Open Access
| Issue |
E3S Web Conf.
Volume 707, 2026
2026 2nd International Conference on Energy Engineering and Pollution Control (EEPC 2026)
|
|
|---|---|---|
| Article Number | 01005 | |
| Number of page(s) | 11 | |
| Section | Energy Engineering and Environmental Pollution Control | |
| DOI | https://doi.org/10.1051/e3sconf/202670701005 | |
| Published online | 27 April 2026 | |
- Rui Sun, Shaohui Chen, Su H.0 Climate Dynamics of the Spatiotemporal Changes of Vegetation NDVI in Northern China from 1982 to 2015[J].Remote Sensing,2024, 13 (2): 187. [Google Scholar]
- Pingping M, Jing Z, Ming L, et al. Spatial and temporal variations in fractional vegetation cover and its driving factors in the Hulun Lake region[J]. Ecological Indicators, 2022, 135: 108490. [Google Scholar]
- Shifeng C, Qifei Z, Yaning C, et al. Vegetation Change and Eco-Environmental Quality Evaluation in the Loess Plateau of China from 2000 to 2020[J]. Remote Sensing,2023, 15 (2): 424. [Google Scholar]
- ZHAO Donglin, ZHU Shirong. Spatiotemporal variation of vegetation coverage and its influencing factors in the dry-hot valley of Jinsha River during 2010-2021[J]. Chinese Journal of Ecology,2023: 1–11. [Google Scholar]
- Pájaro Á M M, Gastelbondo A O, Egel D a M, et al. Hydrological Modelling and Remote Sensing for Assessing the Impact of Vegetation Cover Changes[J]. Hydrology, 2025, 12 (5): 107. [Google Scholar]
- LI Yuwei, JIA Kun, WEI Xiangqin, et al. Fractional vegetation cover estimation in northern China and its change analysis[J]. Remote Sensing for Natural Resources,2015, 27 (02): 112–117. [Google Scholar]
- GUO Jianxiao, SANG Huiyong, ZHAI Liang. Spatiotemporal variations and driving factors of vegetation coverage on the Qinghai-Tibet Plateau[J]. Chinese Journal of Ecology, 2023, 42 (11): 2665–2674. [Google Scholar]
- ZHENG Zhaoju, ZENG Yuan, ZHAO Yujin, et al. Monitoring and dynamic analysis of fractional vegetation cover in southwestern China over the past 15 years based on MODIS data[J]. Remote Sensing for Natural Resources, 2017, 29 (03): 128–136. [Google Scholar]
- WANG Yi, HAO Lina, XU Qiang, et al. Spatio- temporal variations of vegetation coverage and its geographical factors analysis on the Loess Plateau from 2001 to 2019[J]. Acta Ecologica Sinica, 2023, 43 (06): 2397–2407. [Google Scholar]
- ZHANG Liang, DING Ming-jun, ZHANG Hua-min, et al. Spatiotemporal Variation of the Vegetation Coverage in Yangtze River Basin during 1982- 2015[J]. Journal of Natural Resources,2018, 33 (12): 2084–2097. [Google Scholar]
- DENG Chen-hui, BAI Hong-ying, GAO Shan, et al. Spatial-temporal Variation of the Vegetation Coverage in Qinling Mountains and Its Dual Response to Climate Change and Human Activities[J]. Journal of Natural Resources, 2018, 33 (03): 425–438. [Google Scholar]
- HE Qing-yun, MU Feng-yun, LI Qiu-yan, et al. Geography Study on Spatiotemporal Evolution of Fractional Vegetation Coverage and the Driving Forces in Chongqing[J]. Science Technology and Engineering,2021, 21 (28): 11955–11962. [Google Scholar]
- MENG Hao-bin, ZHOU Qi-gang, LI Ming-hui, et al. Topographic Distribution Characteristics of Vegetation Cover Change in the Three Gorges Reservoir Area Based on MODIS Pixel Scale[J]. Resources and Environment in the Yangtze Basin,2020, 29 (08): 1790–1799. [Google Scholar]
- HU Jie, JIANG Chengzhen, YANG Yong, et al. Vegetation coverage change remote sensing monitoring of the middle and lower reaches of the Heihe River[J]. Bulletin of Surveying and Mapping,2021 (10): 34–38. [Google Scholar]
- TANG Yongkang, GUO Chunyan, SUN Xiaolong, et al. Vegetation Change Characteristics and Influencing Factors of Ejina Populus Euphratica Forest from 1977 to 2020[J]. Desert and Oasis Meteorology,2023, 17 (04): 152–159. [Google Scholar]
- ZHAO Yu. Vegetation Cover Change and Response to Groundwater Depth in Ejina Area[J]. Yellow River,2018, 40 (12): 81–84+91. [Google Scholar]
- Li X, Jiang X, Lei Y, et al.Exploring ecological evolution and driving forces in arid desert oases: A case study of the Ejina Oasis in China[J]. Quaternary International,2025, 727: 109764–109764. [Google Scholar]
- WANG Chuan, ZHANG Yong-yong, ZHAO Wen-zhi. Eco-hydrological restoration effect of ecological water conveyance in Ejina oasis, lower reaches of the Heihe River in recent 20 years [J]. Chinese Journal of Ecology,2022, 41 (11): 2180–2187. [Google Scholar]
- XU Yong, SUN Xiaoyi, TANG Qing. Human activity intensity of land surface:Concept, method and application in China [J]. Acta Geographica Sinica,2015, 70 (07): 1068–1079. [Google Scholar]
- SU Shuo, GONG Zhaoning, ZHANG Wenjing, et al. Change of vegetation coverage and assessment of ecological environment quality in Beiyun River Basin [J]. Acta Scientiae Circumstantiae,2022, 42 (01): 19–27. [Google Scholar]
- XU Chengdong, WANG Jinfeng. Geodetector: Principle and prospective[J]. Acta Geographica Sinica,2017, 72 (01): 116–134. [Google Scholar]
- YANG Yong, LI Ruihong, LIU Hang, et al. Spatiotemporal evolution and driving forces of habitat quality in agroforestry ecotone of Northeast China [J]. Chinese Journal of Ecology,2023: 1–12. [Google Scholar]
- DONG Guotao, LIAN Yaokang, FAN Zhengjun, et al. Vegetation Changes of Ejina Oasis in the Lower Reaches of Heihe River Before and After Ecological Scheduling for Water Resources [J]. Yellow River,2019, 41 (07): 5–9. [Google Scholar]
- Shi X, Jiang X, Liu Y, et al. Evaluation of the Evolution of the Ecological Security of Oases in Arid Regions and Its Driving Forces: A Case Study of Ejina Oasis in China[J]. Sustainability,2024, 16 (5): 1942. [Google Scholar]
- HU Shun, LING Kang, WANG Junyou, et al. Co- evolution mechanism of groundwater and wetland ecosystem in a typical inland watershed in northwest China [J]. Hydrogeology & Engineering Geology,2022, 49 (05): 22–31. [Google Scholar]
- ZHU Wenquan, PAN Yaozhong, ZHANG Jinshui. ESTIMATION OF NET PRIMARY PRODUCTIVITY OF CHINESE TERRESTRIAL VEGETATION BASED ON REMOTE SENSING [J]. Chinese Journal of Plant Ecology,2007, 31 (03): 413–424. [Google Scholar]
- YAN Zhiyuan, ZHANG Shengwei, WANG Yixuan. Spatiotemporal dynamics of fractional vegetation cover and climate response in Inner Mongolia during 1982-2021 based on GEE [J]. Transactions of the Chinese Society of Agricultural Engineering,2023, 39 (15): 94–102. [Google Scholar]
- LIU Chun-fang, NI Bo-wen, LIAN Hu-gang, et al. Evolution of resilience in the ecological network across arid inland river basins and its improvement strategies:A case study of Shiyang River Basin [J]. Journal of Natural Resources,2024, 39 (09): 2087–2101. [Google Scholar]
- Li Xiaoqiang. Integrated regulation of the Heihe River to boost ecological recovery of the basin: practice and future prospect [J]. China Water Resources,2023 (01): 41–44. [Google Scholar]
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