Uneven Distribution of Ecosystem Services along the Yarlung Zangbo River Basin in Tibet Reveals the Quest for Multi-Target Policies of Rural Development in Less-Favored Areas
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Area
2.2. Data Sources
2.3. Methods
2.3.1. Determination of Grid Scale in the Study Area
2.3.2. Ecosystem Service Value-Estimation Model
- 1.
- Standard unit equivalent factor analysis
- 2.
- Value Equivalent Factor analysis
2.3.3. Correlation Analysis
2.3.4. Spatial Autocorrelation Analysis
2.4. Method Restrictions
3. Results
3.1. Dynamics of Ecosystem Service Values in the Yarlung Zangbo River Basin
3.2. Grid-Based Spatial and Temporal Variation of Ecosystem Services in the Yarlung Zangbo River Basin
3.3. Ecosystem Service Trade-Offs and Synergies in the Yarlung Zangbo River Basin
3.3.1. Correlations of Ecosystem Service Values in the Yarlung Zangbo River Basin
3.3.2. Spatial Agglomeration Characteristics along the Yarlung Zangbo River Basin
4. Discussion
4.1. Ecosystem Services Are Unevenly Distributed across the Less-Favored Area in Tibet
4.2. Rural Development Zoning Based on Uneven Distribution of Ecosystem Services’ Trade-Offs and Synergies
4.3. Implications of Heterogenous Policies for Rural Revitalization in the Less-Favored Areas
5. Conclusions
Author Contributions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Cai, Y.L. Geographical Study on Sustainable Agriculture and Rural Development. Adv. Earth Sci. 1999, 6, 602–606. [Google Scholar]
- Wei, H.K. Strategic Thinking on Promoting the Sustainable Development of Rural Areas. Environ. Prot. 2015, 17, 15–19. [Google Scholar]
- Huang, Y.; Xue, X.T. A Research on Spatio-temporal Changes of Ecosystem Services Value of Hunan Province on Grid Scale. J. Hunan Ecol. Sci. 2021, 2, 32–39 . [Google Scholar]
- Wainger, L.A.; King, D.M.; Mack, R.N.; Price, E.W.; Maslin, T. Can the concept of ecosystem services be practically applied to improve natural resource management decisions? Ecol. Econ. 2010, 69, 978–987. [Google Scholar] [CrossRef]
- Liu, H.C.; Reng, C.Y.; Wang, Z.M.; Zhang, B.A. Dynamics of Ecosystem Service Functions and Their Tradeoff and Synergetic Relationships in Great Xing′an Mountains Ecological Function Zone. J. Ecol. Rural. Environ. 2022, 5, 587–598. [Google Scholar]
- Xie, G.D.; Lu, C.X.; Leng, Y.F.; Zheng, D.; Li, S.C. Ecological assets valuation of the Tibetan Plateau. J. Nat. Resour. 2003, 2, 189–196. [Google Scholar]
- Ouyang, Z.Y.; Wang, X.K.; Miao, H. A primary study on Chinese terrestrial ecosystem services and their ecological-economic values. Acta Ecol. Sinica 1999, 5, 607–613. [Google Scholar]
- Limburg, K.E. Nature’s services: Societal dependence on natural ecosystems. Ecol. Econ. 1998, 27, 220–221. [Google Scholar]
- Costanza, R.; d’Arge, R.; de Groot, R.; Farber, S.; Grasso, M.; Hannon, B.; Limburg, K.; Naeem, S.; Oneill, R.V.; Paruelo, J.; et al. The value of the world’s ecosystem services and natural capital. Nature 1997, 387, 253–260. [Google Scholar] [CrossRef]
- Zhang, C.Q.; Fu, R.A. The Goal Setting and Its Realization Path of Rural Ecological Revitalization Based on Ecosystem Services. Rural Econ. 2020, 12, 42–48. [Google Scholar]
- Li, Y.J.; Zhang, D.Y.; Wang, K.; Huang, L. Supply-demand relationships of cultural ecosystem services in rural areas: A case study of Huzhou City, Zhejiang Province. Acta Ecol. Sinica 2022, 17, 6888–6899. [Google Scholar]
- Cao, X.W.; Liu, T.; Zhang, W.J. To realize the sustainable development of rural areas requires the renewal of ideas and the reform of education. China Sustain. Trib. 2022, 8, 38–41. [Google Scholar]
- Fu, B.J.; Yu, D.D. Trade-off analyses and synthetic integrated method of multiple ecosystem services. Resour. Sci. 2016, 38, 1–9. [Google Scholar]
- Raudsepp-Hearne, C.; Peterson, G.D.; Bennett, E.M. Ecosystem service bundles for analyzing tradeoffs in diverse landscapes. Proc. Natl. Acad. Sci. USA. 2010, 107, 5242–5247. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Li, S.C.; Zhang, C.Y.; Liu, J.L.; Zhu, W.B.; Ma, C.; Wang, Y. The tradeoffs and synergies of ecosystem services: Research progress, development trend, and themes of geography. Geogr. Res. 2013, 8, 1379–1390. [Google Scholar]
- Liu, Z.B.; Yan, G.; Li, F.; Wei, L. Analysis on the Restrictions and Countermeasures of Rural Ecological Revitalization. Environ. Prot. 2018, 24, 48–50. [Google Scholar]
- Mao, H.S.; Pu, Y. Study on Rural Rejuvenation Strategy Based on Cultural Ecosystem Services: A Case Study of Longwang Village, Beibei District, Chongqing. Landsc. Archit. Acad. J. 2022, 3, 39–47. [Google Scholar]
- Chen, A.; Li, J.J.; Wang, M.S.; Zhang, H.; Bian, L.J.; Li, W.T.; Xu, W.L. Research for Change of Ecosystem Service and the Tradeoff-Synergy Relation of the YLN Basin in the Tibet Autonomous Region. Res. Soil Water Conserv. 2022, 2, 313–319. [Google Scholar]
- Xie, G.D.; Zhang, C.X.; Zhang, L.M.; Chen, W.H.; Li, S.M. A Improvement of the Evaluation Method for Ecosystem Service Value Based on Per Unit Area. J. Nat. Resour. 2015, 8, 1243–1254. [Google Scholar]
- Liu, H.; Wu, J.; Chen, X.L. Study on spatial-temporal change andtrade-off/synergy relationships of ecosystem services in the Danjiangkou water source area. Acta Ecol. Sinica 2018, 13, 4609–4624. [Google Scholar]
- Sun, Y.J.; Ren, Z.Y.; Hao, M.Y.; Duan, Y.F. Spatial and temporal changes in the synergy and trade-off between ecosystem services, and its influencing factors in Yanan, Loess Plateau. Acta Ecol. Sinica 2019, 39, 3443–3454. [Google Scholar]
- Zheng, D.F.; Wan, J.Y.; Bai, L.N.; Lv, L.T. Multi-scale Analysis of Ecosystem Service Trade-offs/Synergies in Yanshan-Taihang Mountains Area. J. Ecol. Rural. Environ. 2022, 4, 409–417. [Google Scholar]
- Wang, Y.F.; Liu, M.; Guo, Y.; Dong, H.Z. Estimation on Ecosystem Service Value in Ecological Environment Support Areas of Hebei Province. Bull. Soil Water Conserv. 2019, 2, 309–316. [Google Scholar]
- Gong, J.; Liu, D.Q.; Gao, B.L.; Xu, C.X.; Li, Y. Tradeoffs and synergies of ecosystem services in western mountainous China:A case study of the Bailongjiang watershed in Gansu, China. Chin. J. Appl. Ecol. 2020, 4, 1278–1288. [Google Scholar]
- Zheng, D.F.; Hao, S.; Lv, L.T.; Xu, W.J.; Wang, Y.Y.; Wang, H. Spatial-temporal change and trade-off/synergy relationships among multiple ecosystem services in Three-River-Source National Park. Geogr. Res. 2020, 1, 64–78. [Google Scholar]
- Wang, X.W.; Yu, S.X.; Shi, Z.H.; Wang, L. Responses of tradeoffs and synergies among ecosystem services to Grain-for-Green Project in the red soil region, southern China. Acta Ecol. Sinica 2021, 17, 7002–7014. [Google Scholar]
- Peng, J.; Yang, Y.; Liu, Y.; Hu, Y.N.; Du, Y.; Meersmans, J.; Qiu, S. Linking ecosystem services and circuit theory to identify ecological security patterns. Sci. Total Environ. 2018, 644, 781–790. [Google Scholar] [CrossRef] [Green Version]
- Wang, W.W.; Ye, J.; Zhang, L.G.; Wei, C.; Zhang, H.W.; Liu, H.H. Research on ecological compensation from the perspective of main functional areas:a case study of Hubei Province. Acta Ecol. Sinica 2020, 21, 7816–7825. [Google Scholar]
- Li, T.; Zhang, Q.; Zhang, Y. Modelling a Compensation Standard for a Regional Forest Ecosystem: A Case Study in Yanqing District, Beijing, China. Int. J. Environ. Res. Public Health 2018, 15, 565. [Google Scholar] [CrossRef] [Green Version]
- Li, Q.F.; Luo, Y.C.; Liu, G.; Ouyang, Z.Y.; Zheng, H. Effects of land use change on ecosystem services: A case study in Miyun reservoir watershed. Acta Ecol. Sinica 2013, 3, 726–736. [Google Scholar]
- Zhang, M.; Yang, G.Q.; Wang, J.B.; Li, J.Y.; Zhang, T. Trade-Off Synergy of Ecosystem Services in the Qinba Mountainous Area of China. Mt. Res. 2022, 1, 1–13. [Google Scholar]
- Wang, M.; Ti, Y.; Wang, J.D.; Zhang, Q.L.; Hu, Z.L.; Luan, X.F. Ecosystem services, trade-offs and synergy analysis in Tianjin under different land use scenarios. J. Beijing For. Univ. 2022, 5, 77–85. [Google Scholar]
- Wang, X.M.; Pan, P.P.; Wang, X.X.; Liu, M.M.; Zhao, Q.S.; Wang, X.R.; Wang, X.Y. Research on Ecosystem Service Trade-off/Synergy Relationship in Hebei Province Based on Land Use. Geogr. Geo-Inf. Sci. 2021, 1, 80–88. [Google Scholar]
- Li, W.H.; Zhang, B.; Xie, G.D. Research on Ecosystem Services in China:Progress and Perspectives. J. Nat. Resour. 2009, 1, 1–10. [Google Scholar]
- Qiao, B.; Zhu, C.X.; Cao, X.Y.; Xiao, J.S.; Zha, X.L.D.; Yan, Y.Q.; Chen, G.Q.; Shi, F.F. Spatial autocorrelation analysis of land use and ecosystem service value in Maduo County, Qinghai Province, China at the grid scale. Chin. J. Appl. Ecol. 2020, 5, 1660–1672. [Google Scholar]
- Zhou, K.; Wang, X.; Wang, Z.; Hu, Y. Systematicity and Stability Analysis of Land Use Change-Taking Jinan, China, as an Example. Land 2022, 11, 1045. [Google Scholar] [CrossRef]
- Green, R.E.; Cornell, S.J.; Scharlemann, J.P.W.; Balmford, A. Farming and the fate of wild nature. Science 2005, 307, 550–555. [Google Scholar] [CrossRef]
- Feng, Z.; Xu, X.G.; Zhou, J.; Gao, Y. Land sparing versus sharing framework from ecosystem service perspective. Prog. Geogr. 2016, 9, 1100–1108. [Google Scholar]
- Hu, Y.; Fu, R.; Jin, S.Q. Eco-environmental Concerns in the Organic Connection between Poverty Alleviation and Rural Revitalization. Reform 2019, 10, 141–148. [Google Scholar]
Types of Ecosystem Services | Cropland | Forest | Grassland | Water | Desert | Wetland | |
---|---|---|---|---|---|---|---|
supply service | Food Production | 0.85 | 0.31 | 0.1 | 0.8 | 0.01 | 0.51 |
Raw material production | 0.4 | 0.71 | 0.14 | 0.23 | 0.03 | 0.5 | |
Water supply | 0.02 | 0.37 | 0.08 | 8.29 | 0.02 | 2.59 | |
regulation service | Gas regulation | 0.67 | 2.35 | 0.51 | 0.77 | 0.11 | 1.9 |
Climate regulation | 0.36 | 7.03 | 1.34 | 2.29 | 0.1 | 3.6 | |
Environmental purification | 0.1 | 1.99 | 0.44 | 5.55 | 0.31 | 3.6 | |
Hydrological regulation | 0.27 | 3.51 | 0.98 | 102.24 | 0.21 | 24.23 | |
support service | Soil Maintenance | 1.03 | 2.86 | 0.62 | 0.93 | 0.13 | 2.31 |
Nutrient cycle maintenance | 0.12 | 0.22 | 0.05 | 0.07 | 0.01 | 0.18 | |
Biodiversity | 0.13 | 2.6 | 0.56 | 2.55 | 0.12 | 7.87 | |
culture service | Aesthetic landscape | 0.06 | 1.14 | 0.25 | 1.89 | 0.05 | 4.73 |
Types of Ecosystem Services | First-Class Classification | Cropland | Forest | Grassland | Water | Desert | Wetland |
---|---|---|---|---|---|---|---|
Supply service | Food Production | 3746.12 | 1366.23 | 440.72 | 3525.76 | 44.07 | 2247.67 |
Raw material production | 1762.88 | 3129.11 | 617.01 | 1013.66 | 132.22 | 2203.60 | |
Water supply | 88.14 | 1630.66 | 352.58 | 36,535.69 | 88.14 | 11,414.65 | |
Regulation service | Gas regulation | 2952.82 | 10,356.92 | 2247.67 | 3393.54 | 484.79 | 8373.68 |
Climate regulation | 1586.59 | 30,982.62 | 5905.65 | 10,092.49 | 440.72 | 15,865.92 | |
Environmental purification | 440.72 | 8770.33 | 1939.17 | 24,459.96 | 1366.23 | 15,865.92 | |
Hydrological regulation | 1189.94 | 15,469.27 | 4319.06 | 450,592.13 | 925.51 | 106,786.46 | |
Support service | Soil Maintenance | 4539.42 | 12,604.59 | 2732.46 | 4098.70 | 572.94 | 10,180.63 |
Nutrient cycle maintenance | 528.86 | 969.58 | 220.36 | 308.50 | 44.07 | 793.30 | |
Biodiversity | 572.94 | 11,458.72 | 2468.03 | 11,238.36 | 528.86 | 34,684.66 | |
Culture service | Aesthetic landscape | 264.43 | 5024.21 | 1101.80 | 8329.61 | 220.36 | 20,846.06 |
Types of Ecosystem Services | Ecosystem Service Value (108 yuan) | |||
---|---|---|---|---|
First-class classification | Second-class classification | 2000 | 2010 | 2020 |
Supply service | Food Production | 68.36 | 138.82 | 185.05 |
Raw material production | 87.78 | 178.12 | 241.25 | |
Water supply | 258.93 | 533.03 | 683.54 | |
Regulation service | Gas regulation | 304.87 | 618.44 | 837.33 |
Climate regulation | 845.56 | 1717.04 | 2326.04 | |
Environmental purification | 395.6 | 807.44 | 1068.28 | |
Hydrological regulation | 3133.2 | 6450.01 | 8260.77 | |
Support service | Soil Maintenance | 370.62 | 751.72 | 1017.94 |
Nutrient cycle maintenance | 29.19 | 59.17 | 80.15 | |
Biodiversity | 379.49 | 771.67 | 1036.89 | |
Culture service | Aesthetic landscape | 187.57 | 382.01 | 510.23 |
Land-Use Classification | Ecosystem Service Value (108 yuan) | ||
---|---|---|---|
2000 | 2010 | 2020 | |
Cropland | 2.27 | 3.38 | 6.00 |
Forest | 1242.98 | 2558.42 | 3499.48 |
Grassland | 1527.54 | 3054.53 | 4142.42 |
Water | 3243.73 | 6698.95 | 8482.66 |
Desert | 44.37 | 91.28 | 113.52 |
Wetland | 0.27 | 0.92 | 3.37 |
Ecosystem Services | Supply Service | Regulation Service | Support Service | Culture Service | |||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Food Production | Raw material production | Water supply | Gas regulation | Climate regulation | Environmental purification | Hydrological regulation | Soil Maintenance | Nutrient cycle maintenance | Biodiversity | Aesthetic landscape | |
Food Production | 1 | ||||||||||
Raw material production | 0.612 ** | 1 | |||||||||
Water supply | 0.659 ** | 0.283 ** | 1 | ||||||||
Gas regulation | 0.590 ** | 0.973 ** | 0.259 ** | 1 | |||||||
Climate regulation | 0.605 ** | 0.985 ** | 0.274 ** | 0.983 ** | 1 | ||||||
Environmental purification | 0.830 ** | 0.467 ** | 0.813 ** | 0.442 ** | 0.458 ** | 1 | |||||
Hydrological regulation | 0.640 ** | 0.264 ** | 0.979 ** | 0.240 ** | 0.255 ** | 0.793 ** | 1 | ||||
Soil Maintenance | 0.587 ** | 0.970 ** | 0.256 ** | 0.997 ** | 0.981 ** | 0.440 ** | 0.237 ** | 1 | |||
Nutrient cycle maintenance | 0.561 ** | 0.939 ** | 0.227 ** | 0.966 ** | 0.950 ** | 0.410 ** | 0.208 ** | 0.968 ** | 1 | ||
Biodiversity | 0.846 ** | 0.761 ** | 0.522 ** | 0.737 ** | 0.752 ** | 0.705 ** | 0.503 ** | 0.734 ** | 0.705 ** | 1 | |
Aesthetic landscape | 0.929 ** | 0.659 ** | 0.624 ** | 0.635 ** | 0.650 ** | 0.805 ** | 0.605 ** | 0.632 ** | 0.603 ** | 0.898 ** | 1 |
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Zhou, X.; Ma, M.; Chen, Q.; Qi, W.; Gao, Y.; Cui, J. Uneven Distribution of Ecosystem Services along the Yarlung Zangbo River Basin in Tibet Reveals the Quest for Multi-Target Policies of Rural Development in Less-Favored Areas. Land 2022, 11, 1961. https://doi.org/10.3390/land11111961
Zhou X, Ma M, Chen Q, Qi W, Gao Y, Cui J. Uneven Distribution of Ecosystem Services along the Yarlung Zangbo River Basin in Tibet Reveals the Quest for Multi-Target Policies of Rural Development in Less-Favored Areas. Land. 2022; 11(11):1961. https://doi.org/10.3390/land11111961
Chicago/Turabian StyleZhou, Xi, Maohua Ma, Qiao Chen, Wanyu Qi, Yuyao Gao, and Jianzhao Cui. 2022. "Uneven Distribution of Ecosystem Services along the Yarlung Zangbo River Basin in Tibet Reveals the Quest for Multi-Target Policies of Rural Development in Less-Favored Areas" Land 11, no. 11: 1961. https://doi.org/10.3390/land11111961
APA StyleZhou, X., Ma, M., Chen, Q., Qi, W., Gao, Y., & Cui, J. (2022). Uneven Distribution of Ecosystem Services along the Yarlung Zangbo River Basin in Tibet Reveals the Quest for Multi-Target Policies of Rural Development in Less-Favored Areas. Land, 11(11), 1961. https://doi.org/10.3390/land11111961