Bottlenecks and Technological Developments for Geologic Storage of CO2

There is global consensus that geologic storage is an underpinning technology for large-scale reduction of CO 2 emissions. Although CO 2 flooding and storage has been employed to promote crude oil recovery, storage of CO 2 in aquifers has proven to be the main and fundamental technical route for lar...

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Veröffentlicht in:Chemistry and technology of fuels and oils 2023-03, Vol.59 (1), p.213-218
Hauptverfasser: Ligen, Tang, Guosheng, Ding, Shijie, Song, Yichen, Ding, Xirui, Zheng, Guangzhen, Chu, Xiaolei, Wang, Rong, Zhong, Qingying, Bao, Gen, Pei, Zhengding, Xie, Ye, Tao, Wenhua, Bai, Shasha, Sun
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Sprache:eng
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Zusammenfassung:There is global consensus that geologic storage is an underpinning technology for large-scale reduction of CO 2 emissions. Although CO 2 flooding and storage has been employed to promote crude oil recovery, storage of CO 2 in aquifers has proven to be the main and fundamental technical route for large-scale geologic storage due to convenient site selection, easy source-sink matching, huge implementation scale, and low storage costs. In view of the deposition characteristics of terrestrial aquifers in China and the practices of underground storage of natural gas, this study identifies three bottlenecks hindering large-scale aquifer storage of CO 2 in China (i.e., aquifer storage capacity, storage costs, and long-term safety), and proposes five key fields where technological breakthrough is needed (i.e., assessment of storage capacity, low-concentration CO 2 injection, large-scale high-speed CO 2 injection, low-cost engineering support, and long-term safety monitoring) to overcome key obstacles in meeting China’s “3060” goals – carbon peaking by 2030 and carbon neutrality by 2060.
ISSN:0009-3092
1573-8310
DOI:10.1007/s10553-023-01518-4