Author:
Mahzari Pedram,Mitchell Thomas M.,Jones Adrian P.,Westacott Donald,Striolo Alberto
Abstract
AbstractShale gas exploitation has been the game-changer in energy development of the past decade. However, the existing methods of estimating gas in place in deep formations suffer from large uncertainties. Here, we demonstrate, by using novel high-pressure experimental techniques, that the gas in place within deep shale gas reservoirs can be up to five times higher than that estimated by implementing industry standard approaches. We show that the error between our laboratory approach and the standard desorption test is higher for gases with heavier compositions, which are of strongest commercial interests. The proposed instrumentation is reliable for deep formations and, provides quick assessment of the potential for the gas in place, which could be useful for assessing hydrocarbon reservoirs, and the potential for geological carbon sequestration of a given formation.
Funder
Horizon 2020 Framework Programme
H2020 European Institute of Innovation and Technology
Publisher
Springer Science and Business Media LLC
Reference28 articles.
1. Thomas, M., Partridge, T., Harthorn, B. H. & Pidgeon, N. Deliberating the perceived risks, benefits, and societal implications of shale gas and oil extraction by hydraulic fracturing in the US and UK. Nat. Energy 2, 17054 (2017).
2. Melikoglu, M. Shale gas: Analysis of it role in the global energy market. Renew. Sustain. Energy Rev. 37, 460–468 (2014).
3. Le, M.-T. An assessment of the potential for the development of the shale gas industry in countries outside of North America. Heliyon 4, e00516 (2018).
4. Kama, K. & Kuchler, M. Geo-metrics and geo-politics: Controversies in estimating European shale gas resources. In Political Geology (eds Bobbette, A. & Donovan, A.) (Palgrave Macmillan, 2019).
5. Cooper, J., Stamford, L. & Azapagic, A. Shale gas: A review of the economic, environmental, and social sustainability. Energy Technol. 4, 772–792 (2016).
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