TY - GEN
T1 - Design for Carbon Conversion Product Pathways with Nuclear Power Plant Integration
AU - Worsham, Elizabeth K.
AU - Todd Knighton, L.
AU - Hanna, Botros N.
AU - Jenson, William D.
N1 - Publisher Copyright:
© PCC 2022.All rights reserved
PY - 2022
Y1 - 2022
N2 - Coal is a globally abundant resource that historically has been used for power generation via combustion. As the power industry replaces coal with cleaner methods of generation, energy-rich coal could be used in other chemical and fuel applications. This study presents a coal utilization option in which coal combustion is replaced with a carbon-free nuclear power plant and the coal is upgraded to valuable products for a variety of markets. Coal is prepared for conversion first by the pyrolysis process, which will optimize solid, liquid, and gaseous products based on the market size and potential product value, maximizing the monetary value of coal. This process is designed using bituminous coal from the Appalachian region as a basis to provide a pathway to preserve or transition coal-related jobs and create new jobs associated with the clean energy transition. Process modeling will be used to determine each component's sensitivities, costs, inputs, and outputs. Advanced and light-water reactors are considerations to supply the heat, steam, and electricity to the process. This paper focuses on the technical and market analysis used to determine the optimal processes and product pathways for the carbon refinery. Product pathways are on activated carbon, formic acid synthesis, and methanol synthesis for further upgrading to marketable chemical and polymer products.
AB - Coal is a globally abundant resource that historically has been used for power generation via combustion. As the power industry replaces coal with cleaner methods of generation, energy-rich coal could be used in other chemical and fuel applications. This study presents a coal utilization option in which coal combustion is replaced with a carbon-free nuclear power plant and the coal is upgraded to valuable products for a variety of markets. Coal is prepared for conversion first by the pyrolysis process, which will optimize solid, liquid, and gaseous products based on the market size and potential product value, maximizing the monetary value of coal. This process is designed using bituminous coal from the Appalachian region as a basis to provide a pathway to preserve or transition coal-related jobs and create new jobs associated with the clean energy transition. Process modeling will be used to determine each component's sensitivities, costs, inputs, and outputs. Advanced and light-water reactors are considerations to supply the heat, steam, and electricity to the process. This paper focuses on the technical and market analysis used to determine the optimal processes and product pathways for the carbon refinery. Product pathways are on activated carbon, formic acid synthesis, and methanol synthesis for further upgrading to marketable chemical and polymer products.
UR - https://www.scopus.com/pages/publications/85160953214
UR - https://www.mendeley.com/catalogue/1b86cd33-c8d1-3142-9c7c-f7b590e18f24/
M3 - Conference contribution
AN - SCOPUS:85160927515
SN - 1890977381
T3 - 39th Annual International Pittsburgh Coal Conference, PCC 2022
BT - 39th Annual International Pittsburgh Coal Conference, PCC 2022
PB - International Pittsburgh Coal Conference
T2 - 39th Annual International Pittsburgh Coal Conference, PCC 2022
Y2 - 19 September 2022 through 22 September 2022
ER -