UTILIZATION OF KETAPANG LEAF TANNIN EXTRACT AS A CORROSION INHIBITOR OF METALS IN 1 M HCl MEDIA

  • Nur Fitriana Salsabila Universitas Pembangunan Nasional "Veteran" Jawa Timur
  • Arfan Maulana 1Department of Chemical Engineering, Universitas Pembangunan Nasional “Veteran” Jawa Timur
  • Nurul Widji Triana Program Studi Teknik Kimia, Fakultas Teknik, Universitas Pembangunan Nasional “Veteran” Jawa Timur

Abstract

A metal degrades through the process of corrosion when electrochemical reactions occur with its surroundings. As long as the metal is exposed to corrosive conditions, the corrosion process will continue to compress the metal, degrading its mechanical properties. The objective of this study is to evaluate the performance and determine the optimum conditions of a corrosion inhibitor extract based on variations in the inhibitor concentration and immersion period. The first step was extracting tanins from ketapang leaves using a 120-minute maseration process (850C temperature and 200 rpm mixing) with a 1:25 solvent ratio. The extract is introduced to the corrosive medium containing the submerged metal in a variation of the immersion period that has been defined for the calculated final weight using the hemp leaf extract concentrations (700, 800, 900, 1000, and 1100 ppm) and the amount of time the samples were submerged (48, 96, 144, 192, and 240 hours) in a 1M HCl solution. The test sample with the addition of an inhibitor concentration of 1100 ppm and a 240-hour immersion time provided the largest results of the experiment with 39.22 % efficiency.

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References

K. R. Trethewey dan J. Chamberlain, Korosi untuk Mahasiswa dan Rekayasawan. Jakarta: PT. Gramedia Pustaka Utama.

M. Aliofkhazraei, Corrosion Inhibitors, Principles, and Recent Applications. London: IntechOpen, 2018.

A. E. Hagerman, The Tannin Handboook. Oxford: Miami University, 2011.

S. Hidayat, Kitab Tumbuhan Obat, Jakarta: Swadaya, 2015.

L. A. J. Thomson dan B. Evans, “Terminalia catappa (Tropical Almond)”, ver 2.2. In: C.R. Elevitch. Species Profiles for Pacific Island Agroforestry: Their Culture, Environtment, and Use. Holualoa: Permanent Agriculture Resources (PAR), 2006.

H. V. Hermanta, D. R. Karomah, Suprihatin, dan N. W. Triana, “Pemanfaatan Tanin Kulit Kayu Mahoni sebagai Inhibitor Korosi pada Besi dalam Larutan NaCl 3,5%”. Journal ChemPro, vol. 2, no. 2, hal. 12 – 17, 2021.

R. Nuretha, Komalasari, dan S. R. Muria, “Pemanfaatan Ekstrak Daun Ketapang (Terminalia catappa L) sebagai Green Inhibitor dengan Metode Maserasi untuk Mengendalikan Laju Korosi pada Aluminium”. Jom FTEKNIK, vol. 8, no. 1, hal. 1 – 5, 2021.

R. Ramadhani dan E. Marlianto, “Efficiency of Ketapang (Terminalia catappa L.) Leaves Tannin Extract as Organic Inhibitor Against Corrosion Rate of Iron Metal in Seawater”, Journal of Technomaterial Physics, vol. 2, no. 1, hal. 63 – 69, 2020.

S. S. Santi, F. Irawati, dan N. Prastica, “Extraction of Tanning Ketapang Leaves (Terminalia catappa Linn)”, in Nusantara Science and Technology: Proceedings of the 1st International Conference Eco-Innovation in Science, Engineering, and Technology, ICESET, Malang, Indonesia, November 3, 2020, pp. 196 – 199.

Standard Practice for Laboratory Immersion Sorrosion Testing of Metals. United State. ASTM G321-72, ASTM International, 2004

G. Priyotomo, H. S. Sitepu, dan Y. Dwiyanti, “Pengaruh Penambahan Konsentrasi Inhibitor Ekstrak Daun Talas terhadap Laju Korosi pada Baja API 5L X-52 dengan Media Korosif H2SO4 0,5 M”, Jurnal Metalurgi dan Material, vol. 4, no. 1, hal 1 – 7, 2021.

R. K. Mahmudi, Pengaruh Bio Inhibitor Ekstrak Daun Ketapang (Terminalia Catappa) pada Ketahanan Korosi Baja ASTM A36 Hasil Proses Pengelasan dalam Media Air Gambut. Skripsi, Universitas Islam Riau, Pekanbaru, 2022.

Published
2023-04-28
How to Cite
[1]
Nur Fitriana Salsabila, A. Maulana, and N. Widji Triana, “UTILIZATION OF KETAPANG LEAF TANNIN EXTRACT AS A CORROSION INHIBITOR OF METALS IN 1 M HCl MEDIA”, Journal Technology of Civil, Electrical, Mechanical, Geology, Mining, and Urban Design, vol. 8, no. 1, pp. 33-38, Apr. 2023.