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Title Environmental assessment of the valorization of glycerol for the production of hyperthermophilic ?-glucosidase under a biorefinery approach
ID_Doc 6168
Authors Feijoo, H; Arias, A; Moreira, MT
Title Environmental assessment of the valorization of glycerol for the production of hyperthermophilic ?-glucosidase under a biorefinery approach
Year 2022
Published
DOI 10.1016/j.scp.2022.100836
Abstract Bioethanol production technologies from lignocellulosic biomass are not yet optimized and do not compete economically with first-generation bioethanol production. Strategies have been inves-tigated to produce more active, stable and temperature-tolerant enzymes to be used for biomass hydrolysis such as the hyperthermophilic beta-glucosidase produced by Yarrowia lipolytica. The use of this strain offers an additional competitive advantage, as it can use glycerol stream from the biodiesel process as a carbon source. In this way, not only is a by-product of biofuel production used, but the enzyme could be applied in the production of lignocellulosic ethanol, increasing the value chain by closing the bioeconomy cycle. To this end, large-scale process modelling of beta-glucosidase production has been developed to collect the inventory data needed for life cycle assessment methodology. The fermentation stage is the largest contributor to environmental impacts, with electricity being the main hotspot identified, contributing more than 50% in most impact categories. Residual glycerol has also been identified as a critical input, with a significant contribution in some categories. To improve the environmental profile, a sensitivity analysis has been carried out considering reductions in electricity and heat consumption, and other alternative oil-based resources for the production of biodiesel. This analysis identified that large environ-mental reductions could be achieved, which makes the valorization of the glycerol obtained as a side stream of biodiesel production more realistic.
Author Keywords Bioethanol; Y; lipolytica; Biotechnological process; Environmental assessment; Circular economy; Waste side -streams valorization
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000869450900005
WoS Category Chemistry, Multidisciplinary; Green & Sustainable Science & Technology; Environmental Sciences
Research Area Chemistry; Science & Technology - Other Topics; Environmental Sciences & Ecology
PDF https://doi.org/10.1016/j.scp.2022.100836
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