Micro- and Nanofibrillated Cellulose (MNFC) from Pineapple (Ananas comosus) Stems and Their Application on Polyvinyl Acetate (PVAc) and Urea-Formaldehyde (UF) Wood Adhesives

Author:

Rigg-Aguilar Priscilla1,Moya Roger1ORCID,Oporto-Velásquez Gloria S.2ORCID,Vega-Baudrit José3ORCID,Starbird Ricardo4,Puente-Urbina Allen4,Méndez Daniel5,Potosme Luis Diego5,Esquivel Marianelly5

Affiliation:

1. Escuela de Ingeniería Forestal, Instituto Tecnológico de Costa Rica, Apartado Cartago, 159-7050, Costa Rica

2. School of Forestry and Natural Resources, Wood Science and Technology, West Virginia University, Morgantown, WV 26506, USA

3. Laboratorio Nacional Nanotecnologia (LANOTEC), Centro Nacional de Alta Tecnologia-CENAT, San Jose, Costa Rica

4. Centro de Investigación y de Servicios Químicos y Microbiológicos (CEQIATEC), Escuela de Química, Instituto Tecnológico de Costa Rica, Cartago, Costa Rica

5. Laboratorio de Polímeros, Escuela de Química, Universidad Nacional de Costa Rica, Heredia., Costa Rica

Abstract

Micro- and nanofibrillated cellulose (MNFC) was extracted from pineapple stems by acid hydrolysis, then characterized and tested in two concentrations (0.5 and 1.0 wt%) in polyvinyl acetate (PVAc) and urea-formaldehyde (UF) adhesives. The modified adhesives were used to glue three tropical wood species (Vochysia ferruginea, Cordia alliodora, and Gmelina arborea), and their corresponding bond strength resistance was determined. MNFC and the correspondent adhesives were characterized by TGA, FTIR, SEM, TEM, AFM, and viscosity determination. The TGA analysis of MNFC showed three decomposition reactions. The SEM, TEM, and AFM evaluations demonstrated the presence of micro- and nanosized dimensions of particles after the acid hydrolysis of pineapple stems. Adding 1 wt% MNFC to PVAc and UF adhesives increased their thermal stability in similar manner. Viscosity diminished in both modified adhesives with MNFC; however, this reduction did not affect the adhesion properties in the tropical wood tested. MNFC added to PVAc and UF adhesives improved shear strength (SS) of the glue line in the three tropical species tested. The highest SS increase was obtained when adding 0.5 wt% MNFC to PVAc in V. ferruginea, and 1 wt% MNFC concentration in the case of C. alliodora and G. arborea. In the case of UF adhesives, the application of 1 wt% MNFC produced significant differences in SS for the three tropical species studied.

Funder

West Virginia University

Publisher

Hindawi Limited

Subject

General Materials Science

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