Semantic Scholar Open Access 2014 917 sitasi

A review of mineral carbonation technologies to sequester CO2.

A. Sanna M. Uibu G. Caramanna R. Kuusik M. Maroto-Valer

Abstrak

Carbon dioxide (CO2) capture and sequestration includes a portfolio of technologies that can potentially sequester billions of tonnes of CO2 per year. Mineral carbonation (MC) is emerging as a potential CCS technology solution to sequester CO2 from smaller/medium emitters, where geological sequestration is not a viable option. In MC processes, CO2 is chemically reacted with calcium- and/or magnesium-containing materials to form stable carbonates. This work investigates the current advancement in the proposed MC technologies and the role they can play in decreasing the overall cost of this CO2 sequestration route. In situ mineral carbonation is a very promising option in terms of resources available and enhanced security, but the technology is still in its infancy and transport and storage costs are still higher than geological storage in sedimentary basins ($17 instead of $8 per tCO2). Ex situ mineral carbonation has been demonstrated on pilot and demonstration scales. However, its application is currently limited by its high costs, which range from $50 to $300 per tCO2 sequestered. Energy use, the reaction rate and material handling are the key factors hindering the success of this technology. The value of the products seems central to render MC economically viable in the same way as conventional CCS seems profitable only when combined with EOR. Large scale projects such as the Skyonic process can help in reducing the knowledge gaps on MC fundamentals and provide accurate costing and data on processes integration and comparison. The literature to date indicates that in the coming decades MC can play an important role in decarbonising the power and industrial sector.

Penulis (5)

A

A. Sanna

M

M. Uibu

G

G. Caramanna

R

R. Kuusik

M

M. Maroto-Valer

Format Sitasi

Sanna, A., Uibu, M., Caramanna, G., Kuusik, R., Maroto-Valer, M. (2014). A review of mineral carbonation technologies to sequester CO2.. https://doi.org/10.1039/c4cs00035h

Akses Cepat

Lihat di Sumber doi.org/10.1039/c4cs00035h
Informasi Jurnal
Tahun Terbit
2014
Bahasa
en
Total Sitasi
917×
Sumber Database
Semantic Scholar
DOI
10.1039/c4cs00035h
Akses
Open Access ✓