Analisis perubahan sifat fisis (viskositas, kerapatan, tegangan permukaan dan koefisien laju penurunan suhu) minyak kelapa (coconut oil) terhadap beberapa kali pemanasan

  • Khusnul Khotimah Program Studi Fisika FMIPA Universitas Mulawarman
  • Supriyanto Supriyanto Program Studi Fisika FMIPA Universitas Mulawarman
  • Adrianus Inu Natalisanto Program Studi Fisika FMIPA Universitas Mulawarman
  • Asmaidi Asmaidi Program Studi Matematika FMIPA Universitas Mulawarman

Abstract

The purpose of this study was to ascertain the impact of repeated heating of coconut oil on the value of viscosity, density (mass density), surface tension, and the coefficient of temperature reduction rate (Newton cooling constant). The coconut oil sample used was the result of my own production. The heating repetition was carried out at most five times with a peak temperature of 90oC. The physics quantities were respectively determined by the methods of the falling ball, the directly measuring the mass and volume with the measuring cylinder, the raising fluid in a capillary tube, and the Newton cooling.From this study, it was found that there was an effect of repeated heating of coconut oil on the value of viscosity, mass density, surface tension, and the Newton cooling constant. This effect is indicated by the presence of a functional relationship between the heating test and the value of the four physical quantities. The relationship between heating repetition and viscosity is a quadratic function, the relationship between heating repetition and mass density is a linear function, the relationship between heating repetition and surface tension is a quadratic function, and the relationship between heating repetition and Newton cooling constant is a quartic function. The four functional relationships are empirical equations that state the laws of nature in a certain heating range and can be used as material for further studies to reveal the physical mechanisms that build them, including determining the general equations that unite them.

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References

[1] T. Putri, Keampuhan Air dan Minyak Kelapa bagi Kesehatan. LAKSANA, 2019. [Daring]. Tersedia pada: https://books.google.co.id/books?id=i9fEDwAAQBAJ
[2] H. Rozaline, Taklukkan Penyakit dengan VCO. Penebar Swadaya, 2005. [Daring]. Tersedia pada: https://books.google.co.id/books?id=T-7HdYR%5C_4BMC
[3] A. N. A. Syah, Virgin Coconut Oil: Minyak Penakluk Aneka Penyakit. Agromedia Pustaka, 2005. [Daring]. Tersedia pada: https://books.google.co.id/books?id=laJZWBzGglsC
[4] H. Herlina, E. Astryaningsih, W. S. Windrati, dan N. Nurhayati, “Tingkat Kerusakan Minyak Kelapa Selama Penggorengan Vakum Berulang Pada Pembuatan Ripe Banana Chips (Rbc),” J. Agroteknologi, vol. 11, no. 02, hal. 186, 2018, doi: 10.19184/j-agt.v11i02.6527.
[5] A. Mujadin, S. Jumianto, dan R. L. Puspitasari, “Pengujian Kualitas Minyak Goreng Berulang Menggunakan Metoda Viskositas dan Perubahan Fisis,” J. Al-AZHAR Indones. SERI SAINS DAN Teknol., vol. 2, no. 4, hal. 229, 2015, doi: 10.36722/sst.v2i4.158.
[6] Warsito, G. A. Pauzi, dan M. Jannah, “Analisis Pengaruh Massa Jenis terhadap Kualitas Minyak Goreng Kelapa Sawit Menggunakan Alat Ukur Massa Jenis dan Akuisisinya pada Komputer,” Pros. semirata FMIPA Univ. Lampung, hal. 35–41, 2013.
[7] S. N. Sahasrabudhe, V. Rodriguez-Martinez, M. O’Meara, dan B. E. Farkas, “Density, viscosity, and surface tension of five vegetable oils at elevated temperatures: Measurement and modeling,” Int. J. Food Prop., vol. 20, no. 2, hal. 1965–1981, 2017, doi: 10.1080/10942912.2017.1360905.
[8] Q. Fariyani, “Pengaruh Lama Pemanasan terhadap Kerapatan dan Indeks Bias Minyak Zaitun,” J. Pendidik. Fis. dan Keilmuan, vol. 5, hal. 93, 2019, doi: 10.25273/jpfk.v5i2.4030.
[9] Y. Rahmi dan T. S. Kusuma, Ilmu Bahan Makanan. Universitas Brawijaya Press, 2020. [Daring]. Tersedia pada: https://books.google.co.id/books?id=7RUQEAAAQBAJ
[10] BSN, “Standar Mutu Minyak Goreng Berdasarkan SNI - 3741- 1995,” 2002.
[11] B. A. Kironoto dan U. G. M. Press, Statika Fluida. UGM PRESS, 2018. [Daring]. Tersedia pada: https://books.google.co.id/books?id=KHdlDwAAQBAJ
[12] S. T. M. S. Suhendra, Konsep Dasar dan Aplikasi Mekanika Fluida Bidang Teknik Mesin: Buku Ajar. Uwais Inspirasi Indonesia, 2019. [Daring]. Tersedia pada: https://books.google.co.id/books?id=g7CgDwAAQBAJ
[13] S. Sahin dan S. G. Sumnu, Physical Properties of Foods. Springer New York, 2007. [Daring]. Tersedia pada: https://books.google.co.id/books?id=-QEfJ%5C_U9tAAC
[14] Widyastuti dan Ishafit, “Penentuan Kalor Jenis Bahan menggunakan Metode Pendinginan Newton dan Sensor Suhu DS18B20 Berbasis Arduino Uno,” J. Ris. dan Kaji. Pendidik. Fis., vol. 6, no. 2, hal. 1–6, 2019, doi: 10.12928/jrkpf.vxix.xxxx.
[15] R. Feynman, The Character of Physical Law. 1967. doi: 10.1086/473527.
[16] M. L. Boas, Mathematical Methods in the Physical Sciences Third Edition. 2006. doi: 10.2307/2275199.
[17] P. Bevington dan D. K. Robinson, Data Reduction and Error Analysis for the Physical Sciences. McGraw-Hill Education, 2003. [Daring]. Tersedia pada: https://books.google.co.id/books?id=0poQAQAAIAAJ
[18] B. Dresp-Langley, O. K. Ekseth, J. Fesl, S. Gohshi, M. Kurz, dan H. W. Sehring, “Occam’s razor for big data? On detecting quality in large unstructured datasets,” Appl. Sci., vol. 9, no. 15, 2019, doi: 10.3390/app9153065.
Published
2022-12-09
How to Cite
KHOTIMAH, Khusnul et al. Analisis perubahan sifat fisis (viskositas, kerapatan, tegangan permukaan dan koefisien laju penurunan suhu) minyak kelapa (coconut oil) terhadap beberapa kali pemanasan. Progressive Physics Journal, [S.l.], v. 3, n. 2, p. 170-178, dec. 2022. ISSN 2722-7707. Available at: <https://jurnal.fmipa.unmul.ac.id/index.php/ppj/article/view/931>. Date accessed: 17 may 2024. doi: https://doi.org/10.30872/ppj.v3i2.931.