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A strategy of development and selection of absorbent for efficient CO2 capture: An overview of properties and performance
S.C. Tiwari, A. Bhardwaj, K.D.P. Nigam, K.K. Pant and S. Upadhyayula Process Safety and Environmental Protection 163 244 (2022) https://doi.org/10.1016/j.psep.2022.05.025
Technical and economic perspectives of hydrate-based carbon dioxide capture
Carbon Dioxide Utilization to Sustainable Energy and Fuels
Amita Chaudhary Advances in Science, Technology & Innovation, Carbon Dioxide Utilization to Sustainable Energy and Fuels 271 (2022) https://doi.org/10.1007/978-3-030-72877-9_13
Effect of the Chemical Structure of Hydrocarbons on the Emissions of CO, CO2 and Soot Precursors Issued from Cyclohexane and Benzene Premixed Flames
Muhammad Chawla, Hammad Saulat, Muhammad Masood Khan, Muhammad Mahmood Khan, Sikander Rafiq, Linjuan Cheng, Tanveer Iqbal, M. Imran Rasheed, Muhammad Zohaib Farooq, Muhammad Saeed, Nasir M. Ahmad, Muhammad Bilal Khan Niazi, Sidra Saqib, Farrukh Jamil, Ahmad Mukhtar and Nawshad Muhammad Chemical Engineering & Technology 43(2) 184 (2020) https://doi.org/10.1002/ceat.201900375
285 (2020) https://doi.org/10.1002/9783527826667.refs
Heat-Stable Salts and Methods for Their Removal from Alkanolamine Carbon Dioxide Absorbents (Review)
Impact of stage configurations, lean-rich heat exchange and regeneration agents on the energy demand of a multistage fluidized bed TSA CO2 capture process
Julius Pirklbauer, Gerhard Schöny, Tobias Pröll and Hermann Hofbauer International Journal of Greenhouse Gas Control 72 82 (2018) https://doi.org/10.1016/j.ijggc.2018.03.018
Post‐combustion CO2 capture with chemical absorption and hybrid system: current status and challenges
Muhammad Asif, Muhammad Suleman, Ihtishamul Haq and Syed Asad Jamal Greenhouse Gases: Science and Technology 8(6) 998 (2018) https://doi.org/10.1002/ghg.1823
Optimization of Stage Numbers in a Multistage Fluidized Bed Temperature Swing Adsorption System for CO2 Capture
A framework for the environmental, health and safety hazard assessment for amine-based post combustion CO 2 capture
Sara Badr, Jerome Frutiger, Konrad Hungerbuehler and Stavros Papadokonstantakis International Journal of Greenhouse Gas Control 56 202 (2017) https://doi.org/10.1016/j.ijggc.2016.11.013
Review on the mass transfer performance of CO2 absorption by amine-based solvents in low- and high-pressure absorption packed columns
Systematic study of aqueous monoethanolamine‐based CO2 capture process: model development and process improvement
Kangkang Li, Ashleigh Cousins, Hai Yu, Paul Feron, Moses Tade, Weiliang Luo and Jian Chen Energy Science & Engineering 4(1) 23 (2016) https://doi.org/10.1002/ese3.101
A techno-economic analysis of post-combustion CO 2 capture and compression applied to a combined cycle gas turbine: Part II. Identifying the cost-optimal control and design variables
A techno-economic analysis of post-combustion CO 2 capture and compression applied to a combined cycle gas turbine: Part I. A parametric study of the key technical performance indicators
Structural and Rotational Dynamics of Carbon Dioxide in 1-Alkyl-3-methylimidazolium Bis(trifluoromethylsulfonyl)imide Ionic Liquids: The Effect of Chain Length
Chiara H. Giammanco, Steven A. Yamada, Patrick L. Kramer, Amr Tamimi and Michael D. Fayer The Journal of Physical Chemistry B 120(27) 6698 (2016) https://doi.org/10.1021/acs.jpcb.6b03971
Metals (Mg, Sr and Al) modified CaO based sorbent for CO 2 sorption/desorption stability in fixed bed reactor for high temperature application
Enhanced CO2 capture by biomass-templated Ca(OH)2-based pellets
Firas N. Ridha, Yinghai Wu, Vasilije Manovic, Arturo Macchi and Edward J. Anthony Chemical Engineering Journal 274 69 (2015) https://doi.org/10.1016/j.cej.2015.03.041
Effect of Pelletization and Addition of Steam on the Cyclic Performance of Carbon-Templated, CaO-Based CO2 Sorbents
Marcin Broda, Vasilije Manovic, Edward J. Anthony and Christoph R. Müller Environmental Science & Technology 48(9) 5322 (2014) https://doi.org/10.1021/es405668f
Optimization of environmental benefits of carbon mineralization technologies for biogas upgrading
Mineral Carbonation as the Core of an Industrial Symbiosis for Energy‐Intensive Minerals Conversion
Geoffrey F. Brent, Daniel J. Allen, Brent R. Eichler, James G. Petrie, Jason P. Mann and Brian S. Haynes Journal of Industrial Ecology 16(1) 94 (2012) https://doi.org/10.1111/j.1530-9290.2011.00368.x
Improvements of calcium oxide based sorbents for multiple CO2 capture cycles
Nanomaterials and processes for carbon capture and conversion into useful by‐products for a sustainable energy future
Michael Ashley, Charles Magiera, Punnamchandar Ramidi, Gary Blackburn, Timothy G Scott, Rajeev Gupta, Kerry Wilson, Anindya Ghosh and Abhijit Biswas Greenhouse Gases: Science and Technology 2(6) 419 (2012) https://doi.org/10.1002/ghg.1317
Factors affecting CO2 absorption efficiency in packed column: A review
R. J. Notz, I. Tönnies, N. McCann, G. Scheffknecht and H. Hasse Chemical Engineering & Technology 34(2) 163 (2011) https://doi.org/10.1002/ceat.201000491
Design and synthesis of sprayable nanocomposite coatings for carbon capture and direct conversion into environmentally safe stable carbonates
Robert J. Perry, Teresa A. Grocela‐Rocha, Michael J. O'Brien, Sarah Genovese, Benjamin R. Wood, Larry N. Lewis, Hubert Lam, Grigorii Soloveichik, Malgorzata Rubinsztajn, Sergei Kniajanski, Sam Draper, Robert M. Enick, J. Karl Johnson, Hong‐bin Xie and Deepak Tapriyal ChemSusChem 3(8) 919 (2010) https://doi.org/10.1002/cssc.201000077
Niall MacDowell, Nick Florin, Antoine Buchard, et al. Energy & Environmental Science 3(11) 1645 (2010) https://doi.org/10.1039/c004106h
Assessment of postcombustion carbon capture technologies for power generation
Mikel C. Duke, Bradley Ladewig, Simon Smart, Victor Rudolph and João C. Diniz da Costa Frontiers of Chemical Engineering in China 4(2) 184 (2010) https://doi.org/10.1007/s11705-009-0234-1
Quantitative evaluation of the chilled-ammonia process for CO2 capture using thermodynamic analysis and process simulation
Equivalent Carbon Dioxide Capture and Storage Processes in Offshore Petroleum Production Facilities
J. L. P. Maia and M. T. L. De Barros Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 32(2) 180 (2009) https://doi.org/10.1080/15567030802467571
Quantitative evaluation of the aqueous-ammonia process for CO2 capture using fundamental data and thermodynamic analysis