Skip to main content
Top

2021 | OriginalPaper | Chapter

6. Reduction of Carbon Dioxide Emission into the Atmosphere: The Capture and Storage (CCS) Option

Authors : Prof. Dr. Michele Aresta, Prof. Dr. Angela Dibenedetto

Published in: The Carbon Dioxide Revolution

Publisher: Springer International Publishing

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

The Capture and Storage of Carbon Dioxide (CCS) is illustrated in this chapter. CO2 can be captured from point sources (power plants and industries) or directly from the atmosphere (Direct Air Capture (DAC)) or even from mobile sources. Technologies for the capture are illustrated here and some examples of disposal in natural fields are described, together with fixation into long-lasting materials, such as inorganic carbonates.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft"

Online-Abonnement

Mit Springer Professional "Wirtschaft" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 340 Zeitschriften

aus folgenden Fachgebieten:

  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Versicherung + Risiko




Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference (a) Aresta M, Forti G (eds) (1987) Carbon dioxide as a source of carbon: chemical and biochemical uses, Reidel Publ., NATO—ASI: Dordrecht; (b) Aresta M (ed) (2003) Carbon dioxide recovery and utilization. Kluwer Publ; (c) Aresta M (ed) (2010) Carbon dioxide as chemical feedstock. Wiley VCH; (d) Aresta M, Dibenedetto A, Angelini A (2013) The changing paradigm in CO2 utilization. J CO2 Util 3–4:65–73 (a) Aresta M, Forti G (eds) (1987) Carbon dioxide as a source of carbon: chemical and biochemical uses, Reidel Publ., NATO—ASI: Dordrecht; (b) Aresta M (ed) (2003) Carbon dioxide recovery and utilization. Kluwer Publ; (c) Aresta M (ed) (2010) Carbon dioxide as chemical feedstock. Wiley VCH; (d) Aresta M, Dibenedetto A, Angelini A (2013) The changing paradigm in CO2 utilization. J CO2 Util 3–4:65–73
2.
go back to reference (a) Aresta M, Dibenedetto A, Quaranta E (2016) Reaction mechanisms in carbon dioxide conversion. Springer Publ; (b) Chen Y-H, Shen M-T, Chang H, Ho C-D (2019) Control of solvent-based post-combustion carbon capture process with optimal operation conditions. Processes 7:366 (a) Aresta M, Dibenedetto A, Quaranta E (2016) Reaction mechanisms in carbon dioxide conversion. Springer Publ; (b) Chen Y-H, Shen M-T, Chang H, Ho C-D (2019) Control of solvent-based post-combustion carbon capture process with optimal operation conditions. Processes 7:366
3.
go back to reference (a) Wang XX, Ma XL, Song CS, Locke DR, Siefert S, Winans RE, Mollmer J, Lange M, Moller A, Glaser R (2013) Molecular basket sorbents polyethyleneimmine with SB15 for carbon dioxide capture. Microporous Mesoporous Mater 169:103–111; (b) Wang XX, Song CS (2019) Capture of CO2 from concentrated sources and the atmosphere. In: Aresta M, Karimi I, Kawi S (eds) An economy based on CO2 and water, Chap 2. Springer (a) Wang XX, Ma XL, Song CS, Locke DR, Siefert S, Winans RE, Mollmer J, Lange M, Moller A, Glaser R (2013) Molecular basket sorbents polyethyleneimmine with SB15 for carbon dioxide capture. Microporous Mesoporous Mater 169:103–111; (b) Wang XX, Song CS (2019) Capture of CO2 from concentrated sources and the atmosphere. In: Aresta M, Karimi I, Kawi S (eds) An economy based on CO2 and water, Chap 2. Springer
4.
go back to reference Tsuda T, Fujiwara T (1992) Polyethyleneimine and macrocyclic polyamine silica gels acting as carbon dioxide absorbents. J Chem Soc Chem Commun 1659–1661 Tsuda T, Fujiwara T (1992) Polyethyleneimine and macrocyclic polyamine silica gels acting as carbon dioxide absorbents. J Chem Soc Chem Commun 1659–1661
5.
go back to reference (a) Dibenedetto A, Aresta M, Fragale C, Narracci M (2002) Reaction of silylalkylmono-and silylalkyldi-amines with carbon dioxide: evidence of formation of inter-and intra-molecular ammonium carbamates and their conversion into organic carbamates of industrial interest under carbon dioxide catalysis. Green Chem 4(5):439–443; (b) Dibenedetto A, Pastore C, Fragale C, Aresta M (2008) Hybrid materials for CO2 uptake from simulated flue gases: xerogels containing diamines. ChemSusChem 1(8–9):742–745 (a) Dibenedetto A, Aresta M, Fragale C, Narracci M (2002) Reaction of silylalkylmono-and silylalkyldi-amines with carbon dioxide: evidence of formation of inter-and intra-molecular ammonium carbamates and their conversion into organic carbamates of industrial interest under carbon dioxide catalysis. Green Chem 4(5):439–443; (b) Dibenedetto A, Pastore C, Fragale C, Aresta M (2008) Hybrid materials for CO2 uptake from simulated flue gases: xerogels containing diamines. ChemSusChem 1(8–9):742–745
6.
go back to reference McKinsey&Company, Inc. (2008) Carbon capture & storage: assessing the economics McKinsey&Company, Inc. (2008) Carbon capture & storage: assessing the economics
7.
go back to reference Chan HXM, Yap EH, Ho JH (2013) Overview of axial compression for DAC of CO2. Adv Mater Res 744:392–395CrossRef Chan HXM, Yap EH, Ho JH (2013) Overview of axial compression for DAC of CO2. Adv Mater Res 744:392–395CrossRef
8.
go back to reference (a) www.oase.basf.com; (b) Kumagai T, Tanaka K, Fujimura Y, Ono T, Ito F, Katz T, Spuhl O, Tan A (2011) HiPACT–advanced CO2 capture technology for green natural gas exploration. Energy Procedia 4:125–132 (a) www.​oase.​basf.​com; (b) Kumagai T, Tanaka K, Fujimura Y, Ono T, Ito F, Katz T, Spuhl O, Tan A (2011) HiPACT–advanced CO2 capture technology for green natural gas exploration. Energy Procedia 4:125–132
9.
go back to reference Holmes G, Keith DW (2012) An air–liquid contactor for large-scale capture of CO2 from air. Phil Trans R Soc A 370:4380–4403CrossRef Holmes G, Keith DW (2012) An air–liquid contactor for large-scale capture of CO2 from air. Phil Trans R Soc A 370:4380–4403CrossRef
11.
go back to reference See Chapter 10 In: Aresta M, Dibenedetto A, Quaranta E (2016) Reaction mechanisms in carbon dioxide conversion. Springer Publ See Chapter 10 In: Aresta M, Dibenedetto A, Quaranta E (2016) Reaction mechanisms in carbon dioxide conversion. Springer Publ
13.
14.
go back to reference (a) https://www.energy.gov/fe/science-innovation/oil-gas-research/enhanced-oil-recovery; (b) Evaluating the potential for “Game changer” improvements in oil recovery efficiency from CO2 enhanced oil recovery. Advanced Resources International, Prepared for U.S. Department of Energy Office of Fossil Energy—Office of Oil and Natural Gas. ARI (2006); (c) Shaw JC, Bachu S (2003) Evaluation of the CO2 sequestration capacity in Alberta’s oil and gas reservoirs at depletion and the effect of underlying aquifers. J Can Petroleum Technol 42(9):51–61 (a) https://​www.​energy.​gov/​fe/​science-innovation/​oil-gas-research/​enhanced-oil-recovery; (b) Evaluating the potential for “Game changer” improvements in oil recovery efficiency from CO2 enhanced oil recovery. Advanced Resources International, Prepared for U.S. Department of Energy Office of Fossil Energy—Office of Oil and Natural Gas. ARI (2006); (c) Shaw JC, Bachu S (2003) Evaluation of the CO2 sequestration capacity in Alberta’s oil and gas reservoirs at depletion and the effect of underlying aquifers. J Can Petroleum Technol 42(9):51–61
15.
go back to reference Babadagli T (2006) Optimization of CO2 injection for sequestration/enhanced oil recovery and current status in Canada. In: Lombardi S, Altunina LK, Beaubien SE (eds) Advances in the geological storage of carbon dioxide: international approaches to reduce anthropogenic greenhouse gas emissions. Springer, Dordrecht, The Netherlands, pp 261–270CrossRef Babadagli T (2006) Optimization of CO2 injection for sequestration/enhanced oil recovery and current status in Canada. In: Lombardi S, Altunina LK, Beaubien SE (eds) Advances in the geological storage of carbon dioxide: international approaches to reduce anthropogenic greenhouse gas emissions. Springer, Dordrecht, The Netherlands, pp 261–270CrossRef
16.
go back to reference Snyder S, Anderson I, Keith D, Sendall K, Youzwa P (2008) Canada’s fossil energy future: the way forward on carbon capture and storage. Report by the ecoENERGY Carbon Capture and Storage Task Force to the Minister of Alberta Energy and the Minister of Natural Resources Canada Snyder S, Anderson I, Keith D, Sendall K, Youzwa P (2008) Canada’s fossil energy future: the way forward on carbon capture and storage. Report by the ecoENERGY Carbon Capture and Storage Task Force to the Minister of Alberta Energy and the Minister of Natural Resources Canada
18.
go back to reference Kay R (1998) International Space Station (ISS) Carbon Dioxide Removal Assembly (CDRA) protoflight performance testing. In: International conference on environmental systems, SAE International, Danvers, Massachusetts Kay R (1998) International Space Station (ISS) Carbon Dioxide Removal Assembly (CDRA) protoflight performance testing. In: International conference on environmental systems, SAE International, Danvers, Massachusetts
19.
go back to reference Muntean M, Guizzardi D, Schaaf E, Crippa M, Solazzo E, Olivier J, Vignati E (2018) Fossil CO2 emissions of all world countries. In: Environment and climate change. Publications Office of the European Union. ISBN: 978-92-79-97240-9 Muntean M, Guizzardi D, Schaaf E, Crippa M, Solazzo E, Olivier J, Vignati E (2018) Fossil CO2 emissions of all world countries. In: Environment and climate change. Publications Office of the European Union. ISBN: 978-92-79-97240-9
20.
go back to reference (a) Sanna A, Uibu M, Caramanna G, Kuusik R, Maroto-Valer MM (2014) A review of mineral carbonation technologies to sequester CO2. Chem Soc Rev 43:8049–8080; (b) Matter JM, Kelemen PB (2009) Permanent storage of carbon dioxide in geological reservoirs by mineral carbonation. Nat Geosci 2(12):837 (a) Sanna A, Uibu M, Caramanna G, Kuusik R, Maroto-Valer MM (2014) A review of mineral carbonation technologies to sequester CO2. Chem Soc Rev 43:8049–8080; (b) Matter JM, Kelemen PB (2009) Permanent storage of carbon dioxide in geological reservoirs by mineral carbonation. Nat Geosci 2(12):837
21.
go back to reference (a) Rumble J (2019) CRC Handbook of chemistry; (b) Vandehey NT, O’Neil JP (2014) Capturing [11C]CO2 for use in aqueous applications. Appl Radiat Isotopes 90:74–78 (a) Rumble J (2019) CRC Handbook of chemistry; (b) Vandehey NT, O’Neil JP (2014) Capturing [11C]CO2 for use in aqueous applications. Appl Radiat Isotopes 90:74–78
22.
23.
go back to reference (a) Rinaudo C, Gastaldi D, Belluso E (2003) Characterization of chrysotile, antigorite and lizardite by FT-Raman spectroscopy. Can Mineral 41(4):883–890; (b) Groppo C, Rinaudo C, Cairo S, Gastaldi D, Compagnoni R (2006) Micro-Raman spectroscopy for a quick and reliable identification of serpentine minerals from ultramafics. Eur J Mineral 18(3):319–329 (a) Rinaudo C, Gastaldi D, Belluso E (2003) Characterization of chrysotile, antigorite and lizardite by FT-Raman spectroscopy. Can Mineral 41(4):883–890; (b) Groppo C, Rinaudo C, Cairo S, Gastaldi D, Compagnoni R (2006) Micro-Raman spectroscopy for a quick and reliable identification of serpentine minerals from ultramafics. Eur J Mineral 18(3):319–329
24.
go back to reference Shi C (2004) Steel slag—its production, processing, characteristics, and cementitious properties. J Mat Civil Eng 16(3):230–236CrossRef Shi C (2004) Steel slag—its production, processing, characteristics, and cementitious properties. J Mat Civil Eng 16(3):230–236CrossRef
25.
go back to reference Armesto L, Merino JL (1999) Characterization of some coal combustion solid residues. Fuel 78:613–618CrossRef Armesto L, Merino JL (1999) Characterization of some coal combustion solid residues. Fuel 78:613–618CrossRef
26.
go back to reference (a) Geerlings JJC, Wesker E (2008) Process for sequestration of carbon dioxide by mineral carbonation. WO2008142017 (A2) (A3), EP2158158 (A2), CA2687618 (A1), AU2008253068 (A1), US20070261947 (A1), CN101679059 (A); Shell International Research Maatschappij B.V; (b) Geerlings JJC, Van Mossel GAF, Veen BCMIT (2007) Process for sequestration of carbon dioxide, WO2007071633A1 (a) Geerlings JJC, Wesker E (2008) Process for sequestration of carbon dioxide by mineral carbonation. WO2008142017 (A2) (A3), EP2158158 (A2), CA2687618 (A1), AU2008253068 (A1), US20070261947 (A1), CN101679059 (A); Shell International Research Maatschappij B.V; (b) Geerlings JJC, Van Mossel GAF, Veen BCMIT (2007) Process for sequestration of carbon dioxide, WO2007071633A1
27.
go back to reference Yeo TY, Bu J (2019) In: Aresta M, Karimi I, Kawi S (2019) An economy based on CO2 and water, Chap 4. Springer Yeo TY, Bu J (2019) In: Aresta M, Karimi I, Kawi S (2019) An economy based on CO2 and water, Chap 4. Springer
28.
go back to reference Power IM, Harrison AL, Dipple GM (2016) Accelerating mineral carbonation using carbonic anhydrase. Environ Sci Technol 50(5):2610–2618CrossRef Power IM, Harrison AL, Dipple GM (2016) Accelerating mineral carbonation using carbonic anhydrase. Environ Sci Technol 50(5):2610–2618CrossRef
Metadata
Title
Reduction of Carbon Dioxide Emission into the Atmosphere: The Capture and Storage (CCS) Option
Authors
Prof. Dr. Michele Aresta
Prof. Dr. Angela Dibenedetto
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-59061-1_6