Value-added long-chain aliphatic compounds obtained through pyrolysis of phosphorylated chitin
Autor
Cabrera-Barjas, Gustavo
Jimenez, Romel
Romero, Romina
Valdes, O.
Nesic, Aleksandra
Hernández-García, Ruber
Neira, Andrónico
Alejandro-Martín, Serguei
De la Torre, Alexander F.
Fecha
2023Resumen
In this work, chitin, as a biobased polymer, is used as a precursor to obtain a phosphorylated derivatives. The influence of the different degree of phosphorylation in chitin on pyrolysis pattern was investigated. In order to understand the pyrolysis mechanism and the potential application of phosphorylated chitins, the samples were pyrolyzed at different temperatures and analyzed by FTIR, SEM, and Py-GC/MS analysis. Moreover, the thermal degradation and the evolved gases during chitin degradation and its derivatives were measured. The results showed that phosphorylation of chitin decreased the thermal stability of biopolymer and significantly changed the pattern of pyrolysis compared to neat chitin. The production of long-chain hydrocarbons was detected during pyrolysis of phosphorylated chitin, whereas this was not the case with raw chitin. Those two effects were more pronounced as the degree of phosphorylation increased. Chitin with the degree of phosphorylation (DS 1.35) exhibited the highest selectivity (91 %) towards production of long-chain hydrocarbons (C12-C17) at 500 °C. Moreover, the obtained results allowed to propose, for the first time, the mechanism of pyrolysis of phosphorylated chitin.
Fuente
International Journal of Biological Macromolecules, 238, 124130Link de Acceso
Click aquí para ver el documentoIdentificador DOI
doi.org/10.1016/j.ijbiomac.2023.124130Colecciones
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