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Advances in Carbon Capture and Use (CCU) Technologies: A Comprehensive Review and CO2 Mitigation Potential Analysis
by
Peres, Christiano B.
, Nunes, Leonel J. R.
, Resende, Pedro M. R.
, Morais, Leandro C. de
in
Carbon dioxide
/ Carbon dioxide emissions
/ Carbon sequestration
/ catalytic conversion of CO2
/ Catalytic converters
/ Chemical industry
/ Climate change
/ CO2 capture and utilization
/ Coal-fired power plants
/ Conversion
/ Coolants
/ Deforestation
/ Developmental stages
/ direct utilization of CO2
/ Electrochemistry
/ Emissions
/ Energy
/ Enhanced oil recovery
/ Flame retardants
/ Flue gas
/ Food industry
/ Fossil fuels
/ Fuels
/ Greenhouse gases
/ Industrial plant emissions
/ Life cycle analysis
/ Life cycle assessment
/ Life cycles
/ Machine learning
/ Manufacturing
/ New technology
/ Oil recovery
/ Organic compounds
/ Polymers
/ pre- and post-combustion CO2 capture
/ Renewable resources
/ Technology
/ Urea
/ Utilization
/ Water treatment
2022
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Advances in Carbon Capture and Use (CCU) Technologies: A Comprehensive Review and CO2 Mitigation Potential Analysis
by
Peres, Christiano B.
, Nunes, Leonel J. R.
, Resende, Pedro M. R.
, Morais, Leandro C. de
in
Carbon dioxide
/ Carbon dioxide emissions
/ Carbon sequestration
/ catalytic conversion of CO2
/ Catalytic converters
/ Chemical industry
/ Climate change
/ CO2 capture and utilization
/ Coal-fired power plants
/ Conversion
/ Coolants
/ Deforestation
/ Developmental stages
/ direct utilization of CO2
/ Electrochemistry
/ Emissions
/ Energy
/ Enhanced oil recovery
/ Flame retardants
/ Flue gas
/ Food industry
/ Fossil fuels
/ Fuels
/ Greenhouse gases
/ Industrial plant emissions
/ Life cycle analysis
/ Life cycle assessment
/ Life cycles
/ Machine learning
/ Manufacturing
/ New technology
/ Oil recovery
/ Organic compounds
/ Polymers
/ pre- and post-combustion CO2 capture
/ Renewable resources
/ Technology
/ Urea
/ Utilization
/ Water treatment
2022
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Advances in Carbon Capture and Use (CCU) Technologies: A Comprehensive Review and CO2 Mitigation Potential Analysis
by
Peres, Christiano B.
, Nunes, Leonel J. R.
, Resende, Pedro M. R.
, Morais, Leandro C. de
in
Carbon dioxide
/ Carbon dioxide emissions
/ Carbon sequestration
/ catalytic conversion of CO2
/ Catalytic converters
/ Chemical industry
/ Climate change
/ CO2 capture and utilization
/ Coal-fired power plants
/ Conversion
/ Coolants
/ Deforestation
/ Developmental stages
/ direct utilization of CO2
/ Electrochemistry
/ Emissions
/ Energy
/ Enhanced oil recovery
/ Flame retardants
/ Flue gas
/ Food industry
/ Fossil fuels
/ Fuels
/ Greenhouse gases
/ Industrial plant emissions
/ Life cycle analysis
/ Life cycle assessment
/ Life cycles
/ Machine learning
/ Manufacturing
/ New technology
/ Oil recovery
/ Organic compounds
/ Polymers
/ pre- and post-combustion CO2 capture
/ Renewable resources
/ Technology
/ Urea
/ Utilization
/ Water treatment
2022
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Advances in Carbon Capture and Use (CCU) Technologies: A Comprehensive Review and CO2 Mitigation Potential Analysis
Journal Article
Advances in Carbon Capture and Use (CCU) Technologies: A Comprehensive Review and CO2 Mitigation Potential Analysis
2022
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Overview
One of society’s major current challenges is carbon dioxide emissions and their consequences. In this context, new technologies for carbon dioxide (CO2) capture have attracted much attention. One of these is carbon capture and utilization (CCU). This work focuses on the latest trends in a holistic approach to carbon dioxide capture and utilization. Absorption, adsorption, membranes, and chemical looping are considered for CO2 capture. Each CO2 capture technology is described, and its benefits and drawbacks are discussed. For the use of carbon dioxide, various possible applications of CCU are described, starting with the utilization of carbon dioxide in agriculture and proceeding to the conversion of CO2 into fuels (catalytic processes), chemicals (photocatalytic processes), polymers, and building supplies. For decades, carbon dioxide has been used in industrial processes, such as CO2-enhanced oil recovery, the food industry, organic compound production (such as urea), water treatment, and, therefore, the production of flame retardants and coolants. There also are several new CO2-utilization technologies at various stages of development and exploitation, such as electrochemical conversion to fuels, CO2-enhanced oil recovery, and supercritical CO2. At the end of this review, future opportunities are discussed regarding machine learning (ML) and life cycle assessment (LCA).
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