The chemical and structural changes of three lignocellulosic biomass samples during pyrolysis were investigated using both conventional and advanced characterization techniques. The use of ATR-FTIR as a characterization tool is extended by the proposal of a method to determine aromaticity, the calculation of both CH2/CH3 ratio and the degree of aromatic ring condensation ((R/C)u). With increasing temperature, the H/C and O/C ratios, XA and CH2/CH3 ratio decreased, while (R/C)u and aromaticity increased. The micropore network developed with increasing temperature, until the coalescence of pores at 1100 °C, which can be linked to increasing carbon densification, extent of aromatization and/or graphitization of the biomass chars. WAXRD-CFA mea...
This study reports the effect of feedstock origin, residence time, and heat treatment temperature on...
We have mapped the formation of tars during white oak thermochemical conversion using a bench scale ...
Lignin is a key component in the biomass with a complex polymeric structure of the phenyl-C3 alkyl u...
The chemical and structural changes of three lignocellulosic biomass samples during pyrolysis were i...
This study investigated the pyrolysis of lignin pyrolysis in a temperature region from 200 to 800 °C...
Bio-chars were produced by co-pyrolysis of lignin with high-density polyethylene at 350 °C, 450 °C, ...
The aromatic carbon structure is a defining property of chars and is often expressed with the help o...
International audienceChar is produced during pyrolysis of biomass and it could be valorised as soil...
This work investigates the effect of temperature and particle size on the product yields and structu...
<p> The pyrolysis of three representative sources of biomass, namely, white ash, switchgrass and co...
The physical and chemical structure as well as gasification reactivities of chars generated from sev...
International audienceSolid char is a product of biomass pyrolysis. It contains a high proportion of...
This study reports the effect of feedstock origin, residence time, and heat treatment temperature on...
We have mapped the formation of tars during white oak thermochemical conversion using a bench scale ...
Lignin is a key component in the biomass with a complex polymeric structure of the phenyl-C3 alkyl u...
The chemical and structural changes of three lignocellulosic biomass samples during pyrolysis were i...
This study investigated the pyrolysis of lignin pyrolysis in a temperature region from 200 to 800 °C...
Bio-chars were produced by co-pyrolysis of lignin with high-density polyethylene at 350 °C, 450 °C, ...
The aromatic carbon structure is a defining property of chars and is often expressed with the help o...
International audienceChar is produced during pyrolysis of biomass and it could be valorised as soil...
This work investigates the effect of temperature and particle size on the product yields and structu...
<p> The pyrolysis of three representative sources of biomass, namely, white ash, switchgrass and co...
The physical and chemical structure as well as gasification reactivities of chars generated from sev...
International audienceSolid char is a product of biomass pyrolysis. It contains a high proportion of...
This study reports the effect of feedstock origin, residence time, and heat treatment temperature on...
We have mapped the formation of tars during white oak thermochemical conversion using a bench scale ...
Lignin is a key component in the biomass with a complex polymeric structure of the phenyl-C3 alkyl u...