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  TOPS: Technology Options for Coupled Underground Coal Gasification and CO2 Capture and Storage

Durucan, S., Korre, A., Shi, J.-Q., Idiens, M., Stańczyk, K., Kapusta, K., Rogut-Dabrowska, A., Kempka, T., Wolf, K.-H., Younger, P., Zavsek, S., Poulsen, N. E., Bojda, D., Franzsen, S., Muresan, M., Gao, J., Beath, A., Mastalerz, M. (2014): TOPS: Technology Options for Coupled Underground Coal Gasification and CO2 Capture and Storage. - Energy Procedia, 63, 5827-5835.
https://doi.org/10.1016/j.egypro.2014.11.616

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 Creators:
Durucan, Sevket1, Author
Korre, Anna1, Author
Shi, Ji-Quan1, Author
Idiens, Matthew1, Author
Stańczyk, Krzysztof1, Author
Kapusta, Krzysztof1, Author
Rogut-Dabrowska, Anna1, Author
Kempka, T.2, Author              
Wolf, Karl-Heinz1, Author
Younger, Paul1, Author
Zavsek, Simon1, Author
Poulsen, Niels Erik1, Author
Bojda, Dariusz1, Author
Franzsen, Sebastian1, Author
Muresan, Mihai1, Author
Gao, Jianliang1, Author
Beath, Andrew1, Author
Mastalerz, Maria1, Author
Affiliations:
1External Organizations, ou_persistent22              
25.3 Hydrogeology, 5.0 Earth Surface Processes, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146047              

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Free keywords: Underground coal gasification; CO2 capture and storage; site selection criteria; environmental impacts; life cycle assessment.
 Abstract: The TOPS project takes a radical and holistic approach to coupled UCG-CCS, and thus the site selection criteria for the coupled processes, considering both geological, reservoir and process engineering aspects and different end-uses of the produced synthetic gas in order to optimise the whole value chain. In particular, the experimental research carried out utilises a newly constructed high pressure gasification reactor investigating several prospective options of UCG technology implementations. Integrated research addresses field based technology knowledge gaps, such as cavity progression and geomechanics, potential groundwater contamination and subsidence impacts, together with research into process engineering solutions in order to assess the role/impact of site specific factors and selected reagents on the operability of given CO2 emission mitigation options. Ultimately, research aims to minimise the need for on-site CO2 storage capacity as well as maximising the economic yield of UCG through value added end products.

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 Dates: 2014
 Publication Status: Finally published
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Title: Energy Procedia
Source Genre: Journal, Scopus, oa
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Pages: - Volume / Issue: 63 Sequence Number: - Start / End Page: 5827 - 5835 Identifier: CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals2_134