LAPSE:2023.25116
Published Article

LAPSE:2023.25116
Coupling Chemical Heat Pump with Nuclear Reactor for Temperature Amplification by Delivering Process Heat and Electricity: A Techno-Economic Analysis
March 28, 2023
Abstract
The energy economy is continually evolving in response to socio-political factors in the nature of primary energy sources, their conversions to useful forms, such as electricity and heat, and their utilization in different sectors. Nuclear energy has a crucial role to play in the evolution of energy economy due to its clean and non-carbon-emitting characteristics. A techno-economic analysis was undertaken to establish the viability of selling heat along with electricity for an advanced 100 MWth small modular reactor (SMR) and four nuclear hybrid energy system (NHES) configurations featuring the SMR paired with chemical heat pump (ChHP) systems providing a thermal output ranging from 1 to 50 MWth. Net present value, payback period, discounted cash flow rate of return, and levelized cost of energy were evaluated for these systems for different regions of U.S. reflecting a range of electricity and thermal energy costs. The analysis indicated that selling heat to high temperature industrial processes showed profitable outcomes compared to the sale of only electricity. Higher carbon taxes improved the economic parameters of the NHES alternatives significantly. Providing heat to high temperature industries could be very beneficial, helping to cut down the greenhouse gases emission by reducing the fossil fuel consumption.
The energy economy is continually evolving in response to socio-political factors in the nature of primary energy sources, their conversions to useful forms, such as electricity and heat, and their utilization in different sectors. Nuclear energy has a crucial role to play in the evolution of energy economy due to its clean and non-carbon-emitting characteristics. A techno-economic analysis was undertaken to establish the viability of selling heat along with electricity for an advanced 100 MWth small modular reactor (SMR) and four nuclear hybrid energy system (NHES) configurations featuring the SMR paired with chemical heat pump (ChHP) systems providing a thermal output ranging from 1 to 50 MWth. Net present value, payback period, discounted cash flow rate of return, and levelized cost of energy were evaluated for these systems for different regions of U.S. reflecting a range of electricity and thermal energy costs. The analysis indicated that selling heat to high temperature industrial processes showed profitable outcomes compared to the sale of only electricity. Higher carbon taxes improved the economic parameters of the NHES alternatives significantly. Providing heat to high temperature industries could be very beneficial, helping to cut down the greenhouse gases emission by reducing the fossil fuel consumption.
Record ID
Keywords
chemical heat pump, industrial thermal processes, nuclear energy, techno-economic, temperature boost
Subject
Suggested Citation
Gupta A, Sabharwall P, Armatis PD, Fronk BM, Utgikar V. Coupling Chemical Heat Pump with Nuclear Reactor for Temperature Amplification by Delivering Process Heat and Electricity: A Techno-Economic Analysis. (2023). LAPSE:2023.25116
Author Affiliations
Gupta A: Department of Chemical and Biological Engineering, University of Idaho, Moscow, ID 83844, USA; Idaho National Laboratory, Idaho Falls, ID 83415, USA
Sabharwall P: Idaho National Laboratory, Idaho Falls, ID 83415, USA
Armatis PD: School of Mechanical, Industrial and Manufacturing Engineering, Oregon State University, Corvallis, OR 97331, USA
Fronk BM: School of Mechanical, Industrial and Manufacturing Engineering, Oregon State University, Corvallis, OR 97331, USA
Utgikar V: Department of Chemical and Biological Engineering, University of Idaho, Moscow, ID 83844, USA [ORCID]
Sabharwall P: Idaho National Laboratory, Idaho Falls, ID 83415, USA
Armatis PD: School of Mechanical, Industrial and Manufacturing Engineering, Oregon State University, Corvallis, OR 97331, USA
Fronk BM: School of Mechanical, Industrial and Manufacturing Engineering, Oregon State University, Corvallis, OR 97331, USA
Utgikar V: Department of Chemical and Biological Engineering, University of Idaho, Moscow, ID 83844, USA [ORCID]
Journal Name
Energies
Volume
15
Issue
16
First Page
5873
Year
2022
Publication Date
2022-08-13
ISSN
1996-1073
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Original Submission
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PII: en15165873, Publication Type: Journal Article
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LAPSE:2023.25116
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https://doi.org/10.3390/en15165873
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Mar 28, 2023
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