Economic and Environmental Performance of an Integrated CO2 Refinery
Publication type: Journal Article
Publication date: 2023-01-26
scimago Q1
wos Q1
SJR: 1.623
CiteScore: 12.5
Impact factor: 7.3
ISSN: 21680485
PubMed ID:
36778522
General Chemistry
General Chemical Engineering
Environmental Chemistry
Renewable Energy, Sustainability and the Environment
Abstract
The consequences of global warming call for a shift to circular manufacturing practices. In this context, carbon capture and utilization (CCU) has become a promising alternative toward a low-emitting chemical sector. This study addresses for the first time the design of an integrated CO2 refinery and compares it against the business-as-usual (BAU) counterpart. The refinery, which utilizes atmospheric CO2, comprises three synthesis steps and coproduces liquefied petroleum gas, olefins, aromatics, and methanol using technologies that were so far studied decoupled from each other, hence omitting their potential synergies. Our integrated assessment also considers two residual gas utilization (RGU) designs to enhance the refinery’s efficiency. Our analysis shows that a centralized cluster with an Allam cycle for RGU can drastically reduce the global warming impact relative to the BAU (by ≈135%) while simultaneously improving impacts on human health, ecosystems, and resources, thereby avoiding burden-shifting toward human health previously observed in some CCU routes. These benefits emerge from (i) recycling CO2 from the cycle, amounting to 11.2% of the total feedstock, thus requiring less capture capacity, and (ii) reducing the electricity use while increasing heating as a trade-off. The performance of the integrated refinery depends on the national grid, while its high cost relative to the BAU is due to the use of expensive electrolytic H2 and atmospheric CO2 feedstock. Overall, our work highlights the importance of integrating CCU technologies within chemical clusters to improve their economic and environmental performance further.
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Citations from 2024:
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GOST
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Ioannou I. et al. Economic and Environmental Performance of an Integrated CO2 Refinery // ACS Sustainable Chemistry and Engineering. 2023. Vol. 11. No. 5. pp. 1949-1961.
GOST all authors (up to 50)
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Ioannou I., Javaloyes Antón J., Javaloyes Antón J., Caballero J. A., Guillén-Gosálbez G. Economic and Environmental Performance of an Integrated CO2 Refinery // ACS Sustainable Chemistry and Engineering. 2023. Vol. 11. No. 5. pp. 1949-1961.
Cite this
RIS
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TY - JOUR
DO - 10.1021/acssuschemeng.2c06724
UR - https://pubs.acs.org/doi/10.1021/acssuschemeng.2c06724
TI - Economic and Environmental Performance of an Integrated CO2 Refinery
T2 - ACS Sustainable Chemistry and Engineering
AU - Ioannou, Iasonas
AU - Javaloyes Antón, Juan
AU - Javaloyes Antón, J
AU - Caballero, José A
AU - Guillén-Gosálbez, Gonzalo
PY - 2023
DA - 2023/01/26
PB - American Chemical Society (ACS)
SP - 1949-1961
IS - 5
VL - 11
PMID - 36778522
SN - 2168-0485
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2023_Ioannou,
author = {Iasonas Ioannou and Juan Javaloyes Antón and J Javaloyes Antón and José A Caballero and Gonzalo Guillén-Gosálbez},
title = {Economic and Environmental Performance of an Integrated CO2 Refinery},
journal = {ACS Sustainable Chemistry and Engineering},
year = {2023},
volume = {11},
publisher = {American Chemical Society (ACS)},
month = {jan},
url = {https://pubs.acs.org/doi/10.1021/acssuschemeng.2c06724},
number = {5},
pages = {1949--1961},
doi = {10.1021/acssuschemeng.2c06724}
}
Cite this
MLA
Copy
Ioannou, Iasonas, et al. “Economic and Environmental Performance of an Integrated CO2 Refinery.” ACS Sustainable Chemistry and Engineering, vol. 11, no. 5, Jan. 2023, pp. 1949-1961. https://pubs.acs.org/doi/10.1021/acssuschemeng.2c06724.