Morphological Characteristics and Mineral Content Analysis of Magnetic Minerals Based on River and Coastal Sand using SEM-EDX

Lalu A. Didik, Program Studi Tadris Fisika, Fakultas Tarbiyah dan Keguruan, Universitas Islam Negeri Mataram, Indonesia
Isniwana Damayanti, Program Studi Tadris Fisika, Fakultas Tarbiyah dan Keguruan, Universitas Islam Negeri Mataram, Indonesia
Jumliati Jumliati, Program Studi Tadris Fisika, Fakultas Tarbiyah dan Keguruan, Universitas Islam Negeri Mataram, Indonesia
Putri Dinda Alfadia Lestari, Program Studi Tadris Fisika, Fakultas Tarbiyah dan Keguruan, Universitas Islam Negeri Mataram, Indonesia

Abstract


This study aims to analyze the mineral content and morphological characteristics of magnetic minerals based on coastal and river sand. Analysis of minerals content uses Atomic Absorption Spectroscopy (AAS) to determine the content of Fe and Energy Dispersive X-Ray (EDX) to determine the elements of magnetic minerals based on coastal and river sand. While the morphological characteristics were analyzed using Scanning Electron Microscope (SEM). Based on the AAS analysis, magnetic mineral based on coastal sand has higher Fe content (9.03 mg/gram) compared to magnetic mineral based on river sand (8.03 mg/gram). This is also confirmed by EDX analysis where the Fe content of magnetic mineral based on coastal sand is 2.07 ± 0.21%. This value is greater than the Fe content of magnetic mineral based on river sand which cannot be measured by EDX. Morphological analysis using SEM shows that magnetic mineral based on coastal sand has a relatively uniform particle size compared to magnetic mineral based on river sand. The particle size of magnetic minerals based on coastal sand also smaller than magnetic minerals based on river sand. Coastal sand also has finer size compared to river sand. This is because coastal sand sediments are formed due to the energy of sea waves so that they have a smoother structure. While river sand sediments come from limestone deposits that have a fine and coarse structure.


Keywords


magnetic minerals; coastal sand; river sand; AAS; SEM-EDX

Full Text:

PDF

References


Lusyana, A., Toifur, M., & Rohman, F. (2014). Uji sifat magnetik pasir pantai melalui penentuan permeabilitas relatif menggunakan Logger Pro. Jurnal Fisika, 4(2), 78–82.

Didik, L. A., Aini, H., & Zohdi, A. Analisis perbandingan kandungan Fe dan karakteristik sifat listrik pasir besi sungai dan pantai. Jurnal Fisika Flux: Jurnal Ilmiah Fisika FMIPA Universitas Lambung Mangkurat, 17(2), 138-145.

Asri, L., Didik, L. A., & Bahtiar, B. (2021). Sintesis dan analisis kandungan mineral dan karakteristik sifat listrik nanopartikel pasir besi Pantai Telindung Kabupaten Lombok Timur. JST (Jurnal Sains dan Teknologi), 10(1), 85-91.

Ningsih, F., Fitrianingsih, F., & Didik, L. A. (2019). Analisis pengaruh lama penggerusan terhadap resistivitas dan konstanta dielektrik pada pasir besi yang disintesis dari Kabupaten Bima. Indonesian Physical Review, 2(3), 92-98.

Nurrohman, D. T., & Pribadi, J. S. (2018). Kajian struktur kristal, lattice strain, dan komposisi kimia nanopartikel pasir besi yang disintesis dengan metode ball milling. Konstan-Jurnal Fisika dan Pendidikan Fisika, 3(2), 94-101.

Susilawati, S., Doyan, A., Taufik, M., Wahyudi, W., Gunawan, E. R., Kosim, K., & Khair, H. (2018). Identifikasi kandungan Fe pada pasir besi alam di Kota Mataram. Jurnal Pendidikan Fisika dan Teknologi, 4(1), 105-110.

Didik, L. A., & Wahyudi, M. (2020). Analisa kandungan Fe dan karakteristik sifat listrik pasir besi Pantai Telindung yang disintesis dengan beberapa metode. Indonesian Physical Review, 3(2), 64-71.

Sukirman, E., Sarwanto, Y., Insani, A., Rina, M. T., & Purwanto, A. (2018). Magnetic structure of magnetite phase of iron sand retrieved from Banten, Indonesia. Journal of Physics: Conference Series, 1091(1), 1-7.

Nengsih, S. (2018). Potensi nanopartikel magnetit pasir besi Lampanah Aceh Besar melalui studi kajian teknik pengolahan, sintesis dan karakteristik struktur. Circuit: Jurnal Ilmiah Pendidikan Teknik Elektro, 2(1), 1-8.

Lamburu, A. A., Syafri, I., & Yuningsih, E. T. (2017). Karakteristik mineralogi endapan pasir besi di daerah Galela Utara Kabupaten Halmahera Utara Provinsi Maluku Utara. Bulletin of Scientific Contribution: Geology, 15(2), 151-160..

Rianna, M., Sembiring, T., Situmorang, M., Kurniawan, C., Setiadi, E. A., Tetuko, A. P., & Sebayang, P. (2018). Characterization of natural iron sand from Kata Beach, West Sumatra with high energy milling (Hem). Jurnal Natural, 18(2), 97-100.

Fahlepy, M. R., & Tiwow, V. A. (2018, March). Characterization of magnetite (Fe3O4) minerals from natural iron sand of Bonto Kanang Village Takalar for ink powder (toner) application. Journal of Physics: Conference Series, 997(1), 1-6.

Yamauchi, K., Fukushima, T., & Picozzi, S. (2009). Ferroelectricity in multiferroic magnetite Fe 3 O 4 driven by noncentrosymmetric Fe2+/Fe3+ charge-ordering: First-principles study. Physical Review B, 79(21), 212-218.

Bilalodin, B., Sunardi, S., & Effendy, M. (2013). Analisis kandungan senyawa kimia dan uji sifat magnetik pasir Besi Pantai Ambal. Jurnal Fisika Indonesia UGM, 17(50), 29-31.

Martinez-Haro, M., Green, A. J., & Mateo, R. (2011). Effects of lead exposure on oxidative stress biomarkers and plasma biochemistry in waterbirds in the field. Environmental Research, 111(4), 530-538.

Vopel, K., Pook, C., Wilson, P., & Robertson, J. (2017). Offshore iron sand extraction in New Zealand: Potential trace metal exposure of benthic and pelagic biota. Marine Pollution Bulletin, 123(1-2), 324-328.

Mishra, S., Dey, K., Chowdhury, U., Bhattacharya, D., Ghosh, C. K., & Giri, S. (2017). Multiferroicity around Verwey transition in Fe3O4 thin films. AIP Advances, 7(12), 125015.

PurnamaWati, F. (2019). Preparation of magnetic chitosan using local iron sand for mercury removal. Heliyon, 5(5), 173-179.

Murti, F., & Ramli, D. Y. (2017). Analisis sifat listrik lapisan tipis Fe3O4 yang dipreparasi dari Pantai Tiram Kabupaten Padang Pariaman Sumatra Barat dengan metode sol-gel spin coating. Pillar of Physics, 10(1), 31-38.

Didik, L. A., Rahmawati, E., Robiandi, F., Rahayu, S., & Santjojo, D. (2014). Penentuan ketebalan lapisan polistiren dan zinc phthalocyanine (ZnPc) dengan modifikasi persamaan sauerbrey dan scanning electron microscope (SEM). Natural B, 2(4), 331-335.

Kadarisman, K., & Nurhasanah, I. Analisis permukaan nanopartikel ferit seng berdasarkan adsorpsi isoterm gas nitrogen. Berkala Fisika, 23(3), 78-82.

Djoko, D. J. D. H., Didik, L. A., Rahmawati, E., Pagaga, M., Masruroh, M., & Sakti, S. P. (2014). Solvent effect on morphology of polystyrene coating and their role to improvement for biomolecule Immobilization in application of QCM based biosensor. In Applied Mechanics and Materials (Vol. 530, pp. 54-57). Trans Tech Publications Ltd.

Angkasah, L., Adolf, H., Wibowo, G. D. H., & Asikin, Z. (2017). Bureaucratic reform in the perspective of State Administration Law. Mediterranean Journal of Social Sciences, 8(5), 35-35.

Novia, B., & Astuti, A. (2019). Pengaruh temperatur sintering terhadap struktur dan sifat magnetik Fe3O4-TiO2 sebagai penyerap gelombang mikro. Jurnal Fisika Unand, 8(4), 368-372.

Swastika, P. E., Hardheyanti, F., Prasetyowati, R., Ariswan, A., & Warsono, W. (2021). Pengaruh Konsentrasi HCl terhadap mikrostruktur dan sifat kemagnetan nanopartikel Fe3O4 yang disintesis dari pasir besi Pantai Glagah Kulonprogo. Jurnal Sains Dasar, 10(1), 24-29.

Zheng, W. C., Zheng, D. X., Wang, Y. C., Li, D., Jin, C., & Bai, H. L. (2019). Flexible Fe3O4/BiFeO3 multiferroic heterostructures with uniaxial strain control of exchange bias. Journal of Magnetism and Magnetic Materials, 481(1), 227-233.

Sulystyaningsih, N. D., Nikmatullah, A., & Setyowati, D. N. A. (2018). Analysis of using bondre system to cultivate three kinds of seaweed through different seed weights in the early summer at Ekas Bay, Jerowaru, East Lombok. International Journal of Scientific and Research Publications, 8(11), 78-86.

Nugraha, P. A., Sari, S. P., Hidayati, W. N., Dewi, C. R., & Kusuma, D. Y. (2016). The origin and composition of iron sand deposit in the southern coast of Yogyakarta. AIP Conference Proceedings, 1746(1), 1-6.

Ngo, T. N. M., Adem, U., & Palstra, T. T. M. (2015). The origin of thermally stimulated depolarization currents in multiferroic CuCrO2. Applied Physics Letters, 106(15), 152-159.

Umam, J., & Rosyidah, A. (2013). Sintesis dan karakterisasi aurivillius CaBi2Nb2O9 dan LaBi2TiNbO9 dengan metode solid state. Jurnal Sains dan Seni ITS, 2(1), 7-10.

Karyasa, I. W. (2013). Studi x-ray fluoresence dan x-ray diffraction terhadap bidang belah batu pipih asal Tejakula. Jurnal Sains dan Teknologi, 2(2), 204-212.

Gu, S. H., Nicolas, V., Lalis, A., Sathirapongsasuti, N., & Yanagihara, R. (2013). Complete genome sequence and molecular phylogeny of a newfound hantavirus harbored by the Doucet’s musk shrew (Crocidura douceti) in Guinea. Infection, Genetics and Evolution, 20(1), 118-123.

Kamiludin, U., & Darlan, Y. (2016). Karakteristik pasir di pantai dan lepas pantai Binuangeun, Lebak-Banten. Jurnal Geologi Kelautan, 11(2), 79-90.

Yudha, G. A., Suryono, C. A., & Santoso, A. (2020). Hubungan antara jenis sedimen pasir dan kandungan bahan organik di Pantai Kartini, Jepara, Jawa Tengah. Journal of Marine Research, 9(4), 423-430.

Triapriyasen, A., Muslim, M., & Suseno, H. (2016). Analisis jenis ukuran butir sedimen di perairan Teluk Jakarta. Journal of Oceanography, 5(3), 309-316.




DOI: https://doi.org/10.21831/jsd.v10i2.42217

Refbacks

  • There are currently no refbacks.


Copyright (c) 2021 Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Negeri Yogyakarta


Printed ISSN (p-ISSN): 2085-9872
Online ISSN (e-ISSN): 2443-1273

Indexer:
     

Creative Commons License
 
Jurnal Sains Dasar  is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License
 
Free counters!
 
View My Stats