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      Potential Use of Wollastonite as a Filler in UF Resin Based Medium-Density Fiberboard (MDF)

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          Abstract

          Urea-formaldehyde (UF) resins are primary petroleum-based, increasing their potential environmental footprint. Identifying additives to reduce the total amount of resin needed without adversely affecting the panel properties could reduce these impacts. Wollastonite is a mineral containing calcium and silica that has been used as an additive in a variety of materials and may be useful as a resin extender. Nanoscale wollastonite has been shown to enhance the panel properties but is costly. Micron-scale wollastonite may be a less costly alternative. Medium-density fiberboards were produced by blending a hardwood furnish with UF alone, micron-sized wollastonite alone, or a 9:1 ratio of UF to wollastonite. Panels containing of only wollastonite had poor properties, but the properties of panels with 9:1 UF/wollastonite were similar to the UF-alone panels, except for the internal bond strength. The results suggest that small amounts of micron-sized wollastonite could serve as a resin extender. Further studies are suggested to determine if the micron-sized material has similar positive effects on the resin curing rate.

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                Author and article information

                Journal
                Polymers (Basel)
                Polymers (Basel)
                polymers
                Polymers
                MDPI
                2073-4360
                27 June 2020
                July 2020
                : 12
                : 7
                : 1435
                Affiliations
                [1 ]Wood Science and Technology Department, Faculty of Materials Engineering & New Technologies, Shahid Rajaee Teacher Training University, Tehran 16788-15811, Iran; mallaki.mammad@ 123456gmail.com
                [2 ]Department of Physics, Faculty of Sciences, Shahid Rajaee Teacher Training University, Tehran 16788-15811, Iran; esmailpour@ 123456sru.ac.ir (A.E.); r.majidi@ 123456sru.ac.ir (R.M.)
                [3 ]National Centre for Timber Durability and Design Life, University of the Sunshine Coast, Brisbane, QLD 4102, Australia; jmorrell@ 123456usc.edu.au
                [4 ]Wood Biology and Wood Products, Georg-August-University Göttingen, 37077 Göttingen, Germany; hmilitz@ 123456gwdg.de
                [5 ]Laboratory of Wood Chemistry and Technology, Department of Forestry and Natural Environment, International Hellenic University, GR-661 00 Drama, Greece
                Author notes
                [* ]Correspondence: htaghiyari@ 123456sru.ac.ir (H.R.T.); antpap@ 123456for.ihu.gr (A.N.P.)
                Author information
                https://orcid.org/0000-0002-6952-0923
                https://orcid.org/0000-0001-8340-7348
                https://orcid.org/0000-0001-8451-3695
                https://orcid.org/0000-0002-1524-9138
                https://orcid.org/0000-0001-7083-9491
                https://orcid.org/0000-0002-6226-5309
                Article
                polymers-12-01435
                10.3390/polym12071435
                7408164
                32605051
                f5496581-f48c-4259-a956-ed37485b6d82
                © 2020 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 18 May 2020
                : 25 June 2020
                Categories
                Article

                engineered materials,cell-wall polymers,wollastonite,wood-based composites

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