CO2 adsorption on agricultural biomass combustion ashes
Carbon capture and storage has become an alternative means of confronting global warming. Further research and development into adequate and low-cost materials is required for CO2 adsorption technologies. Samples of fly ash, bottom ash and their respective pellets, produced from wheat bran combustio...
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Published in | Maderas Vol. 18; no. ahead; pp. 607 - 616 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Universidad del Bío-Bío
01.01.2016
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Subjects | |
Online Access | Get full text |
ISSN | 0718-221X 0717-3644 0718-221X |
DOI | 10.4067/S0718-221X2016005000053 |
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Abstract | Carbon capture and storage has become an alternative means of confronting global warming. Further research and development into adequate and low-cost materials is required for CO2 adsorption technologies. Samples of fly ash, bottom ash and their respective pellets, produced from wheat bran combustion, were characterized and tested to assess their capacity for CO2 adsorption at different temperatures. Neither the ashes nor their pellets were subject to prior thermochemical activation. The bottom ash sample and its pellets showed a higher adsorption capacity for the majority of the temperatures studied. The pelletized bottom ash reached the maximum adsorption capacity (0,07 mmol CO2/g), followed by the non-pelletized bottom ash (0,06 mmol CO2/g); both at an adsorption temperature of 25°C. CO2 adsorption of bottom ash, from the combustion of wheat bran (agricultural biomass), by a physical adsorption mechanism was demonstrated whereas with the fly ash sample, CO2 adsorption by both physical and chemical adsorption mechanisms was identified. |
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AbstractList | Carbon capture and storage has become an alternative means of confronting global warming. Further research and development into adequate and low-cost materials is required for CO2 adsorption technologies. Samples of fly ash, bottom ash and their respective pellets, produced from wheat bran combustion, were characterized and tested to assess their capacity for CO2 adsorption at different temperatures. Neither the ashes nor their pellets were subject to prior thermochemical activation. The bottom ash sample and its pellets showed a higher adsorption capacity for the majority of the temperatures studied. The pelletized bottom ash reached the maximum adsorption capacity (0,07 mmol CO2/g), followed by the non-pelletized bottom ash (0,06 mmol CO2/g); both at an adsorption temperature of 25°C. CO2 adsorption of bottom ash, from the combustion of wheat bran (agricultural biomass), by a physical adsorption mechanism was demonstrated whereas with the fly ash sample, CO2 adsorption by both physical and chemical adsorption mechanisms was identified. |
Author | Lira-Zúñiga, Sebastián Herrera-Urbina, Ronaldo Rodríguez-Córdova, Leonardo Sáez-Navarrete, César Herrera-Zeppelin, Leandro |
AuthorAffiliation | Pontificia Universidad Católica de Chile Universidad de Chile Universidad de Sonora |
AuthorAffiliation_xml | – name: Universidad de Chile – name: Universidad de Sonora – name: Pontificia Universidad Católica de Chile |
Author_xml | – sequence: 1 givenname: Sebastián surname: Lira-Zúñiga fullname: Lira-Zúñiga, Sebastián – sequence: 2 givenname: César surname: Sáez-Navarrete fullname: Sáez-Navarrete, César – sequence: 3 givenname: Leonardo surname: Rodríguez-Córdova fullname: Rodríguez-Córdova, Leonardo – sequence: 4 givenname: Leandro surname: Herrera-Zeppelin fullname: Herrera-Zeppelin, Leandro – sequence: 5 givenname: Ronaldo surname: Herrera-Urbina fullname: Herrera-Urbina, Ronaldo |
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CitedBy_id | crossref_primary_10_1007_s13762_024_05683_9 crossref_primary_10_1021_acsomega_1c01730 crossref_primary_10_1007_s11356_022_20157_6 crossref_primary_10_1080_01496395_2024_2377585 crossref_primary_10_1007_s10311_020_01153_z |
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Title | CO2 adsorption on agricultural biomass combustion ashes |
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