Investigation on Reinforcement Effects of Nanocellulose on the Mechanical Properties, Water Absorption Capacity, Biodegradability, Optical Properties, and Thermal Stability of a Polyvinyl Alcohol Nanocomposite Film

Bacha, Ebise Getacho and Demsash, Hundessa Dessalegn and Shumi, Lema Deme and Debesa, Bune Erre and Szekely, Gyorgy (2022) Investigation on Reinforcement Effects of Nanocellulose on the Mechanical Properties, Water Absorption Capacity, Biodegradability, Optical Properties, and Thermal Stability of a Polyvinyl Alcohol Nanocomposite Film. Advances in Polymer Technology, 2022. pp. 1-10. ISSN 0730-6679

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Abstract

This paper presents the reinforcement of nanocellulose (NC) in polyvinyl alcohol (PVA) to examine the effect of the amount of reinforcement on the properties of PVA. The nanocellulose was successfully extracted by sulfuric acid hydrolysis method and ultrasonication, and successively reinforced with polyvinyl alcohol by the solvent-casting method. After incorporating nanocellulose into the PVA matrix, the effect of nanocellulose on the tensile strength, elongation at break, water absorption capacity, transmittance, thermal stability, and biodegradability of PVA was investigated. The tensile strength increased from to and with the addition of 2%NC and 5%NC, respectively. The elongation at break increased from to with 2%NC, and after the reinforcement of 7%NC, it decreased to . The water absorption capacity result reveals that neat PVA absorbs the highest amount of water which is and is reduced to by adding 2%NC. By increasing the nanocellulose loading to 7%, the water intake capacity was reduced to which illustrates the water intake was reduced linearly with the increment of NC. The ultraviolet-visible (UV-Vis) result implies that the transmittance of neat PVA and PVA-2%NC composite film was 85.4% and 78.2% at 600 nm, respectively, which indicates the decrement in transmittance. The thermogravimetry analysis (TGA) reveals that the thermal stability of polyvinyl alcohol after incorporating nanocellulose particles was reduced. The weight loss of neat PVA is after 90 days while the weight loss of the PVA composite films reinforced with 1%, 3%, 5%, 7%, and 9% was , , , , and , respectively. The scanning electron microscopy micrograph for the PVA-6%NC nanocomposite film reveals a dispersion of nanocellulose in a matrix.

Item Type: Article
Subjects: T Technology > T Technology (General)
Depositing User: APLOS Library
Date Deposited: 09 Jun 2022 06:52
Last Modified: 09 Jun 2022 06:52
URI: http://eprints.asianrepository.com/id/eprint/280

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