Experimental data on the production and characterization of biochars derived from coconut-shell wastes obtained from the Colombian Pacific Coast at low temperature pyrolysis

Biochars are emerging eco-friendly products showing outstanding properties in areas such as carbon sequestration, soil amendment, bioremediation, biocomposites, and bioenergy. These interesting materials can be synthesized from a wide variety of waste-derived sources, including lignocellulosic biom...

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Autores principales: Castilla Caballero, Deyler, Barraza Burgos, Juan, Gunasekaran, Sundaram, Roa Espinosa, Aicardo, Colina Márquez, José, Machuca Martínez, Fiderman, Hernández Ramírez, Aracely, Vázquez Rodríguez, Sofía
Formato: Artículo
Lenguaje:inglés
Publicado: 2020
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Acceso en línea:http://eprints.uanl.mx/20130/1/1-s2.0-S2352340919312107-main.pdf
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author Castilla Caballero, Deyler
Barraza Burgos, Juan
Gunasekaran, Sundaram
Roa Espinosa, Aicardo
Colina Márquez, José
Machuca Martínez, Fiderman
Hernández Ramírez, Aracely
Vázquez Rodríguez, Sofía
author_facet Castilla Caballero, Deyler
Barraza Burgos, Juan
Gunasekaran, Sundaram
Roa Espinosa, Aicardo
Colina Márquez, José
Machuca Martínez, Fiderman
Hernández Ramírez, Aracely
Vázquez Rodríguez, Sofía
author_sort Castilla Caballero, Deyler
collection Repositorio Institucional
description Biochars are emerging eco-friendly products showing outstanding properties in areas such as carbon sequestration, soil amendment, bioremediation, biocomposites, and bioenergy. These interesting materials can be synthesized from a wide variety of waste-derived sources, including lignocellulosic biomass wastes, manure and sewage sludge. In this work, abundant data on biochars produced from coconut-shell wastes obtained from the Colombian Pacific Coast are presented. Biochar synthesis was performed varying the temperature (in the range: 280 �Ce420 �C) and O2 feeding (in the range: 0e5% v/v) in the pyrolysis reaction. Production yields and some biochar properties such as particle size, Zeta Potential, elemental content (C, N, Al, B, Ca, Cu, Fe, K, Li, Mg, Mn, Na, P, S, Ti, Zn), BET surface area, FT-IR spectrum, XRD spectrum, and SEM morphology are presented. This data set is a comprehensive resource to gain a further understanding of biochars, and is a valuable tool for addressing the strategic exploitation of the multiple benefits they have
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spelling eprints-201302024-03-06T16:00:12Z http://eprints.uanl.mx/20130/ Experimental data on the production and characterization of biochars derived from coconut-shell wastes obtained from the Colombian Pacific Coast at low temperature pyrolysis Castilla Caballero, Deyler Barraza Burgos, Juan Gunasekaran, Sundaram Roa Espinosa, Aicardo Colina Márquez, José Machuca Martínez, Fiderman Hernández Ramírez, Aracely Vázquez Rodríguez, Sofía QD Química Biochars are emerging eco-friendly products showing outstanding properties in areas such as carbon sequestration, soil amendment, bioremediation, biocomposites, and bioenergy. These interesting materials can be synthesized from a wide variety of waste-derived sources, including lignocellulosic biomass wastes, manure and sewage sludge. In this work, abundant data on biochars produced from coconut-shell wastes obtained from the Colombian Pacific Coast are presented. Biochar synthesis was performed varying the temperature (in the range: 280 �Ce420 �C) and O2 feeding (in the range: 0e5% v/v) in the pyrolysis reaction. Production yields and some biochar properties such as particle size, Zeta Potential, elemental content (C, N, Al, B, Ca, Cu, Fe, K, Li, Mg, Mn, Na, P, S, Ti, Zn), BET surface area, FT-IR spectrum, XRD spectrum, and SEM morphology are presented. This data set is a comprehensive resource to gain a further understanding of biochars, and is a valuable tool for addressing the strategic exploitation of the multiple benefits they have 2020 Article PeerReviewed text en cc_by_nc_nd http://eprints.uanl.mx/20130/1/1-s2.0-S2352340919312107-main.pdf http://eprints.uanl.mx/20130/1.haspreviewThumbnailVersion/1-s2.0-S2352340919312107-main.pdf Castilla Caballero, Deyler y Barraza Burgos, Juan y Gunasekaran, Sundaram y Roa Espinosa, Aicardo y Colina Márquez, José y Machuca Martínez, Fiderman y Hernández Ramírez, Aracely y Vázquez Rodríguez, Sofía (2020) Experimental data on the production and characterization of biochars derived from coconut-shell wastes obtained from the Colombian Pacific Coast at low temperature pyrolysis. Data in Brief, 28. p. 104855. ISSN 2352-3409 http://doi.org/10.1016/J.DIB.2019.104855 doi:10.1016/J.DIB.2019.104855
spellingShingle QD Química
Castilla Caballero, Deyler
Barraza Burgos, Juan
Gunasekaran, Sundaram
Roa Espinosa, Aicardo
Colina Márquez, José
Machuca Martínez, Fiderman
Hernández Ramírez, Aracely
Vázquez Rodríguez, Sofía
Experimental data on the production and characterization of biochars derived from coconut-shell wastes obtained from the Colombian Pacific Coast at low temperature pyrolysis
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Experimental data on the production and characterization of biochars derived from coconut-shell wastes obtained from the Colombian Pacific Coast at low temperature pyrolysis
title_full Experimental data on the production and characterization of biochars derived from coconut-shell wastes obtained from the Colombian Pacific Coast at low temperature pyrolysis
title_fullStr Experimental data on the production and characterization of biochars derived from coconut-shell wastes obtained from the Colombian Pacific Coast at low temperature pyrolysis
title_full_unstemmed Experimental data on the production and characterization of biochars derived from coconut-shell wastes obtained from the Colombian Pacific Coast at low temperature pyrolysis
title_short Experimental data on the production and characterization of biochars derived from coconut-shell wastes obtained from the Colombian Pacific Coast at low temperature pyrolysis
title_sort experimental data on the production and characterization of biochars derived from coconut shell wastes obtained from the colombian pacific coast at low temperature pyrolysis
topic QD Química
url http://eprints.uanl.mx/20130/1/1-s2.0-S2352340919312107-main.pdf
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