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Assessing various <scp>CO<sub>2</sub></scp> utilization technologies: a brief comparative review

Zafar TurakulovDepartamento de Ingenierías Química y Biomolecular Universidad de Cantabria Santander SpainAzizbek KamolovDepartamento de Ingenierías Química y Biomolecular Universidad de Cantabria Santander SpainAdham NorkobilovMiroslav VarinyDepartment of Chemical and Biochemical Engineering Slovak University of Technology in Bratislava Bratislava SlovakiaGuillermo Díaz‐SainzDepartamento de Ingenierías Química y Biomolecular Universidad de Cantabria Santander SpainLucía Gómez‐ComaDepartamento de Ingenierías Química y Biomolecular Universidad de Cantabria Santander SpainMarcos FallanzaDepartamento de Ingenierías Química y Biomolecular Universidad de Cantabria Santander Spain
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Abstract Carbon dioxide (CO 2 ) utilization technologies have emerged as a promising approach to address the direct and indirect consequences of climate change and the need for sustainable resource management. Those innovative technologies aim to capture and utilize CO 2 by converting it into valuable products or directly using it as a chemical feedstock in various industries, thus, avoiding their release into the atmosphere. In this study, different CO 2 utilization pathways including CO 2 to chemicals and fuels, CO 2 to building materials, CO 2 to enhanced oil recovery (EOR), and CO 2 to bio‐products are discussed in terms of their status – economic, environmental and technology readiness level performances. Moreover, various CO 2 utilization pathways are comparatively analyzed considering their advantages and drawbacks, CO 2 uptake potentials, and overall climate benefits. According to the comparison results, photocatalytic and electrochemical reduction of CO 2 along with the bio‐fixation of CO 2 are gaining more attention in the recent research and investigations, from the energy intensity and environmental point of view, whereas EOR remains dominant in terms of the scalability, maturity and economic benefits. However, limitations of EOR related to the capacity, life cycle and different geolocations, as well as the complexities of other mature approaches make room for emerging technologies to be more energy‐effective and environmentally friendly. Overall, most of the promising CO 2 utilization techniques are either technologically immature or limited in scale to deploy globally. One of the main barriers to reusing CO 2 is associated with the high cost of CO 2 ‐based production and the low value of the CO 2 market. © 2024 Society of Chemical Industry (SCI).

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