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Characterization of Nanocomposite Mixture Polyvinyl Alcohol and Rice Husk Ash

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Rice husk ash (RHA) nanoparticles were prepared to be applied as a filler in the formation of Polyvinyl Alcohol (PVA) nanocomposites. The manufacture of rice husk ash nanoparticles involved the Ball Mill method and the coprecipitation method, while the manufacture of Polyvinyl Alcohol nanocomposite membranes and rice husk ash was carried out by the sol-gel method. The results of XRD analysis using Match software indicated that the crystal structure of rice husk ash is monoclinic with a particle size of 16.55 nm. The mechanical test results obtained the largest elastic modulus of 29.28 MPa in 3% rice husk ash mixture, the largest tensile test of 8.83 MPa in 1% rice husk ash mixture, and the largest elongation at break of 82.08% in 4% rice husk ash mixture. The addition of rice husk ash as a filler can improve the mechanical properties of PVA/rice husk ash nanocomposites.
Słowa kluczowe
Rocznik
Strony
268–--273
Opis fizyczny
Bibliogr. 27 poz., rys.
Twórcy
  • Department of Physics, Faculty of Mathematics and Natural Sciences, Universitas Negeri Medan, 20221, Indonesia
  • Department of Physics, Faculty of Mathematics and Natural Sciences, Universitas Negeri Medan, 20221, Indonesia
  • Department of Physics, Faculty of Mathematics and Natural Sciences, Universitas Negeri Medan, 20221, Indonesia
Bibliografia
  • 1. Abdul Wahab, R.A., Mohd Zaid, M.H. Aziz, S.H.A., Amin Matori, K., Fen, Y.W., Yaakob, Y. 2020. Effects of sintering temperature variation on synthesis of glass-ceramic phosphor using rice husk ash as silica source. Materials, 13(23), 5413.
  • 2. Ain, H., Putranto, A., Polonia, BSE, Ravi, A. 2020. The effect of rise husk ash on concretemixing quality formula. Jurnal Gradasi Teknik Sipil, 4(1), 29–36.
  • 3. Ali, Ghaffar, Bashir, Khalid, M., Hassan, A & Bashir, Hamid, M. 2016. Utilization of rice husk and poultry wastes for renewable energy potential in Pakistan: An economic perspective. Renewable and Sustainable Energy Reviews, 61, 25–29.
  • 4. Balkis Hazmi, Umer Rashid, Yun Hin Taufiq-Yap, Mohd Lokman Ibrahim, Imededdine Arbi Nehdi. 2020. Supermagnetic nano-bifunctional catalyst from rice husk: Synthesis, characterization and application for conversion of used cooking oil to biodiesel. Catalysts, 10, 225.
  • 5. Christopher Fapohunda., Bolatito Akinbile., Ahmed Shittu. 2017. Structure and properties of mortar and concrete with rice husk ash as partial replacement of ordinary portland cement – A review. International Journal of Sustainable Built Environment, 6(2), 675–92.
  • 6. Goodship, Vannessa and Jacobs, D.K., Ogur, E. 2009. Polyvinyl alcohol: materials, processing and applications. Rapra Review Reports, 16(12).
  • 7. Haq N.B., Yusra Safa., Sobhy M.Y., Omar H. Shair., Munawar Iqbal., Arif Nazir. 2020. Efficient removal of dyes using carboxymethyl cellulose/ alginate/ polyvinylalcohol/ rice husk composite: adsorption/ desorption, kinetics and recycling studies. International Journal of Biological Macromolecules, 150(1), 861–870.
  • 8. Hazmi, B., Rashid, U., Ibrahim, M.L., Nehdi, I.A., Azam, M., Al-Resayes, S.I. 2021. Synthesis and characterization of bifunctional magnetic nanocatalyst from rice husk for production of biodiesel. Environ. Technol. Innov., 21, 101296.
  • 9. Hisham, N.E.B. dan Ramli, N.H. 2019. Effect of rice husk ash on the physicochemical properties of compost. Indonesian Journal of Chemistry, 19(4), 967–74.
  • 10. Ibrahim, M.M., Waleed, K.E., Mona, A.N. 2010. Synthesis and characterization of polyvinyl alcohol/nanospherical cellulose particle films. Carbohydrate Polymers, 79(3), 694–99.
  • 11. Khairul Rahmah., Sri Aprilia., Farid Mulana., Zuhra., Syaubari., Sofyana., Lia Meiriza., Amri Amin. 2022. Characteristics of modified polyvinyl alcohol/polyether sulfone membranes grafted silica from rice husk ash for ultrafiltration. Materials Today: Proceedings, 63(1), S110–14.
  • 12. Liu, D., Qibo, B., Yan, L., Yaru, W., Aimin, X., Huafeng, T. 2016. Effect of oxidation degrees of graphene oxide on the structure and properties of poly (vinyl alcohol). Composite Films Composites, 40, 645–56.
  • 13. Mahmud, H.B., Syamsul Bahri, Y.W. Yee., Y.T, Yeap. 2016. Effect of rice husk ash on strength and durability of high strength high-performance concrete. International Scholarly and Scientific Research & Innovation, 10(3).
  • 14. Malahayati., Evi Yufita., Ismail., Mursal., Rinaldi Idroes., Zulkarnain Jalil. 2021. The effect of natural silica from rice husk ash and nickel as a catalyst on the hydrogen storage properties of MgH2. Journal of Ecological Engineering, 22(11), 79–85.
  • 15. Musa Aminu Alhaji., Pushpendra Kumar Sharma. 2022. Combined effects of rice husk ash and hybrid fibers on the fresh and mechanical properties of recycled aggregate concrete. Materials Today: Proceedings, 62, 6695–6700.
  • 16. Nurdin Bukit, Karya Sinulingga., Abd Hakim S., Makmur Sirait., Bunga Fisikanta Bukit. 2023. Mechanical and thermal properties of HDPE thermoplastic with oil palm boiler ash nano filler. Journal of Ecological Engineering, 24(9), 355–363.
  • 17. Pakravan, H, R., Jamshidi, M., Asgharian Jeddi A.A. 2018. Combination of ground rice husk and polyvinyl alcohol fiber in cementitious composite. Journal of Environmental Management, 215, 116–22.
  • 18. Pereira, A.L.S., Do, N., Morais, J.P.S., Vasconcelos, N.F., Feitosa, J. P. 2014. Improvement of polyvinyl alcohol properties by adding nanocrystalline cellulose isolated from banana pseudostems. carbohydrate polymers, 112, 165–72.
  • 19. Qiang Su., Jinming Xu. 2023. Mechanical properties of concrete containing glass sand and rice husk ash. Construction and Building Materials, 393.
  • 20. Qiu, K., Anil, N., Netravali. 2012. Fabrication and characterization of biodegradable composites based on micro fibrillated cellulose and polyvinyl alcohol. Composite Science and Technology, 72, 1588–1594.
  • 21. Roohani, M., Youssef, H., Naceur, M, B., Ghanbar E., Ali, N.K., and Alain D. 2008. Cellulose whiskers reinforced polyvinyl alcohol copolymers nanocomposites. European Polymer Journal, 44, 2489–2498.
  • 22. Silverio, A.H. 2013. Effect of incorporating cellulose nanocrystals from corncob on the tensile, thermal, and barrier properties of poly (vinyl alcohol) nanocomposites, research article. Journal of Nanomaterials. Hindawi Publishing Corporation.
  • 23. Sirait, M., Sinulingga, K., Siregar, N., Fitri, D., Padang, S.T.W. 2021. Thermal and mechanical properties a membrane of the mixing PVA nanocomposite and limestone hydroxyapatite. Journal of Physics: Conference Series, 1811.
  • 24. Srinivasreddy, Avinash Babu., McCarthy, Timothy J., Lume, Eric. 2013. Effect of rice husk ash on workability and strength of concrete. Faculty of Engineering and Information Sciences – Papers: Part A.
  • 25. Sudirman., Aloma Karo Karo., Sulistioso Giat Sukaryo., Karina Dwi Adistiana., Kiagus Dahlan. 2020. Synthesis of nanofiber from poly vinyl alcohol (PVA)-collagen using electrospinning methods. J. Kim. Terap. Indonesia, 21(2), 55–65.
  • 26. Taha, Mohd F., Shuib, Anis Suhaila, Shaharun., Maizatul S, Borhan., Azry., Dass., Sarat Chandra., Guan., Beh Hoe., Yahya., Noorhana. 2014. Removal of Ni (II), Zn (II), and Pb (II) ions from single metal aqueous solution using rice husk-based activated carbon. Paper resented at the AIP Conference Proceedings.
  • 27. Tian, H., Jiaan, Y., Varada, R., Aimin, X., Xiaogang, L. 2017. Fabrication and properties of polyvinyl alcohol/starch blend films, effect of composition and humidity. International Journal of Biological Macromolecules, 96, 518–523.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2024).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-95dae36f-88f5-4bff-a617-eab01d9b2b4d
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