Open Access
Issue
E3S Web Conf.
Volume 715, 2026
2026 2nd International Conference on Eco-environmental Protection, Environmental Monitoring and Remediation (EPEMR 2026)
Article Number 01009
Number of page(s) 5
Section Environmental Monitoring, Assessment and Remediation
DOI https://doi.org/10.1051/e3sconf/202671501009
Published online 03 June 2026
  1. Chen Z, Nie Z, Xu K, et al. Mining Rents, Climate Extremes, and Water Stress in China: An Econometric Assessment of Emissions and Water-Related Climate Vulnerability. Environmental Research, 2026: 123873. [Google Scholar]
  2. Wang P, Gao W, Wang F, et al. Carbon capture, utilization, and storage (CCUS) project optimization: multi-criteria deployment prioritization for China’s coal chemical industry. International Journal of Greenhouse Gas Control, 2026, 152: 104635. [Google Scholar]
  3. Emmanuel M. Advancing geological carbon storage: exploring novel approaches for enhanced CO2 sequestration. Carbonates and Evaporites, 2026, 41(2): 41. [Google Scholar]
  4. Wu S, Chen Y, Zhou X, et al. Suitability evaluation of CO2 sequestration in saline aquifers: Insights from regional basin studies. Advances in Geo-Energy Research, 2026, 20(1): 43–55. [Google Scholar]
  5. Wanambwa S, Okere C, Hatzignatiou D. A Review and Outlook on Experimental Advances and Innovations in Geological CO2 Storage: Insights from Depleted Gas Reservoirs and Saline Aquifers. Energy & Fuels, 2026. [Google Scholar]
  6. He C, Mao N, Zhang Z, et al. Suitability Evaluation of CO2 Geological Storage in the Jianghan Basin Using Choquet Fuzzy Integral and Multi-Source Indices. Processes, 2026, 14(3): 395. [Google Scholar]
  7. Xin H, Zhang R, Zhang L, et al. Efficient estimation of plant species diversity in desert regions using UAV-based quadrats and advanced machine learning techniques. Journal of Environmental Management, 2025, 385: 125614. [Google Scholar]
  8. Lu Qingfeng. Geochemistry and enrichment genesis of high alkali high inertinite coals from the eastern Junggar Coalfield, Xinjiang. Beijing: China University of Mining and Technology, 2023: 81–87. [Google Scholar]
  9. Yun Jian, Song Huibo, Li Youyi, et al. Occurrence regularity and forecast of favorable development zone of the lower Jurassic coal measure gas in Shuixigou mining area, southern Junggar Basin. Coal geology of China, 2024, 36(11): 10–21. [Google Scholar]
  10. Wang Yutao, Liu Ru, Wang Fei, et al. Strategy of CBM industrialization in Junggar Basin China. Petroleum Exploration, 2015, 020(5): 81–88. [Google Scholar]
  11. Nie Chaofei, Chen Huiwen, Peng Shiyao, et al. Strategy of clean and efficient use of China’s modern coal chemical industry. Resources & Industries, 2024, 26(3):6–20. [Google Scholar]
  12. Zhang Xiaojuan. Study on CO2 Geological Utilization and Storage capacity in Junggar Basin. Beijing: China University of Geosciences, 2020. [Google Scholar]
  13. Mi Z, Wang F, Yang Z, et al. Numerical simulation of the influence of geological CO2 storage on the hydrodynamic field of a reservoir. Geofluids, 2019: 1853274. [Google Scholar]
  14. Yang G, Ma X, Wen D, et al. Numerical study of CO2 geological storage combined with saline water recovery and optimization of injection-production schemes in eastern Junggar Basin of China. Int. J. Greenh. Gas Control, 2021, 110: 103404. [Google Scholar]
  15. Ma X, Wen D, Yang G, et al. Potential assessment of CO2 geological storage based on injection scenario simulation: a case study in eastern Junggar Basin. J. Groundw. Sci. Eng. 2021; 9(4): 279–91. [Google Scholar]
  16. Li Q, Wei Y, Liu G. CO2-EWR: a cleaner solution for coal chemical industry in China. J. Cleaner Prod. 2015, 103: 330–37. [Google Scholar]
  17. Ma X, Li X, Yang G, et al. Study on field-scale of CO2 geological storage combined with saline water recovery: a case study of east Junggar Basin of Xinjiang. Energy Procedia, 2018, 154: 36–41. [Google Scholar]
  18. Yang Z, Xu T, Wang F, et al. A study on the CO2-enhanced water recovery efficiency and reservoir pressure control strategies. Geofluids, 2019: 6053756 [Google Scholar]
  19. Chen L, Liu D, Agarwal R. Numerical simulation of enhancement in CO2 sequestration with various water production schemes under multiple well scenarios. J. Cleaner Prod., 2018, 184: 12–20. [Google Scholar]
  20. Liu D, Agarwal R, Li Y. Numerical simulation and optimization of CO2-enhanced water recovery by employing a genetic algorithm. J. Cleaner Prod. 2016; 133: 994–1007. [Google Scholar]
  21. Li Q, Wei Y, Liu G. Combination of CO2 geological storage with deep saline water recovery in western China: insights from numerical analyses. Applied Energy, 2014, 116: 101–10. [Google Scholar]
  22. Weijermars R. Concurrent challenges in practical operations and modeling of geological carbon-dioxide sequestration: Review of the Gorgon project and FluidFlower benchmark study. Energy Strategy Reviews, 2024, 56: 101586. [Google Scholar]
  23. Li Qi, Wei Niya, Liu Guizhen. Assessment of CO2 storage capacity and saline water development in sedimentary basins of China. South-to-North Water Transfers and Water Science & Technology, 2013, 11(4): 93–96. [Google Scholar]
  24. Li P, Fan Z, Zhao L, et al. Underestimated risks for application of hydraulic fracturing into hydrate exploitation: In the perspective of formation deformation and sand production. Marine and Petroleum Geology, 2025, 177: 107393. [Google Scholar]
  25. Hao Y, Wang C, Tao S, et al. Effect of sand production on physical properties and fracturing development of gas hydrate reservoir. Energy, 2024, 288: 129838. [Google Scholar]
  26. Yu L, Zhang L, Zhang R, et al. Assessment of natural gas production from hydrate-bearing sediments with unconsolidated argillaceous siltstones via a controlled sandout method. Energy, 2018, 160: 654–667. [Google Scholar]
  27. Papamichos E, Vardoulakis I, Tronvoll J, et al. Volumetric sand production model and experiment. International journal for numerical and analytical methods in geomechanics, 2001, 25(8): 789–808. [Google Scholar]
  28. Pham S. Estimation of sand production rate using geomechanical and hydromechanical models. Advances in Materials Science and Engineering, 2017, 2017(1): 2195404. [Google Scholar]
  29. Kakonitis P, Gravanis E, Sarris E N. On the stress dependency of sand production coefficient in hydro-dynamical sanding criteria. International Journal of Rock Mechanics and Mining Sciences, 2023, 169: 105443. [Google Scholar]

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