Submitted:
15 December 2024
Posted:
16 December 2024
You are already at the latest version
Abstract
Keywords:
1. Introduction
2. Materials and Methods
2.1. Introduction to the Study Area
2.2. Data Sources
2.3. Research Methods
2.3.1. Economic Value of Unit Area Grain Crops
2.3.2. Total Ecosystem Service Value
2.3.3. Ecological Service Function Action Boundary
2.3.4. Ecological Service Value Transfer Intensity
2.3.5. Ecological Service Value Transfer Volume
3. Results
3.1. Estimation and Analysis of Ecosystem Service Value
3.1.1. Evaluation Model Indicator Revision
3.1.2. Total Ecosystem Service Value
3.1.3. Single Ecosystem Service Values
3.2. Patterns of distribution of changes in the value of ecosystem services
3.2.1. Patterns of value distribution of ecosystem services at the grid scale
3.2.2. Patterns of change in the value of ecosystem services at the grid scale
3.3. Transfers of ecosystem service values
3.3.1. Value of ecosystem services in 2020
3.3.2. Value transfer of ecosystem services in 2020
4. Discussion
5. Conclusions
References
- Wei, L.; Liu, J.; Zheng, Z.; Ding, X.; Xie, D. Spatio-temporal change of land use and ecosystem service value in Shandong Province. Journal of Xi'an University of Technology 2024, 1–15. Available online: http://kns.cnki.net/kcms/detail/61.1294.N.20241010.2048.006.html.
- Pan, D.; Yan, H.; Han, T.; Sun, B.; Jiang, J.; Liu, X.; Li, X.; Wang, H. Evaluation of the service function value of grassland ecosystems in Gansu Province using the equivalence factor method. Pratacultural Science 2021, 38, 1860–1868. [Google Scholar] [CrossRef]
- Liu, H.; Cao, X.; Zhang, C. Research Progress of Ecosystem Service Valuation. Journal of Green Science and Technology 2024, 26, 273–280. [Google Scholar] [CrossRef]
- Costanza, R.; Arge; Groot, R.; Belt, M. The Value of the World's Ecosystem Services and Natural Capital. Ecological Economics 1997. [Google Scholar] [CrossRef]
- Bolund, P.; Hunhammar, S. Ecosystem services in urban areas. Ecological economics 1999, 29, 293–301. [Google Scholar] [CrossRef]
- Kozak, J.; Lant, C.; Shaikh, S.; Wang, G. The geography of ecosystem service value: The case of the Des Plaines and Cache River wetlands, Illinois. Applied Geography 2011, 31, 303–311. [Google Scholar] [CrossRef]
- Xie, G.; Xiao, Y.; Zhen, L.; Lu, C. Study on ecosystem services value of food production in China. Chinese Journal of Eco-Agriculture 2005, 10–13. [Google Scholar]
- Xie, G.; Zhang, C.; Zhang, L.; Chen, W.; Li, S. Improvement of the Evaluation Method for Ecosystem Service Value Based on Per UnitArea. Journal of Natural Resources 2015, 30, 1243–1254. [Google Scholar] [CrossRef]
- Xie, G.; Zhen, L.; Lu, C.; Xiao, Y.; Chen, C. Expert Knowledge Based Valuation Method of Ecosystem Services in China. Journal of Natural Resources 2008, 911–919. [Google Scholar] [CrossRef]
- Xie, G.; Xiao, Y.; Lu, C. Study on Ecosystemservices: Progress Limitation and Basic Paradigm. Chinese Journal of Plant Ecology 2006, 191–199. [Google Scholar] [CrossRef]
- Office, J.L.H. Jiuquan Yearbook; Dunhuang Literary Publishing House: Lanzhou, 2021. [Google Scholar]
- Statistics, G.P.B.o. Gansu Statistical Yearbook; China Statistics Press: Beijing, 2021. [Google Scholar]
- Statistics, N.B.o. China Statistical Yearbook; China Statistics Press: Beijing, 2021. [Google Scholar]
- Yang, J.; Huang, X. 30 m annual land cover and its dynamics in China from 1990 to 2019. Earth System Science Data Discussions 2021, 2021, 1–29. [Google Scholar] [CrossRef]
- Shao, W.; Chen, M.; Liu, H. Comparison of the Functional Value Approach and the Equivalent Factor Approach to Ecological Value Accounting. Agriculture and Technology 2021, 41, 105–107. [Google Scholar] [CrossRef]
- Wang, N.; Li, X.; Tao, W.; Wei, J.; Huang, H.; Wang, P. A Review of Research on Evaluation of Ecosystem Service Function Value. Journal of Green Science and Technology 2022, 24, 44–49. [Google Scholar] [CrossRef]
- Zhang, J.; Zhou, Y.; Yuan, Y.; Zhou, J. Comparative study of methods for accounting for the value of ecosystem services. Environment and Sustainable Development 2023, 48, 110–118. [Google Scholar] [CrossRef]
- Li, J.; Qiu, J.; Amani-Beni, M.; Wang, Y.; Yang, M.; Chen, J. A Modified Equivalent Factor Method Evaluation Model Based on Land Use Changes in Tianfu New Area. Land 2023, 12, 1335. [Google Scholar] [CrossRef]
- Zhang, Z.; Shi, J.; Qu, L.; Li, J. Evaluation of Forest Ecosystem Services in Yunnan Province Based on Value Equivalent Factor Per Unit Area. Forest Inventory and Planning 2022, 47, 67–73. [Google Scholar] [CrossRef]
- Lu, R.; Yin, H.; Zhu, L.; Zou, Z.; Tian, K. Value Assessment of Ecosystem Services in Qinling-Daba Mountain Based on Equivalence Factor Method. Journal of Henan University(Natural Science) 2022, 52, 379–391. [Google Scholar] [CrossRef]
- Shang, Y.; Wang, D.; Liu, S.; Li, H. Spatial-Temporal Variation and Mechanisms Causing Spatial Differentiation of Ecosystem Services in Ecologically Fragile Regions Based on Value Evaluation: A Case Study of Western Jilin, China. Land 2022, 11, 629. [Google Scholar] [CrossRef]
- Zheng, H.; Li, H. Spatial–temporal evolution characteristics of land use and habitat quality in Shandong Province, China. Scientific Reports 2022, 12, 15422. [Google Scholar] [CrossRef] [PubMed]
- Tan, Y.; Jiang, Y.; Zhou, S. Spatio-temporal Evolution of Ecosystem Service Value in Tourist Cities: Taking Guilin City of Guangxi as an Example, in China. Journal of Guangxi Normal University(Natural Science Edition) 2024, 1–19. [Google Scholar] [CrossRef]
- Fan, X.; Gao, J.; Wen, W. Exploratory Study on Eco-Assets Transferring and the Valuating Models. Research of Environmental Sciences 2007, 160–164. [Google Scholar] [CrossRef]
- Zhang, Y.; Mao, X.; Wei, X.; Zhang, Z.; Tang, W.; Zhou, H.; Ma, J.; Yin, X.; Tong, L. Wetland value and its radiation pattern of the Huangshui National Wetland Park. Acta Ecologica Sinica 2022, 42, 569–580. [Google Scholar] [CrossRef]
- Chen, L.; Mou, Z.; Qin, H.; Su, Q. Study on Ecological Service Function and Its Radiation Effect of Wetland Ecosystem. Environmental Science & Technology 2017, 40, 179–186. [Google Scholar] [CrossRef]
- Ma, Z.; Wang, X.; Wang, X.; Ding, Q.; Qu, H. Present Situationand Dynamic Analysis of Land Desertification in Jiuquan City, Gansu Province. Chinese Journal of Agricultural Resources and Regional Planning 2018, 39, 141–147. [Google Scholar] [CrossRef]
- Qiu, S.; Yu, Q.; Liu, H.; Wang, H.; Li, S.; Yue, D. The optimization of ecological spatial network in Jiuquan City based on the evaluation of ecological environment quality. Journal of Nanjing Forestry University(Natural Sciences Edition) 2024, 48, 199–208. [Google Scholar] [CrossRef]
- Zhang, J. Assessment of Contamination, Source Analysis and Ecological Risk for Heavy Metals in Beida River Sediments of Jiuquan City. Water Purification Technology 2024, 43, 151–157+181. [Google Scholar] [CrossRef]
- Liang, Y. Temporal and spatial changes of Ecosystem Service Value in Agro-pastoral Ecotone of Gansu Province. master, Gansu Agricultural University, Lanzhou, 2023.






| Type of service | Function Type | Value of ecosystem services | ||||
| Cropland | Woodland | Grassland | Waters | Unused land | ||
| supply service | Food Production | 1.105 | 0.2525 | 0.2333 | 0.4367 | 0.005 |
| Raw material production | 0.245 | 0.58 | 0.3433 | 0.2433 | 0.03 | |
| Water supply | -1.305 | 0.3 | 0.19 | 4.3467 | 0.01 | |
| Regulatory services | Gas regulation | 0.89 | 1.9075 | 1.2067 | 0.95 | 0.065 |
| Climate regulation | 0.465 | 5.7075 | 3.19 | 2.1433 | 0.05 | |
| Purification of the environment | 0.135 | 1.6725 | 1.0533 | 3.1033 | 0.205 | |
| Hydrology | 1.495 | 3.735 | 2.3367 | 44.5333 | 0.12 | |
| Support Services | Soil conservation | 0.52 | 2.3225 | 1.47 | 1.08 | 0.075 |
| Maintaining nutrient cycles | 0.155 | 0.1775 | 0.1133 | 0.0833 | 0.005 | |
| Biodiversity | 0.17 | 2.115 | 1.3367 | 3.4767 | 0.07 | |
| cultural service | Aesthetic landscape | 0.075 | 0.9275 | 0.59 | 2.2367 | 0.03 |
| Year | Total ESV | ||||
| Cropland | Woodland | Grassland | Waters | Unused land | |
| 2005 | 141056.65 | 701.19 | 2808253.23 | 833986.74 | 1252346.50 |
| 2010 | 153077.60 | 673.71 | 3002341.65 | 811101.69 | 1171312.89 |
| 2015 | 188564.52 | 735.92 | 3371700.66 | 860101.89 | 1252853.17 |
| 2020 | 186213.98 | 735.08 | 3245006.25 | 785758.72 | 1204250.09 |
| Type of service | Function Type | 2005 | 2010 | 2015 | 2020 | ||||
| ESV/CNY billion | Percentage/% | ESV/CNY billion | Per-centage/% | ESV/CNY billion | Percentage/% | ESV/CNY billion | Percentage/% | ||
| supply service | Food Production |
10.90 | 2.63% | 11.54 | 2.24% | 13.34 | 2.35% | 12.94 | 2.39% |
| Raw material production | 14.84 | 2.95% | 15.09 | 2.94% | 16.75 | 2.95% | 16.13 | 2.97% | |
| Water supply | 7.43 | 1.48% | 7.06 | 1.37% | 6.93 | 1.22% | 6.22 | 1.15% | |
| Regulatory services | Gas regulation |
44.78 | 8.89% | 46.17 | 8.98% | 51.53 | 9.08% | 49.63 | 9.15% |
| Climate regulation |
88.21 | 17.52% | 92.80 | 18.06% | 103.77 | 18.29% | 99.77 | 18.40% | |
| Purification of the environment |
67.75 | 13.45% | 66.87 | 13.01% | 72.97 | 12.86% | 69.99 | 12.91% | |
| Hydrology | 141.65 | 28.12% | 142.77 | 27.78% | 156.22 | 27.53% | 147.52 | 27.21% | |
| Support Services | Soil conservation |
51.65 | 10.26% | 53.22 | 10.36% | 59.19 | 10.43% | 56.94 | 10.50% |
| Maintaining nutrient cycles |
4.24 | 0.84% | 4.41 | 0.86% | 4.96 | 0.87% | 4.79 | 0.88% | |
| Biodiversity | 49.54 | 9.84% | 50.77 | 9.88% | 56.14 | 9.89% | 53.80 | 9.92% | |
| cultural service | Aesthetic landscape |
22.63 | 4.49% | 23.16 | 4.51% | 25.58 | 4.51% | 24.47 | 4.51% |
| Type of service | Function Type | Value of ecosystem services | ||||
| Cropland | Woodland | Grassland | Waters | Unused land | ||
| supply service | Food Production | 52092.77 | 9.42 | 62757.29 | 5478.57 | 9054.51 |
| Raw material production | 11549.98 | 21.64 | 92347.09 | 3052.29 | 54327.07 | |
| Water supply | -61521.33 | 11.20 | 51109.66 | 54531.01 | 18109.02 | |
| Regulatory services | Gas regulation | 41957.07 | 71.19 | 324600.15 | 11918.11 | 117708.66 |
| Climate regulation | 21921.39 | 213.00 | 858104.33 | 26888.52 | 90545.12 | |
| Purification of the environment | 6364.28 | 62.42 | 283335.83 | 38932.09 | 371234.99 | |
| Hydrology | 70478.45 | 139.38 | 628568.14 | 558687.29 | 217308.29 | |
| Support Services | Soil conservation | 24514.24 | 86.67 | 395427.39 | 13549.01 | 135817.68 |
| Maintaining nutrient cycles | 7307.13 | 6.62 | 30477.50 | 1045.03 | 9054.51 | |
| Biodiversity | 8014.27 | 78.93 | 359569.92 | 43616.53 | 126763.17 | |
| cultural service | Aesthetic landscape | 3535.71 | 34.61 | 158708.95 | 28060.26 | 54327.07 |
| Total | 186213.98 | 735.08 | 3245006.25 | 785758.72 | 1204250.09 | |
| Type of service | Function Type | Value of ecosystem services | ||||||
|
Suzhou District |
Jinta County |
Guazhou County |
Subei County |
Axe County |
Yumen City |
Dunhuang City |
||
| supply service | Food Production | 41626.57 | 35467.42 | 37140.76 | 94195.42 | 47810.58 | 38641.88 | 11950.82 |
| Raw material production | 17489.01 | 27738.81 | 39020.90 | 161881.94 | 80933.30 | 32654.15 | 34802.93 | |
| Water supply | 35306.32 | -17281.73 | -12152.40 | 133109.49 | 102060.36 | -15348.17 | 12864.15 | |
| Regulatory services |
Gas regulation | 60370.66 | 78538.12 | 110806.97 | 516917.66 | 253730.16 | 102197.81 | 88339.51 |
| Climate regulation | 91989.42 | 99517.52 | 169512.04 | 1199167.30 | 566227.67 | 187031.14 | 128495.80 | |
| Purification of the environment |
40628.30 | 128876.34 | 183019.07 | 675030.99 | 373461.88 | 124073.59 | 201637.97 | |
| Hydrology | 129708.52 | 214493.34 | 231103.15 | 1538109.24 | 1134922.27 | 206945.57 | 175842.00 | |
| Support Services |
Soil conservation | 55013.54 | 79236.40 | 119668.30 | 622596.89 | 304019.72 | 110230.28 | 103360.63 |
| Maintaining nutrient cycles | 7922.92 | 8628.23 | 11242.28 | 47082.13 | 22927.15 | 10860.38 | 7455.05 | |
| Biodiversity | 41505.00 | 69434.27 | 104815.74 | 600038.77 | 315472.74 | 94865.12 | 95704.88 | |
| cultural service | Aesthetic landscape | 18609.62 | 31374.87 | 46083.10 | 272630.28 | 149195.61 | 41842.88 | 41652.18 |
| Total | 469557.25 | 756023.58 | 1040259.92 | 5860760.09 | 3350761.44 | 933994.65 | 902105.91 | |
| Type of service | Function Type | Transfer range/km | Transfer characteristics |
| supply service | Food Production | — | Basically no transfer, attenuation |
| Raw material production | — | Basically no transfer, attenuation | |
| Regulatory services | Gas regulation | 102~104 | Atmosphere as transfer medium, shrinking during transfer |
| Climate regulation | 10~103 | Atmosphere as transfer medium, gradually shrinking during transfer | |
| Purification of the environment | 10~102 | Atmosphere and river as transfer medium, diminishing during transfer | |
| Hydrology | 10~102 | Soil and river as transfer medium, gradually shrinking during transfer | |
| Support Services | Soil conservation | 102~103 | Soil and water conservation is gradually declining with soil and vegetation as the medium, and soil formation is basically not transferring and declining. Nutrient cycling irregular transfer by river, atmosphere, soil, basically no attenuation in the transfer |
| Maintaining nutrient cycles Biodiversity |
103 | Transfer irregular, transfer does not occur in the obvious attenuation | |
| cultural service | Aesthetic landscape | — | Basically, no transfer or attenuation occurs |
| City | Value transfers of ecosystem services | Total | |||||
| Gas conditioning | Climate regulation | Hydrological regulation | Environmental purification | Soil conservation |
Maintains biodiversity |
||
| Suzhou→ Akesai | 3.66 | 3.66 | 4.27 | 3.96 | 3.05 | 3.86 | 22.44 |
| Suzhou→ Yumen | 10.70 | 10.70 | 12.49 | 11.60 | 8.92 | 11.30 | 65.71 |
| Suzhou→ Jinta | 27.32 | 27.32 | 31.88 | 29.60 | 22.77 | 28.84 | 167.73 |
| Suzhou→ Dunhuang | 2.60 | 2.60 | 3.03 | 2.81 | 2.17 | 2.74 | 15.95 |
| Suzhou→ Guazhou | 4.49 | 4.49 | 5.24 | 4.87 | 3.74 | 4.74 | 27.58 |
| Suzhou→ Subei | 12.34 | 12.34 | 14.39 | 13.37 | 10.28 | 13.02 | 75.74 |
| Jinta→ Akesai | 4.65 | 4.65 | 5.42 | 5.03 | 3.87 | 4.90 | 28.52 |
| Jinta→ Suzhou | 7.58 | 7.58 | 8.84 | 8.21 | 6.31 | 8.00 | 46.50 |
| Jinta→ Yumen | 16.64 | 16.64 | 19.41 | 18.02 | 13.86 | 17.56 | 102.12 |
| Jinta→ Dunhuang | 3.87 | 3.87 | 4.51 | 4.19 | 3.22 | 4.08 | 23.73 |
| Jinta→ Guazhou | 7.32 | 7.32 | 8.54 | 7.93 | 6.10 | 7.73 | 44.94 |
| Jinta→ Subei | 27.50 | 27.50 | 32.08 | 29.79 | 22.92 | 29.03 | 168.82 |
| Guazhou→ Akesai | 23.67 | 23.67 | 27.61 | 25.64 | 19.72 | 24.98 | 145.30 |
| Guazhou→ Suzhou | 0.25 | 0.25 | 0.29 | 0.27 | 0.20 | 0.26 | 1.51 |
| Guazhou→ Yumen | 17.28 | 17.28 | 20.16 | 18.72 | 14.40 | 18.24 | 106.08 |
| Guazhou→ Jinta | 5.17 | 5.17 | 6.03 | 5.60 | 4.31 | 5.45 | 31.72 |
| Guazhou→ Dunhuang | 31.71 | 31.71 | 37.00 | 34.35 | 26.43 | 33.47 | 194.67 |
| Guazhou→ Subei | 121.73 | 121.73 | 142.02 | 131.88 | 101.44 | 128.49 | 747.29 |
| Subei→ Akesai | 44.76 | 44.76 | 52.22 | 48.49 | 37.30 | 47.24 | 274.76 |
| Subei→ Yumen | 35.13 | 35.13 | 40.99 | 38.06 | 29.28 | 37.08 | 215.68 |
| Subei→ Dunhuang | 6.19 | 6.19 | 7.23 | 6.71 | 5.16 | 6.54 | 38.02 |
| Subei→ Gua Zhou | 110.54 | 110.54 | 128.96 | 119.75 | 92.11 | 116.68 | 678.58 |
| Akesai→ Yumen | 0.04 | 0.04 | 0.05 | 0.05 | 0.04 | 0.05 | 0.27 |
| Akesai→ Dunhuang | 10.82 | 10.82 | 12.62 | 11.72 | 9.02 | 11.42 | 66.42 |
| Akesai→Guazhou | 1.85 | 1.85 | 2.16 | 2.01 | 1.54 | 1.95 | 11.37 |
| Akesai→Subei | 60.39 | 60.39 | 70.45 | 65.42 | 50.32 | 63.74 | 370.72 |
| Yumen→Akesai | 12.24 | 12.24 | 14.27 | 13.26 | 10.20 | 12.92 | 75.11 |
| Yumen→Suzhou | 2.94 | 2.94 | 3.43 | 3.18 | 2.45 | 3.10 | 18.05 |
| Yumen→ Jinta | 16.29 | 16.29 | 19.01 | 17.65 | 13.58 | 17.20 | 100.02 |
| Yumen→ Dunhuang | 9.84 | 9.84 | 11.48 | 10.66 | 8.20 | 10.38 | 60.39 |
| Yumen→ Guazhou | 26.09 | 26.09 | 30.44 | 28.27 | 21.74 | 27.54 | 160.17 |
| Yumen→ Supei | 75.03 | 75.03 | 87.54 | 81.29 | 62.53 | 79.20 | 460.62 |
| Dunhuang→ Akesai | 44.20 | 44.20 | 51.57 | 47.89 | 36.84 | 46.66 | 271.36 |
| Dunhuang→ Suzhou | 0.20 | 0.20 | 0.23 | 0.21 | 0.16 | 0.21 | 1.21 |
| Dunhuang→ Yumen | 5.21 | 5.21 | 6.07 | 5.64 | 4.34 | 5.50 | 31.96 |
| Dunhuang→Jinta | 2.88 | 2.88 | 3.37 | 3.13 | 2.40 | 3.04 | 17.71 |
| Dunhuang→Guazhou | 31.13 | 31.13 | 36.32 | 33.73 | 25.94 | 32.86 | 191.13 |
| Dunhuang→ Subei | 27.83 | 27.83 | 32.47 | 30.15 | 23.19 | 29.37 | 170.83 |
| Total | 852.07 | 852.07 | 994.08 | 923.07 | 710.06 | 899.40 | 5230.75 |
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