Mixing Analysis of Bamboo and Natural Iron Sand as a Magnetic Material

Helena Artasari Sihombing, Martha Riana, Syahrul Humaidi

Abstract


This study aims to determine the magnetic properties of Fe3O4 synthesized from rope bamboo and natural iron sand. In this study, natural magnetic bio-char of bamboo and iron sand was synthesized by the co-precipitation method at a calcination temperature of 500oC. Then it was characterized through several tests, namely XRD and VSM. The results of the XRD test showed that the synthesis of natural bamboo + iron sand produced HKL peaks that were identical to Fe3O4 where these peaks were the peaks of magnetite and hematite. Magnetic properties were tested using VSM through a hysteresis curve with samples classified as soft magnets.

Keywords


magnetic, XRD, VSM

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References


Calvo, S., Arias, N. P., Giraldo, O., Rosales-Rivera, A., & Moscoso, O. (2012). Thermal and magnetic behavior of Angustifolia Kunth bamboo fibers covered with Fe 3O 4 particles. Physica B: Condensed Matter, 407(16), 3267–3270. https://doi.org/10.1016/j.physb.2011.12.083

Heryanto, H., & Tahir, D. (2021). The correlations between structural and optical properties of magnetite nanoparticles synthesised from natural iron sand. Ceramics International, 47(12), 16820–16827. https://doi.org/10.1016/j.ceramint.2021.02.255

Qian, M. F., Zhang, X. X., Li, X., Zhang, R. C., Martin, P. G., Sun, J. F., Geng, L., Scott, T. B., & Peng, H. X. (2020). Magnetocaloric effect in bamboo-grained Ni-Mn-Ga microwires over a wide working temperature interval. Materials and Design, 190. https://doi.org/10.1016/j.matdes.2020.108557

Rianna, M., Sembiring, T., Situmorang, M., Kurniawan, C., Setiadi, E. A., Tetuko, A. P., Simbolon, S., Ginting, M., & Sebayang, P. (2018). CHARACTERIZATION OF NATURAL IRON SAND FROM KATA BEACH, WEST SUMATRA WITH HIGH ENERGY MILLING (HEM). Jurnal Natural, 18(2), 97–100. https://doi.org/10.24815/jn.v18i2.11163

Rianna, M., Sembiring, T., Situmorang, M., Kurniawan, C., Tetuko, A. P., Setiadi, E. A., Priyadi, I., Ginting, M., & Sebayang, P. (2019). Effect of calcination temperature on Microstructures, magnetic properties, and microwave absorption on BaFe 11.6 Mg 0.2 Al 0.2 O 19 synthesized from natural iron sand. Case Studies in Thermal Engineering, 13. https://doi.org/10.1016/j.csite.2019.100393

Simamora, P., Saragih, C. S., Hasibuan, D. P., & Rajagukguk, J. (2018). Synthesis of nanoparticles Fe 3 O 4 /PEG/PPy-based on natural iron sand. In Materials Today: Proceedings (Vol. 5).

Yang, L., Lou, Z., Han, X., Liu, J., Wang, Z., Zhang, Y., Wu, X., Yuan, C., & Li, Y. (2020). Fabrication of a novel magnetic reconstituted bamboo with mildew resistance properties. Materials Today Communications, 23. https://doi.org/10.1016/j.mtcomm.2020.101086

Yin, Z., Liu, Y., Liu, S., Jiang, L., Tan, X., Zeng, G., Li, M., Liu, S., Tian, S., & Fang, Y. (2018). Activated magnetic biochar by one-step synthesis: Enhanced adsorption and coadsorption for 17β-estradiol and copper. Science of the Total Environment, 639, 1530–1542. https://doi.org/10.1016/j.scitotenv.2018.05.130

Zhao, X., Yan, J., Huang, Y., Liu, X., Ding, L., Zong, M., Liu, P., & Li, T. (2021). Magnetic porous CoNi@C derived from bamboo fiber combined with metal-organic-framework for enhanced electromagnetic wave absorption. Journal of Colloid and Interface Science, 595, 78–87. https://doi.org/10.1016/j.jcis.2021.03.109




DOI: https://doi.org/10.33394/j-ps.v11i2.8001

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Copyright (c) 2023 Helena Artasari Sihombing, Martha Riana, Syahrul Humaidi

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J-PS (Prisma Sains: Jurnal Pengkajian Ilmu dan Pembelajaran Matematika dan IPA IKIP Mataram) p-ISSN (print) 2338-4530, e-ISSN (online) 2540-7899 is licensed under a Creative Commons Attribution 4.0 International License.

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