Design and Implementation of an Intermediate-Scale Test to Study the Effects of Soil Heterogeneity on Methane Gas Migration
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-43922-3_75
Reference8 articles.
1. Deepagoda, T. C., Smits, K. M., & Oldenburg, C. M. (2016). Effect of subsurface soil moisture variability and atmospheric conditions on methane gas migration in shallow subsurface. International Journal of Greenhouse Gas Control, 55, 105–117.
2. Ilie, A. M. C., Goebel, C., & Illangasekare, T. H. (2020). Performance assessment of soil moisture sensors under controlled conditions in laboratory setting and recommendations for field deployment. In MDPI in 5th International Electronic Conference on Water Sciences. https://doi.org/10.3390/ECWS-5-08041
3. Ilie, A. M. C., Illangasekare, T. H., Soga, K., & Whalley, W. R. (2021). A laboratory study of the effect of soil-water dynamics on the migration of gases from subsurface sources. EGU General Assembly 2021. https://doi.org/10.5194/egusphere-egu21-6101
4. Ilie, A. M. C., & Vaccaro, C. (2020). Atmospheric and soil methane concentrations integrating a new gas detection technology. MDPI Proceedings Journal. https://doi.org/10.3390/ASEC2020-07564
5. Intergovernmental Panel on Climate Change. (2015). Climate change 2014: Mitigation of climate change. Cambridge University Press.
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