LAPSE:2018.0127
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LAPSE:2018.0127
Dynamic modeling of integrated mixed reforming and carbonless heat systems
Leila Hoseinzade, Thomas A. Adams II
June 12, 2018
In the previous study, a dynamic and two-dimensional model for a steam methane reforming process integrated with nuclear heat production was developed. It was shown that the integrated high temperature gas-cooled reactor (HTGR)/steam methane reforming (SMR) is an efficient process for applications such as hydrogen production. In this study, it is demonstrated that combining nuclear heat with the mix of steam and dry reforming process can be a promising option to achieve certain desired H2/CO ratios for Fischer-Tropsch or other downstream energy conversion processes. The model developed in the previous study is extended to the combined steam and dry reforming process. The resulting model was validated using reported experimental data at non-equilibrium and equilibrium conditions. The dynamic and steady state performance of the integrated mixed reforming of methane and nuclear heat system was studied and it was found that in addition to desired H2/CO ratios, higher methane conversion and lower CO2 emissions can be achieved using the proposed design compared to HTGR/SMR system
Keywords
Carbonless Heat, Dry Reforming, Dynamic Modelling, Integrated Systems, Steam Reforming, Syngas
Suggested Citation
Hoseinzade L, Adams TA II. Dynamic modeling of integrated mixed reforming and carbonless heat systems. (2018). LAPSE:2018.0127
Author Affiliations
Hoseinzade L: McMaster University
Adams TA II: McMaster University [ORCID] [Google Scholar]
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Journal Name
Industrial and Engineering Chemistry Research
Volume
57
Issue
17
First Page
6013
Last Page
6023
Year
2017
Publication Date
2017-12-26
Version Comments
Original Submission
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LAPSE:2018.0126
Biomass-Gas-and-Nuclear-To-Liquids...
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Thomas A. Adams II
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