | 1 | −0.215 | 0.771 | 0.934 | 0.39 | 0.123 | −0.549 | 0.805 |
2 | 0.886 | −0.197 | 0.257 | −0.184 | 0.772 | 0.52 | 0.454 | |
3 | 0.342 | 0.44 | 0.087 | 0.549 | −0.493 | 0.632 | −0.19 |
Variable | Coef. | Std. Err. | z-Value |
---|---|---|---|
n | −1.5988 *** | 0.4953 | −3.23 |
n2 | 0.0494 *** | 0.1700 | 2.91 |
n3 | −0.0005 *** | 0.0002 | −2.65 |
GDP | 0.0015 | 0.0060 | 0.24 |
UR | 0.0379 *** | 0.0058 | 6.51 |
Constant | 311.0892 *** | 68.4265 | 4.55 |
chi2(1) | 7.02 *** | - | - |
Administrative Region | Average Natural Growth Rate (‰) | Average Proportion of Ethnic Minority Population (%) | Ranking of the Proportion of Minority Population * |
---|---|---|---|
Xiji County | 12.46 | 57.63 | 6 |
Longde County | 6.57 | 11.99 | 19 |
Pengyang County | 9.92 | 30.42 | 10 |
Jingyuan County | 10.63 | 78.99 | 2 |
Haiyuan County | 12.94 | 71.65 | 3 |
Tongxin County | 13.08 | 87.58 | 1 |
Yanchi County | 8.79 | 2.32 | 22 |
Ningxia | 8.73 | 35.83 |
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Chen, X.; Song, Y.; Fan, X.; Ma, J. Sustainable Population Size at the County Level under Limited Development Policy Constraints: Case Study of the Xihaigu Mountain Area, Northwest China. Int. J. Environ. Res. Public Health 2022, 19, 9560. https://doi.org/10.3390/ijerph19159560
Chen X, Song Y, Fan X, Ma J. Sustainable Population Size at the County Level under Limited Development Policy Constraints: Case Study of the Xihaigu Mountain Area, Northwest China. International Journal of Environmental Research and Public Health. 2022; 19(15):9560. https://doi.org/10.3390/ijerph19159560
Chicago/Turabian StyleChen, Xueli, Yongyong Song, Xingang Fan, and Jing Ma. 2022. "Sustainable Population Size at the County Level under Limited Development Policy Constraints: Case Study of the Xihaigu Mountain Area, Northwest China" International Journal of Environmental Research and Public Health 19, no. 15: 9560. https://doi.org/10.3390/ijerph19159560
APA StyleChen, X., Song, Y., Fan, X., & Ma, J. (2022). Sustainable Population Size at the County Level under Limited Development Policy Constraints: Case Study of the Xihaigu Mountain Area, Northwest China. International Journal of Environmental Research and Public Health, 19(15), 9560. https://doi.org/10.3390/ijerph19159560