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The characterization of nanocellulose with various durations and NaOH concentration

Suanto, Pengki and Saloma, Saloma and Usman, Arie Putra and Saggaff, Anis and Ismail, Mohammad and A. Khalid, Nur Hafizah (2022) The characterization of nanocellulose with various durations and NaOH concentration. International Journal of Innovative Research and Scientific Studies, 5 (1). pp. 18-29. ISSN 2617-6548

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Official URL: http://dx.doi.org/10.53894/ijirss.v5i1.343

Abstract

C. The physical, chemical, and microstructural properties were analyzed using Scanning Electron Microscope (SEM), X-Ray Diffraction (XRD), Energy Dispersive X-ray (EDX), and Fourier-transform Infrared Spectroscopy (FT-IR). The XRD results show a higher amorphous percentage after chemical synthesis. A 15% concentration heated for 6 hours, resulted in 79.68% amorphous content, and the lowest amorphous percentage in 5% NaOH with a heating duration of 4 hours, resulting in 63.69% amorphous content. Conversely, if added, acid can reduce the amorphous content and increase the crystal structure. The results of the FT-IR analysis show that treatment using NaOH and NaClO can remove lignin and hemicellulose structures in cellulose fibers. The SEM results show that the size of the structure is smoother and cleaner after treatment with NaOH and NaClO. The results of the EDX test show that with the NaOH and NaClO treatment, the chemical content was close to the chemical content of OPC. Thus, nanocellulose can be used as a substitute for some cement materials in concrete mixtures.°Nanotechnology has become an important part of industrial construction, especially in concrete structural materials. Additionally, waste is a severe environmental problem when using paper can impact waste caused by waste. The inner nanocellulose is sourced from paper waste and then synthesized using natrium hydroxide (NaOH) and natrium hypochlorite (NaClO). Nanocellulose from waste paper was synthesized with a 5%, 10%, and 15% NaOH solution and a 2% NaClO solution with variations in heating time (2 hours, 4 hours, and 6 hours) at a temperature of 125.

Item Type:Article
Uncontrolled Keywords:nanocellulose, nanomaterial, nanotechnology
Subjects:T Technology > TA Engineering (General). Civil engineering (General)
Divisions:Civil Engineering
ID Code:101283
Deposited By: Narimah Nawil
Deposited On:08 Jun 2023 08:44
Last Modified:08 Jun 2023 08:44

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