SINTESIS DAN ANALISIS KANDUNGAN MINERAL DAN KARAKTERISTIK SIFAT LISTRIK NANOPARTIKEL PASIR BESI PANTAI TELINDUNG KABUPATEN LOMBOK TIMUR
DOI:
https://doi.org/10.23887/jstundiksha.v10i1.22765Keywords:
Nanoparticles, Mineral content, Resistivity, Dielectricity, AASAbstract
This study aims to determine the mineral content as well as the characteristics of the electrical properties of the iron sand nanoparticle samples of the Telindung beach. Synthesis of iron sand nanoparticles can be done by sharing one method, namely the coprecipitation method. In the coprecipitation process, researchers used HCl and NH4OH solutions to make a sample of nano-sized iron sand (nanoparticles) of 5 samples with different sampling distances of 3 meters, 6 meters, 9 meters, 12 meters, and 5 meters. Each finished sample is then analyzed for its mineral content using AAS. The results shows that the higher the sampling distance, the higher the mineral content, namely the total Fe in the sample of iron sand nanoparticles (8.28%, 8.79%, 8.85%, 9.07% and 9.74%). Characteristics of electrical properties namely resistivity using 4 point probes with a series of power supply devices and multimeters by making 1 sample 5 times the measurement so that the value of resistivity (8.3 x 104 ,m, 9.1 x 104 Ωm, 9.6 x 104 Ωm, 10 Ωm, 3 x 104 Ωm, 11.3 x 104 Ωm), for dielectricity using a plate parallel to the LCR meter, one sample of 10 times the measurement so as to obtain the value of the dielectric constant (6.4 x 104 F, 7.9 x 104 F, 9 , 8 x 104 F, 11.6 x 104 F and 13.1 x 104). So it can be said that the higher the value of minerl candlengan that is the total Fe, the higher the value of the characteristic electrical properties are resistivity and dielectricity.
References
Andi Wiramanda, Dahlang Tahir, N. R. (n.d.). Sintesis dan penentuan sifat struktur nanopartikel ferrite (CoFe2O4) menggunakan metode kopresipitasi dengan memvariasikan suhu sintesis.
Anes Yulianingsih1), M. (2016). Analisis Komposit Fe3O4/c-SiO2 Dari Pasir Talaud Dan Pasir Lumajang. Jurnal Inovasi Fisika Indonesia (IFI), 05(2), 5–8.
Cahyono, Wijaya, A. S., & Arivah, H. N. (2017). Analisa Kualitas Semen Melalui Pengukuran. Jurnal Rekayasa Energi Manufaktur, 2(2), 57–61.
Didik, Lalu. A. (2016). Pengaruh Pemberian Medan Magnet Terhadap Konstanta Dielektrik Material AgCrO2. KONSTAN, 2 (1), 1–5.
Fitrah Ningsih, Fitrianingsih, Lalu. A. Didik. (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.
Gulita, N., Trihandaru, S., & Shanti, M. (2015). Identifikasi Sifat Dielektrik Pisang pada Tingkat Kematangan Berbeda dengan Rangkaian RLC. Radiasi: Jurnal Berkala Pendidikan Fisika, 6(2), 1–7.
Lamburu, A. A., Syafri, I., Yuningsih, E. T., & Utara, H. (2017). Karakteristik mineralogi endapan pasir besi di daerah galela utara kabupaten halmahera utara provinsi maluku utara. Bulletin of Scientific Contribution, 15(2), 151–160.
Muflihatun, S. S. dan E. S. (2015). Sintesis Nanopartikel Nickel Ferrite ( NiFe 2 O 4 ) dengan Metode Kopresipitasi dan Karakterisasi Sifat Kemagnetannya. Jurnal Fisika Indonesia No:, XIX(November), 20–25
Mustawarman, Heriansyah, E. S. (2015). Kajian Sifat Dielektrik pada Lempeng Nanopartikel Magnetit ( Fe 3 O 4 ) yang dienkapsulasi dengan Polyvinyl Alcohol ( PVA ). Jurnal Fisika Indonesia, XIX(1410–2994), 34–37.
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), 2. https://doi.org/10.22373/crc.v2i1.3246
Noor, S., Muhammad, S., Azid, A., Shirwan, M., & Sani, A. (2018). Heavy metals in the air : Analysis using Instrument , air pollution and human health-a review Heavy metals in the air : Analysis using Instrument , air pollution and human health - a review. MJFAS, 14(4). https://doi.org/10.11113/mjfas.v14n4.967
Rahmi, R. dan Y. D. J. (2018). Analisis Sifat Listrik Nanokomposit Fe3O4/PVDF Yang Disinteis Dengan Metode SOL GEL Untuk Aplikasi Elektroda Bateri Lithium Ion. Pillar of Physics, 11(2), 73–80.
Rina, Baiq Safitri, A. (2018). Analisis Kandungan Mineral Tembaga (Cu) Yang Terdapat Pada Struktur Batu Tambang Dengan Metode Atomic Absorpation Spectrofotometer (AAS). Jurnal Kpendidikan Fisika “Lensa,” 6(2), 82–85.
Saniah, Purnawan, S., & Karina, S. (2014). Karakteristik dan kandungan mineral pasir pantai Lhok Mee , Beureunut dan Leungah , Kabupaten Aceh Besar, 3(3), 263–270.
Saputro, H. (2016). Pendeposisian Besi pada Subtrat Alumunium dengan Metode Sputtering Terhadap Variasi Suhu. Journal of Physical Science and Engineering, 1(1), 30.
Setianto, Budy Santosa, D. H. and C. P. (2017). No Title. Eksakta, 18(2).
Sobirin, M., Rosita, N., Fitriawan, M., Usriyah, F., Faizal, R., & Yulianto, A. (2016). Sintesis Nanokomposit Stronsium Ferit-keramik Porselin Alumina sebagai Peningkat Struktur Dielektrik Kapasitor Berbahan Dasar Pasir Besi Mohamad. Journal of Creativity Students, 1(1), 1–6.
Susilawati, A. D. (2018). Jurnal Pendidikan Fisika dan Teknologi Volume 4 No.1, Juni 2018. Jurnal Pendidikan Fisika Dan Teknologi, 4(1), 49–55.
Tamuntuan, G., Tongkukut, S., & Pasau, G. (2017). Analisis Suseptibilitas Dan Histeresis Magnetik Pada Endapan Pasir Besi Di Sulawesi Utara. Jurnal MIPA UNSRAT, 6(2), 105–108.
Downloads
Published
How to Cite
Issue
Section
License
Authors who publish with the Jurnal Sains dan Teknologi (JST) agree to the following terms:
- Authors retain copyright and grant the journal the right of first publication with the work simultaneously licensed under a Creative Commons Attribution License (CC BY-SA 4.0) that allows others to share the work with an acknowledgment of the work's authorship and initial publication in this journal.
- Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgment of its initial publication in this journal.
- Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work. (See The Effect of Open Access)