Mechanical evaluation and characterization of hybrid sugarcane bagasse microfibrillated cellulose with added filler materials for use as disposable utensils

Wibowo, Ari and Alandro, Daffa and S. Killian, Manuela and Nugroho, Gesang and N. V. Raghu, Swathi and Akhsin Muflikhun, Muhammad (2024) Mechanical evaluation and characterization of hybrid sugarcane bagasse microfibrillated cellulose with added filler materials for use as disposable utensils. Advanced Composite Materials, 33 (1). 1 – 21. ISSN 09243046

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Abstract

Sugarcane bagasse–based raw materials are predominantly used for their low cost and ease of availability of cellulosic materials for biocomposite engineering. Herein, we use cellulose derived from bagasse to form microfibrillated cellulose (MFC). Unmodified MFCs were chemically characterized using FTIR and SEM-EDX analysis and later treated with the addition of filler materials, such as glass powder, air bubbles, and activated carbon, in order to enhance material properties. Sugarcane bagasse microfibrillated cellulose with added filler materials were subsequently evaluated with respect to their mechanical, structural, and chemical properties. The MFC was synthesized via a facile microfibrillation process enabled by a kitchen blender at ambient conditions. The as-formed MFC was thoroughly characterized chemically to identify any chemical compositional variations, especially those observed as a result of filler addition. Changes in mechanical properties of MFCs in the presence of individual filler materials were evaluated using tensile testing and are reported at a nearly comparable strength of ~3.63 MPa. The addition of filler materials resulted in the improvement of MFC such that the MFC was easily drawn into pliable sheets. The increased flexibility of the MFC offers a simple strategy to create bagasse-based disposable utensils that could promote sustainable and eco-friendly commodities. © 2023 Japan Society for Composite Materials, Korean Society for Composite Materials and Informa UK Limited, trading as Taylor & Francis Group.

Item Type: Article
Additional Information: Cited by: 7
Uncontrolled Keywords: Activated Carbon; Bagasse; Cost Engineering; Disposables; Fillers; Mixing; Activated carbon; Bagasse; Blending; Cost engineering; Fillers; Hybrid composites; Tensile testing; Biocomposite; Cellulosic material; Disposables; Filler materials; Low-costs; Mechanical characterizations; Mechanical evaluation; Microfibril; Sugar-cane bagasse; Sugarcane; Cellulose
Subjects: T Technology > TJ Mechanical engineering and machinery
Divisions: Faculty of Engineering > Mechanical and Industrial Engineering Department
Depositing User: Rita Yulianti Yulianti
Date Deposited: 15 Jan 2025 02:56
Last Modified: 15 Jan 2025 02:56
URI: https://ir.lib.ugm.ac.id/id/eprint/13848

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