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Enzymatic oxidation of lignosulfonates and hydroxycinnamic acids/xylan associated to adhesives preparation

Grant number:19/25867-3
Support Opportunities:Program for Research on Bioenergy (BIOEN) - Regular Program Grants
Start date: February 01, 2021
End date: January 31, 2024
Field of knowledge:Physical Sciences and Mathematics - Chemistry - Organic Chemistry
Principal Investigator:Andre Luis Ferraz
Grantee:Andre Luis Ferraz
Host Institution: Escola de Engenharia de Lorena (EEL). Universidade de São Paulo (USP). Lorena , SP, Brazil
City of the host institution:Lorena
Associated researchers:Adriane Maria Ferreira Milagres

Abstract

The current project aims to integrate lignosulfonate and xylan production in a biorefinery processing sugarcane bagasse, and explores the transformation of the lignosulfonates and hydroxycinammic acids linked to xylans through enzymatic and chemical reactions to produce adhesives. The experimental approach of the project can be divided into two main frameworks: 1) The oxidative transformation of lignosulfonates and hydroxycinammic acids linked to xylans will be developed by using laccases, polyphenol-oxidases and tyrosinases. These oxidative transformations will be performed in situ during adhesion of wood veneers to evaluate the quality of the reticulated macromolecules as adhesives for wood fibers. The expectation is that the lignosulfonates and the xylans, being water soluble, could infiltrate adjacent fiber cell walls, and their enzymatic cross-link would increase their molar masses, as well as would promote new covalent bonds between lignosulfonates and xylans with the lignin contained in the fiber cell walls providing fiber adhesion. 2) Another alternative to be evaluated in the project would be to use the lignosulfonates or their enzymatic transformation products as phenol precursors in the preparation of epoxy resins through reaction with epichlorohydrin. Prepared epoxy resins would be further cross-linked with aliphatic amines to provide new thermosets with high wood adhesion capacity. Overall, the project will develop a biorefinery model that includes production of lignosulfonates and xylans useful for preparing wood adhesives. The use of these new materials for fiber adhesion in fiberboards and plywood production is envisaged as new uses of biomass derived compounds. (AU)

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Scientific publications (5)
(The scientific publications listed on this page originate from the Web of Science or SciELO databases. Their authors have cited FAPESP grant or fellowship project numbers awarded to Principal Investigators or Fellowship Recipients, whether or not they are among the authors. This information is collected automatically and retrieved directly from those bibliometric databases.)
SILVA, VERONICA TAVILLA F.; RUSCHONI, UIRAJA C. M.; FERRAZ, ANDRE; MILAGRES, ADRIANE M. F.. Xylan, Xylooligosaccharides, and Aromatic Structures With Antioxidant Activity Released by Xylanase Treatment of Alkaline-Sulfite-Pretreated Sugarcane Bagasse. FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, v. 10, p. 11-pg., . (19/25867-3)
HEINZ, OTTO; RENCORET, JORGE; DEL RIO, JOSE C.; FERRAZ, ANDRE. Using Undigested Biomass Solid Leftovers from the Saccharification Process to Integrate Lignosulfonate Production in a Sugarcane Bagasse Biorefinery. ACS SUSTAINABLE CHEMISTRY & ENGINEERING, v. 10, n. 23, p. 10-pg., . (19/25867-3)
SANDAY, DANIELLE H.; COELHO, HENRIQUE C. P.; SARON, CLODOALDO; FERRAZ, ANDRE. Renewable Phenolic Oligomers from Self-Acid Condensation of Vanillyl Alcohol and Vanillyl Alcohol/Lignosulfonate Mixtures for Use in Epoxy/Amine Thermosets. ACS SUSTAINABLE CHEMISTRY & ENGINEERING, v. 13, n. 11, p. 11-pg., . (19/25867-3, 22/09174-0, 23/02415-5)
RUSCHONI, UIRAJA CAYOWA MAGALHAES; CHAGAS, PEDRO JORGE FONSECA; DE WEVER, PIETER; EYLEY, SAMUEL; THIELEMANS, WIM; MILAGRES, ADRIANE MARIA FERREIRA; FARDIM, PEDRO; FERRAZ, ANDRE. Laccase-Mediated Incorporation of Xylans and Lignin-Carbohydrate Complexes into High-Yield Eucalyptus Kraft Fibers. ACS OMEGA, v. N/A, p. 11-pg., . (19/25867-3)
FERNANDES, ANDRE J.; SHIBUKAWA, VINICIUS P.; PRATA, ARNALDO M. R.; SEGATO, FERNANDO; DOS SANTOS, JULIO C.; FERRAZ, ANDRE; MILAGRES, ADRIANE M. F.. Using low-shear aerated and agitated bioreactor for producing two specific laccases by trametes versicolor cultures induced by 2,5-xylidine: Process development and economic analysis. Bioresource Technology, v. 401, p. 8-pg., . (19/25867-3)