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Screening and evaluation of biomass upgrading strategies for sustainable transportation fuel production with biomass-derived volatile fatty acids

Biomass conversion to fuels and chemicals is crucial to decarbonization, but choosing an advantageous upgrading pathway out of many options is challenging. Rigorously evaluating all candidate pathways (process simulation, product property testing) requires a prohibitive amount of research effort; ev...

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Autores principales: Miller, Jacob H., Tifft, Stephen M., Wiatrowski, Matthew R., Benavides, Pahola Thathiana, Huq, Nabila A., Christensen, Earl D., Alleman, Teresa, Hays, Cameron, Luecke, Jon, Kneucker, Colin M., Haugen, Stefan J., Sànchez i Nogué, Violeta, Karp, Eric M., Hawkins, Troy R., Singh, Avantika, Vardon, Derek R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9647506/
https://www.ncbi.nlm.nih.gov/pubmed/36388957
http://dx.doi.org/10.1016/j.isci.2022.105384
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author Miller, Jacob H.
Tifft, Stephen M.
Wiatrowski, Matthew R.
Benavides, Pahola Thathiana
Huq, Nabila A.
Christensen, Earl D.
Alleman, Teresa
Hays, Cameron
Luecke, Jon
Kneucker, Colin M.
Haugen, Stefan J.
Sànchez i Nogué, Violeta
Karp, Eric M.
Hawkins, Troy R.
Singh, Avantika
Vardon, Derek R.
author_facet Miller, Jacob H.
Tifft, Stephen M.
Wiatrowski, Matthew R.
Benavides, Pahola Thathiana
Huq, Nabila A.
Christensen, Earl D.
Alleman, Teresa
Hays, Cameron
Luecke, Jon
Kneucker, Colin M.
Haugen, Stefan J.
Sànchez i Nogué, Violeta
Karp, Eric M.
Hawkins, Troy R.
Singh, Avantika
Vardon, Derek R.
author_sort Miller, Jacob H.
collection PubMed
description Biomass conversion to fuels and chemicals is crucial to decarbonization, but choosing an advantageous upgrading pathway out of many options is challenging. Rigorously evaluating all candidate pathways (process simulation, product property testing) requires a prohibitive amount of research effort; even simple upgrading schemes have hundreds of possible permutations. We present a method enabling high-throughput screening by approximating upgrading unit operations and drop-in compatibility of products (e.g., fuel properties) and apply it to volatile fatty acid (VFA) conversion to liquid transportation fuels via a MATLAB script, VFA Upgrading to Liquid Transportation fUels Refinery Estimation (VULTURE). VULTURE selects upgrading configurations that maximize fuel blend bio-derived content. We validate VULTURE’s approximations through surrogate fuel property testing and process simulation. Techno-economic and life cycle analyses suggest that VFA upgrading processes down-selected by VULTURE are profitable and have low carbon intensities, demonstrating the potential for the strategy to accelerate process development timelines at decreased costs.
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spelling pubmed-96475062022-11-15 Screening and evaluation of biomass upgrading strategies for sustainable transportation fuel production with biomass-derived volatile fatty acids Miller, Jacob H. Tifft, Stephen M. Wiatrowski, Matthew R. Benavides, Pahola Thathiana Huq, Nabila A. Christensen, Earl D. Alleman, Teresa Hays, Cameron Luecke, Jon Kneucker, Colin M. Haugen, Stefan J. Sànchez i Nogué, Violeta Karp, Eric M. Hawkins, Troy R. Singh, Avantika Vardon, Derek R. iScience Article Biomass conversion to fuels and chemicals is crucial to decarbonization, but choosing an advantageous upgrading pathway out of many options is challenging. Rigorously evaluating all candidate pathways (process simulation, product property testing) requires a prohibitive amount of research effort; even simple upgrading schemes have hundreds of possible permutations. We present a method enabling high-throughput screening by approximating upgrading unit operations and drop-in compatibility of products (e.g., fuel properties) and apply it to volatile fatty acid (VFA) conversion to liquid transportation fuels via a MATLAB script, VFA Upgrading to Liquid Transportation fUels Refinery Estimation (VULTURE). VULTURE selects upgrading configurations that maximize fuel blend bio-derived content. We validate VULTURE’s approximations through surrogate fuel property testing and process simulation. Techno-economic and life cycle analyses suggest that VFA upgrading processes down-selected by VULTURE are profitable and have low carbon intensities, demonstrating the potential for the strategy to accelerate process development timelines at decreased costs. Elsevier 2022-10-18 /pmc/articles/PMC9647506/ /pubmed/36388957 http://dx.doi.org/10.1016/j.isci.2022.105384 Text en © 2022. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Miller, Jacob H.
Tifft, Stephen M.
Wiatrowski, Matthew R.
Benavides, Pahola Thathiana
Huq, Nabila A.
Christensen, Earl D.
Alleman, Teresa
Hays, Cameron
Luecke, Jon
Kneucker, Colin M.
Haugen, Stefan J.
Sànchez i Nogué, Violeta
Karp, Eric M.
Hawkins, Troy R.
Singh, Avantika
Vardon, Derek R.
Screening and evaluation of biomass upgrading strategies for sustainable transportation fuel production with biomass-derived volatile fatty acids
title Screening and evaluation of biomass upgrading strategies for sustainable transportation fuel production with biomass-derived volatile fatty acids
title_full Screening and evaluation of biomass upgrading strategies for sustainable transportation fuel production with biomass-derived volatile fatty acids
title_fullStr Screening and evaluation of biomass upgrading strategies for sustainable transportation fuel production with biomass-derived volatile fatty acids
title_full_unstemmed Screening and evaluation of biomass upgrading strategies for sustainable transportation fuel production with biomass-derived volatile fatty acids
title_short Screening and evaluation of biomass upgrading strategies for sustainable transportation fuel production with biomass-derived volatile fatty acids
title_sort screening and evaluation of biomass upgrading strategies for sustainable transportation fuel production with biomass-derived volatile fatty acids
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9647506/
https://www.ncbi.nlm.nih.gov/pubmed/36388957
http://dx.doi.org/10.1016/j.isci.2022.105384
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