Biochar as a Fuel: 3. Mechanistic Understanding on biochar thermal annealing at mild temperatures and its effect on biochar reactivity (Record no. 174419)

MARC details
000 -LEADER
fixed length control field 02626nab a2200205 4500
008 - CÓDIGOS DE INFORMACIÓN DE LONGITUD FIJA - INFORMACIÓN GENERAL
Campo de control de longitud fija 260224s2011 xxu
245 00 - TITULO
Título Biochar as a Fuel: 3. Mechanistic Understanding on biochar thermal annealing at mild temperatures and its effect on biochar reactivity
260 ## - PUBLICACION, DISTRIBUCION, ETC
Lugar de publicación, distribución, etc.
Nombre de publicador, distribuidor, etc.
Fecha de publicación, distribución, etc. ene./feb. 2011
270 ## - FECHA DE CARGA
Fecha de carga 04/04/2011 ; 04/04/2011
300 ## - DESCRIPCION FISICA
Otra extensión 9 p. ; 406–414
520 ## - RESUMEN, ETC
Resumen Transcripción del resumen del autor. This study reports a mechanistic investigation on the thermal annealing process at mild temperatures (750 and 900 °C) and its effect on the reactivity of biochar prepared from the pyrolysis of a Western Australia mallee wood. A range of analyses were carried out, including biochar oxidation reactivity, inorganic species, oxygen and hydrogen contents in the biochars, release of heteroatoms in biochar as the gaseous product, and biochar structural evolution during thermal annealing. Extensive thermal annealing (up to 600 min) of biochars at 750 and 900 °C leads to little loss of inorganic species from the biochars. Fourier transform (FT)-Raman spectroscopic analysis further shows that thermal annealing induces a progressively more ordered carbonaceous structure with an increase in the temperature and thermal annealing time. The process is coupled with the loss of heteroatoms, released as dominantly H2 and to a less extent CO. The effect of thermal annealing is drastic during the initial period up to 60 min and levels off with further holding at the annealing temperatures. As thermal annealing progresses, a carbon structural transformation clearly takes place and condenses at least part of the reactive and amorphous structures into larger and more inert ring systems, although little graphitization of biochar carbon structure is evidenced. As a result, thermal annealing leads to a significant change in the biochar reactivity. In the absence of catalytic species, the reduction in biochar reactivity is due to the ordering of the carbon structure induced by thermal annealing. In the presence of catalytic species, the changes in biochar reactivity are results of changes in both the carbon structure and catalytic activity. The changes in the catalytic activity appear to suggest a change in the form and dispersion of the catalytic species within the biochars, as results of the loss of heteroatoms and carbon structure condensation.
581 ## - ESTADO DE COLECCIÓN
Estado de colección 1
773 0# - CORRECCIÓN
Título Energy & fuels
Partes relacionadas 25
942 ## - DESC. DE MATERIAL
Tipo de item KOHA Artículo de Revista
100 1# - RESPONSABLE PERSONAL
Apellido, Nombre Yip, Kongvui
9 (RLIN) 38064
100 1# - RESPONSABLE PERSONAL
Apellido, Nombre Xu, Minghou
9 (RLIN) 18024
100 1# - RESPONSABLE PERSONAL
Apellido, Nombre Li, Chun-Zhu
9 (RLIN) 45082
Holdings
Biblioteca propietaria Biblioteca actual Fecha de adquisición Inventario Total de préstamos Inventario Fecha de carga Tipo de item KOHA
Biblioteca Alejandro Angel Bulgheroni Biblioteca Alejandro Angel Bulgheroni 05/03/2026 200052435   200052435 05/03/2026 Artículo de Revista


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