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Energy efficient solvents for CO2 ca...
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Budzianowski, Wojciech M.
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Energy efficient solvents for CO2 capture by gas-liquid absorption = compounds, systems blends and advanced solventCO2 capture by gas-liquid absorption /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Energy efficient solvents for CO2 capture by gas-liquid absorption/ edited by Wojciech M. Budzianowski.
Reminder of title:
compounds, systems blends and advanced solventCO2 capture by gas-liquid absorption /
other author:
Budzianowski, Wojciech M.
Published:
Cham :Springer International Publishing : : 2017.,
Description:
x, 277 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction to Carbon Dioxide Capture by Gas-liquid Absorption in Nature, Industry, and Perspectives for the Energy Sector and Beyond -- Assessment of Thermodynamic Efficiency of Carbon Dioxide Separation in Capture Plants by Using Gas-liquid Absorption -- Process Implications of CO2 Capture Solvent Selection -- Useful Mechanisms, Energy Efficiency Benefits, and Challenges of Emerging Innovative Advanced Solvent Based Capture Processes -- Phase Change Solvents for CO2 Capture Applications -- Aqueous Amino Acid Salts and Their Blends as Efficient Absorbents for CO2 Capture -- Ionic Liquids: Advanced Solvents for CO2 Capture -- Amine-blends Screening and Characterization for CO2 Post-combustion Capture -- Post-combustion Carbon Dioxide Capture with Aqueous (Piperazine + 2-amino-2methyl-1-propanol) Blended Solvent: Performance Evaluation and Analysis of Energy Requirements -- Energy Efficient Absorbents for Industry Promising Carbon Dioxide Capture -- The Absorption Kinetics of CO2 into Ionic Liquid- CO2 Binding Organic Liquid and Hybrid Solvents -- Solubility of Carbon Dioxide in Aqueous Solutions of Linear Polyamines.
Contained By:
Springer eBooks
Subject:
Carbon dioxide - Absorption and adsorption. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-47262-1
ISBN:
9783319472621
Energy efficient solvents for CO2 capture by gas-liquid absorption = compounds, systems blends and advanced solventCO2 capture by gas-liquid absorption /
Energy efficient solvents for CO2 capture by gas-liquid absorption
compounds, systems blends and advanced solventCO2 capture by gas-liquid absorption /[electronic resource] :edited by Wojciech M. Budzianowski. - Cham :Springer International Publishing :2017. - x, 277 p. :ill., digital ;24 cm. - Green energy and technology,1865-3529. - Green energy and technology..
Introduction to Carbon Dioxide Capture by Gas-liquid Absorption in Nature, Industry, and Perspectives for the Energy Sector and Beyond -- Assessment of Thermodynamic Efficiency of Carbon Dioxide Separation in Capture Plants by Using Gas-liquid Absorption -- Process Implications of CO2 Capture Solvent Selection -- Useful Mechanisms, Energy Efficiency Benefits, and Challenges of Emerging Innovative Advanced Solvent Based Capture Processes -- Phase Change Solvents for CO2 Capture Applications -- Aqueous Amino Acid Salts and Their Blends as Efficient Absorbents for CO2 Capture -- Ionic Liquids: Advanced Solvents for CO2 Capture -- Amine-blends Screening and Characterization for CO2 Post-combustion Capture -- Post-combustion Carbon Dioxide Capture with Aqueous (Piperazine + 2-amino-2methyl-1-propanol) Blended Solvent: Performance Evaluation and Analysis of Energy Requirements -- Energy Efficient Absorbents for Industry Promising Carbon Dioxide Capture -- The Absorption Kinetics of CO2 into Ionic Liquid- CO2 Binding Organic Liquid and Hybrid Solvents -- Solubility of Carbon Dioxide in Aqueous Solutions of Linear Polyamines.
This book reviews and characterises promising single-compound solvents, solvent blends and advanced solvent systems suitable for CO2 capture applications using gas-liquid absorption. Focusing on energy efficient solvents with minimal adverse environmental impact, the contributions included analyse the major technological advantages, as well as research and development challenges of promising solvents and solvent systems in various sustainable CO2 capture applications. It provides a valuable source of information for undergraduate and postgraduate students, as well as for chemical engineers and energy specialists.
ISBN: 9783319472621
Standard No.: 10.1007/978-3-319-47262-1doiSubjects--Topical Terms:
2139139
Carbon dioxide
--Absorption and adsorption.
LC Class. No.: QD181.C1
Dewey Class. No.: 628.532
Energy efficient solvents for CO2 capture by gas-liquid absorption = compounds, systems blends and advanced solventCO2 capture by gas-liquid absorption /
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Introduction to Carbon Dioxide Capture by Gas-liquid Absorption in Nature, Industry, and Perspectives for the Energy Sector and Beyond -- Assessment of Thermodynamic Efficiency of Carbon Dioxide Separation in Capture Plants by Using Gas-liquid Absorption -- Process Implications of CO2 Capture Solvent Selection -- Useful Mechanisms, Energy Efficiency Benefits, and Challenges of Emerging Innovative Advanced Solvent Based Capture Processes -- Phase Change Solvents for CO2 Capture Applications -- Aqueous Amino Acid Salts and Their Blends as Efficient Absorbents for CO2 Capture -- Ionic Liquids: Advanced Solvents for CO2 Capture -- Amine-blends Screening and Characterization for CO2 Post-combustion Capture -- Post-combustion Carbon Dioxide Capture with Aqueous (Piperazine + 2-amino-2methyl-1-propanol) Blended Solvent: Performance Evaluation and Analysis of Energy Requirements -- Energy Efficient Absorbents for Industry Promising Carbon Dioxide Capture -- The Absorption Kinetics of CO2 into Ionic Liquid- CO2 Binding Organic Liquid and Hybrid Solvents -- Solubility of Carbon Dioxide in Aqueous Solutions of Linear Polyamines.
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This book reviews and characterises promising single-compound solvents, solvent blends and advanced solvent systems suitable for CO2 capture applications using gas-liquid absorption. Focusing on energy efficient solvents with minimal adverse environmental impact, the contributions included analyse the major technological advantages, as well as research and development challenges of promising solvents and solvent systems in various sustainable CO2 capture applications. It provides a valuable source of information for undergraduate and postgraduate students, as well as for chemical engineers and energy specialists.
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based on 0 review(s)
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EB QD181.C1
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