LAPSE:2018.0393
Preprint
LAPSE:2018.0393
Biomass-Gas-and-Nuclear-To-Liquids (BGNTL) Processes Part I: Model Development and Simulation
James Alexander Scott, Thomas Alan Adams II*
August 7, 2018
New polygeneration processes for the co-production of liquid fuels (Fischer-Tropsch liquids, methanol, and dimethyl ether) and electricity are presented. The processes use a combination of biomass, natural gas, and nuclear energy as primary energy feeds. Chemical process models were created and used to simulate candidate versions of the process, using combinations of models ranging from complex multi- scale models to standard process flowsheet models. The simulation results are presented for an Ontario, Canada case study to obtain key metrics such as efficiency and product conversions. Sample Aspen Plus files are provided in the supplementary material to be used by others.
Suggested Citation
Scott JA, Adams TA II. Biomass-Gas-and-Nuclear-To-Liquids (BGNTL) Processes Part I: Model Development and Simulation. (2018). LAPSE:2018.0393
Author Affiliations
Scott JA: McMaster University
Adams TA II*: McMaster University [ORCID] [Google Scholar]
* Corresponding Author
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Journal Name
Canadian Journal of Chemical Engineering
Volume
96
First Page
1853
Last Page
1871
Year
2018
Publication Date
2018-08-07
Published Version
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Original Submission
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Preprint

LAPSE:2018.0393
This Record
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doi:10.1002/cjce.23231
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Model

LAPSE:2018.0394
Aspen Plus Simulation of Biomass-Ga...
Conference Presentation

LAPSE:2018.0395
Combining Biomass, Natural Gas, Car...
Conference Presentation

LAPSE:2018.0397
Combining Biomass, Natural Gas, Car...
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Aug 7, 2018
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CC BY-NC-ND 4.0
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[v1] (Original Submission)
Aug 7, 2018
 
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Aug 7, 2018
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https://psecommunity.org/LAPSE:2018.0393
 
Original Submitter
Thomas A. Adams II
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Directly Related to This Work
Aspen Plus Simulation of Biomass-Gas-and-Nuclear-To-Liquids (BGNTL) Processes (Using CuCl Route)
 
Successor Works
Combining Biomass, Natural Gas, Carbonless Heat to produce liquid fuels
Combining Biomass, Natural Gas, Carbonless Heat to produce liquid fuels