Utilize este identificador para referenciar este registo: http://hdl.handle.net/10400.5/21458
Título: Delignification of Cistus ladanifer biomass by organosolv and alkali processes
Autor: Alves-Ferreira, Júnia
Lourenço, Ana
Morgado, Francisca
Duarte, Luís C.
Roseiro, Luísa B.
Fernandes, Maria C.
Pereira, Helena
Carvalheiro, Florbela
Palavras-chave: biorefinery
enzymatic hydrolysis
glucan-enriched solids
lignin-derived products
analytical pyrolysis
rock-rose
Data: 2021
Editora: MDPI
Citação: Alves-Ferreira, J.; Lourenço, A.; Morgado, F.; Duarte, L.C.; Roseiro, L.B.; Fernandes, M.C.; Pereira, H.; Carvalheiro, F. Delignification of Cistus ladanifer Biomass by Organosolv and Alkali Processes. Energies 2021, 14, 1127
Resumo: Residues of Cistus ladanifer obtained after commercial steam distillation for essential oil production were evaluated to produce cellulose enriched solids and added-value lignin-derived compounds. The delignification of extracted (CLRext) and extracted and hydrothermally pretreated biomass (CLRtreat) was studied using two organosolv processes, ethanol/water mixtures (EO), and alkali-catalyzed glycerol (AGO), and by an alkali (sodium hydroxide) process (ASP) under different reaction conditions. The phenolic composition of soluble lignin was determined by capillary zone electrophoresis and by Py-GC/MS, which was also used to establish the monomeric composition of both the delignified solids and isolated lignin. The enzymatic saccharification of the delignified solids was also evaluated. The ASP (4% NaOH, 2 h) lead to both the highest delignification and enzymatic saccharification (87% and 79%, respectively). A delignification of 76% and enzymatic hydrolysis yields of 72% were obtained for AGO (4% NaOH) while EO processes led to lower delignification (maximum lignin removal 29%). The residual lignin in the delignified solids were enriched in Gand H-units, with S-units being preferentially removed. The main phenolics present in the ASP and AGO liquors were vanillic acid and epicatechin, while gallic acid was the main phenolic in the EO liquors. The results showed that C. ladanifer residues can be a biomass source for the production of lignin-derivatives and glucan-rich solids to be further used in bioconversion processes
URI: http://hdl.handle.net/10400.5/21458
DOI: https:// doi.org/10.3390/en14041127
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