4.6 Article

Effective Use of Flax Biomass in Biorefining Processes

Journal

APPLIED SCIENCES-BASEL
Volume 13, Issue 13, Pages -

Publisher

MDPI
DOI: 10.3390/app13137359

Keywords

flax biomass; biorefining process; alkaline pretreatment; SSF; bioethanol; biocomposites; mold fungi

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Flax is a versatile plant that can be used for the production of biofuels and green composites. This study compares the susceptibility of different flax varieties to biorefining processes and investigates their potential for bioethanol production. The fiber flax variety PET 16/20 showed the highest concentration of ethanol and the greatest susceptibility to mold fungi in the biocomposites.
Flax is one of the few plants that are entirely a source of raw materials for further production. Promising directions for the use of flax biomass may be the production of bioenergy in the form of 2G biofuels and the production of green composites. The aim of the study is to compare the biomass of fiber flax, linseed and dual-purpose varieties of cultivated flax (Linum usitatissimum L.) susceptibility to the biorefining processes. In the first stage of the research, based on the results of yield structure features and biometric measurements of plants, the most optimal flax line was selected for the fiber flax, linseed and dual purpose. Next, the forms of flax were pretreated with sodium hydroxide (NaOH), the chemical composition was determined and SEM images were taken. The obtaining of bioethanol process SFF (simultaneous saccharification and fermentation) was carried out. In addition, biodegradable polymers were modified with flax biomass, shapes were prepared, and the rheological and mechanical properties, as well as microbiological activity of biocomposites, were determined. The highest concentration of ethanol (8.72 g & BULL;L-1) and the greatest susceptibility to mold fungi of the biocomposites were obtained for the fiber flax variety PET 16/20.

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