DOE OSTI · 2377404
Nuclear-Driven Chemical Conversion Pathways
Abstract
The purpose of this work is to explore the possibilities of using coal as a carbon resource by converting it to fuels and chemicals with heat from a nuclear power plant. While many previous studies have focused on coal gasification, this process requires combusting a portion of the coal and producing heat. By employing pyrolysis over gasification, the energy content in the coal can be preserved. Pyrolysis of coal also results in a large portion of solid char, which can be converted to activated carbon and sold to various markets. This model uses hydrogen produced by nuclear-supplied heat and electricity to convert the syngas stream to methanol, which has many pathways for further processing into fuels, chemicals, and plastics. Specifically, this project focuses on non-fuel products for methanol pathways. The CO2 captured within the refinery model can also be combined with hydrogen to produce more chemical products and reduce CO2 emissions.
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Choi, Byung-Hee, Worsham, Elizabeth Kirkpatrick, Knighton, Todd, Herrera de Reyes, Maria Alejandra, Larsen, Levi Morin, Bryan, Haydn C, Reyes Molina, Eliezer Antonio, Boardman, Richard D. 2023-12-15. Nuclear-Driven Chemical Conversion Pathways. https://www.osti.gov/biblio/2377404
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