Potensi Ekstrak Daun Jambu Biji Sebagai Alternatif Inhibitor Korosi Besi untuk Pembelajaran Kimia Kontekstual

Shofrina Surya Dewi*, Retno Aliyatul Fikroh, Fuadatul Mukoningah

Abstract


Contextual learning is a learning concept to connect learning materials and their function in daily life. The obstacle in implement contextual learning is the concept of learning that involves potential local resources. Guava leaf is one of the local resources that has many benefits and also contains tannins, which have potential as an ingredient corrosion inhibitor base. This study aims to analyze core competence, basic competence, and competency indicator of corrosion material, the results of making guava leaf extract as inhibitor corrosion for contextual learning, and extract potential guava leaves as a natural corrosion inhibitor. This study employs descriptive qualitative research, the methods used include literature study, observation, experimentation, and interviews. The results of this study show that the relationship between corrosion materials and experiment is the identification of factors that can prevent corrosion, explanation of ideas to prevent corrosion, comparisons of the fast and slow corrosion process, and corrosion rate analysis. This experiment was carried out by modifying tools, materials, and methods of work. Maceration method using 70% ethanol as solvent. The results of the Corrosion rate showed that increasing the concentration of inhibitor then lowers the corrosion value obtained. In this study, the highest corrosion rate occurred on iron with a 0% inhibitor concentration is 0,00175 g/cm2.days, while the lowest corrosion rate occurred on iron with 20% inhibitor concentration, is 0,00025 g/cm2.day. Based on the analysis, natural inhibitors of extract Guava leaf can be used as a simple experiment alternative in school.


Keywords


Contextual Learning, Guava Leaf, Natural Inhibitor

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References


Adamu, A. 2021. Phytochemical screening of guava leave extract. International Journal of Pure and Applied Science Research, 12(2):89–95.

Akbar, S.A. 2019. Potensi metabolit sekunder buah jambu biji (psidium guajava) sebagai inhibitor korosi ramah lingkungan pada besi. CHEESA: Chemical Engineering Research Articles, 2(1):1-9. https://doi: 10.25273/cheesa.v2i1.4014.

Akbar, S.A., Ovisa, R. & Muttakin. 2019. Utilization of guava leavesextract (psidium guajava) as ecofriendly corrosion inhibitor for iron. Jurnal Al-Kimia, 7(1):91–99. https://doi: 10.24252/al-kimia.v7i1.6331.

Ali, F., Saputri, D., & Nugroho, R.F. 2014. Pengaruh waktu perendaman dan konsentrasi ekstrak daun jambu biji (psidium guajava linn) sebagai inhibitor terhadap laju korosi baja ss 304 dalam larutan garam dan asam. Teknik Kimia, 20(1):28–37.

Ardyanti, N.K.N.T., Suhendra, L., & Puta, G. 2020. Pengaruh ukuran partikel dan lama maserasi terhadap karakteristik ekstrak virgin coconut oil wortel (daucus carota l.) sebagai pewarna alami. Jurnal Rekayasa dan Manajemen Agroindustri, 8(3):423-434. https://doi: 10.24843/jrma.2020.v08.i03.p11.

Bestari, F. 2018. Pengujian kandungan tanin dan aktivitas antioksidan pada dua jenis gaharu aquilaria malaccensis lamk dan wikstroemia tenuiramis miq. Skripsi, Fakultas Kehutanan, Teknologi hasil Hutan, Universitas Sumatera Utara, Sumatera.

Chairunnisa, S., Wartini, N.M., & Suhendra, L. 2019. Pengaruh suhu dan waktu maserasi terhadap karakteristik ekstrak daun bidara (Ziziphus mauritiana L.) sebagai sumber saponin. Jurnal Rekayasa dan Manajemen Agroindustri, 7(4):551–560.

Damayanti, N.K.A., Maryam, S., & Subagia, I.W. 20,19. Analisis pelaksanaan praktikum kimia. Jurnal Pendidikan Kimia Undiksha, 3(2):52-60. https://doi: 10.23887/jjpk. v3i2.21141.

Das, A.K., Islam, Md.N., Faruk, Md.O., Ahaduzzam, Md., & Dungani, R. 2020. Review on tannins: extraction processes, applications and possibilities. South African Journal of Botany, 135:58–70. https://doi: 10.1016/j.sajb.2020.08.008.

Fazdri, M., Saefuloh, I., & Kanani, N. 2020. Pengaruh konsentrasi inhibitor ekstrak daun teh (camelia sinensis) terhadap laju korosi baja api 5l. Dinamika : Jurnal Ilmiah Teknik Mesin, 12(1):12-18. https://doi: 10.33772/djitm.v12i1.14962.

Fitri, C.B.S. & Fikroh, R.A. 2021. Analisis potensi ekstrak bunga telang sebagai pengganti indikator sintetis pada pembelajaran kimia materi asam basa. Jurnal IPA dan Pembelajaran IPA, 5(4):340–352. https://doi: 10.24815/jpsi.v5i4.23183.

Fraga-Corral, M., Gracia-oliveira, P., Pereira, A.G., Lourenco-Lopes, C., Jimenez-Lopez, C., Prieto, M.A., & Simal-Gandara, J. 2020. Technological application of tannin-based extracts. Molecules, 25(3):1–27. https://doi: 10.3390/molecules25030614.

Hakim, L. 2017. Analisis perbedaan antara kurikulum ktsp dan kurikulum 2013. Jurnal Ilmiah Didaktika, 17(2):280-292. https://doi: 10.22373/jid.v17i2.1644.

Handoko, B.D. 2017. Analisis pengaruh heat treatment terhadap laju korosi dan sifat mekanis material pipa baja api 5l grade b di lingkungan laut. Skripsi, Fakultas Teknologi Kelautan, Teknik Kelautan, Institut Teknologi Sepuluh Nopember, Surabaya.

Hossain, M.A., Disha, N.K., Shourove, J.H., & Dey, P. 2020. Determination of antioxidant activity and total tannin from drumstick (moringa oleifera lam.) leaves using different solvent extraction methods. Turkish Journal of Agriculture-Food Science and Technology, 8(12):2749–2755. https://doi: 10.24925/turjaf.v8i12.2749-2755.4038.

Hutagaol, K. 2013. Pembelajaran kontekstual untuk meningkatkan kemampuan representasi matematis siswa sekolah menengah pertama. Infinity Journal, 2(1):85-99. https://doi: 10.22460/infinity.v2i1.27.

Jalaluddin, Ishak & Rosmayuni. 2015. Efektifitas inhibitor ekstrak tanin kulit kayu akasia (Acacia mangium) terhadap laju korosi baja lunak (st.37) dalam media asam klorida. Jurnal Teknologi Kimia Unimal, 4(1):89–99.

Juradin, S., Boko, I., Grubesa, I.N., Jovic, D., & Mrakovcic, S. 2019. Influence of harvesting time and maceration method of Spanish Broom (Spartium junceum L.) fibers on mechanical properties of reinforced cement mortar. Construction and Building Materials, 225:243–255. https://doi: 10.1016/j.conbuildmat.2019.07.207.

Manege, M.N., Allo, E.K. & Bahrun. 2017. Rancang bangun timbangan digital dengan kapasitas 20kg berbasis microcontroller atmega8535. E-Journal Teknik Elektro dan Komputer, 6(1):57–62.

Mailoa, M.N., Mahendradatta, M., Laga, A., & Djide, N. 2013. Tannin extract of guava leaves (Psidium guajava L.) variation with concentration organic solvents. International Journal of Scientific & Technology Research, 2(9):106–110.

Malfinora, A., Handani, S., & Yetri, Y. 2014. Pengaruh konsentrasi inhibitor ekstrak daun kakao (Theobroma cacao) terhadap laju korosi baja hardox 450. Jurnal Fisika Unand, 3(4):222–228.

Moleong, L.J. 2018. Metodologi Peneitian Kualitatif, PT Remaja Rosdakarya, Bandung.

Mulyaningsih, N., Mujiarto, S. & Gyani. 2019. Pengaruh daun jambu biji sebagai inhibitor korosi alami rantai kapal. Journal of Mechanical Engineering, 3(1):1–7.

Mulyaningsih, N., Pramono, C., & Prasetyo, R. T. 2018. Pengaruh penambahan inhibitor organik ekstrak eceng gondok terhadap laju korosi. Journal of Mechanical Engineering, 2(2). doi: 10.31002/jom.v2i2.1438.

Mulyati, B. 2019. Tanin dapat dimanfaatkan sebagai inhibitor korosi. Jurnal Industri, Elektro, dan Penerbangan, 8(1):1–4. http://jurnal.unnur.ac.id/index.php/indept/ article/download/224/191.

Napitupulu, D.H., Herawati, W., & Apriliana, H. 2021. Variasi morfologi jambu biji (Psidium guajava L.) di Purwokerto. BioEksakta: Jurnal Ilmiah Biologi Unsoed, 3(1):41–46.

Nardeli, J.V., Fuhivara, C.S., Taryba, M., Pinto, E.R.P., Montemor, M.F., & Benedetti, A.V. 2019. Tannin: a natural corrosion inhibitor for aluminum alloys. Progress in Organic Coatings, 135(1):368–381. https://doi: 10.1016/j.porgcoat.2019.05.035.

Noviyanti. 2016. Pengaruh kepolaran pelarut terhadap aktivitas antioksidan ekstrak etanol daun jambu brazil batu (Psidium guineense L.) dengan metode DPPH. Jurnal Farmako Bahari, 7(1):29–35.

Nurhasnawati, H., Handayani, F. & Sukarmi. 2017. Sokletasi terhadap aktivitas antioksidan ekstrak etanol daun jambu bol (Syzygium malaccense L.). Jurnal Ilmiah Manuntung, 3(1):91–95.

Ojahan, T. & Winata, J. 2013. Perhitungan laju korosi pada material baja a36 akibat proses pengelasan smaw (Shielded Metal Arc Welding). Jurnal Mechanical, 4(1):38–44.

Padmasari, P.D., Astuti, K.W., & Warditiani, N.K. 2013. Skrining fitokimia ekstrak etanol 70% rimpang bangle (Z. purpureum Roxb.). Jurnal Farmasi Udayana, 366:1–7.

Puspitasari, D. 2019. Pengaruh metode perebusan terhadap uji fitokimia daun mangrove excoecaria agallocha. Acta Aquatica: Aquatic Sciences Journal, 6(1):423–428. https://doi: 10.29103/aa.v6i1.1046.

Rahayu, N.K.T., Permana, I.D.G.M., & Puspawati, GA.K.D. 2021. Pengaruh waktu maserasi terhadap aktivitas antioksidan ekstrak daun pegagan (Centella asiatica L.Urban). Jurnal Ilmu dan Teknologi Pangan (ITEPA), 9(4):482-489. https://doi: 10.24843/ itepa.2021.v10.i02.p01.

Ramlah, M.M.W. & Pratiwi, D.E. 2020. Efektivitas ekstrak daun beluntas (pluchea indica less) sebagai inhibitor korosi pada material baja karbon dalam media nacl 3,5% effectiveness of beluntas (Pluchea indica L.) leaf extracts as corrosion inhibitor carbon steel in 3,5% nacl solut. Jurnal Chemica, 21(1):86–99.

Riwanti, P., Izazih, F., & Amaliyah, A. 2018. Pengaruh perbedaan konsentrasi etanol pada kadar flavonoid total ekstrak etanol 50,70 dan 96% Sargassum polycystum dari Madura. Journal of Pharmaceutical-care Anwar Medika, 2(2):35–48. https://doi: 10.36932/jpcam.v2i2.1.

Rochmat, A., Liantony, G., & Septiananda, Y.D. 2019. Uji kemampuan tanin daun ketapang sebagai inhibisi korosi pada baja mild steel dalam pipeline. Jurnal Integrasi Proses, 8(1):45-50. https://doi: 10.36055/jip.v8i1.5601.

Saputra, E. 2021. Analisis keefektifan pembelajaran kimia secara daring pada masa pandemi covid-19 di sma negeri se kecamatan teluk dalam. Skripsi, Fakultas Tarbiyah dan Keguruan, Pendidikan Kimia, UIN Ar-Raniry Banda Aceh.

Setiawan, S. & Nasrulloh, Y. 2020. Penggunaan ekstrak daun trembesi (Samanea saman Jacq.Merr) sebagai inhibitor organik untuk mereduksi laju korosi logam baja karbon. Khazanah: Jurnal Mahasiswa, 12(1):83–87. https://doi: 10.20885/khazanah. vol12.iss1.art9.

Sosalia, R.D., Subaidah, W.A., & Muliasari, H. 2021. Formulasi dan uji aktivitas antioksidan sediaan masker peel off ekstrak etanol daun jambu biji (Psidium guajava L.). Lumbung Farmasi: Jurnal Ilmu Kefarmasian, 2(2):146–153. http://journal.ummat. ac.id/index.php/farmasi/article/view/5498.

Sugiyono. 2015. Metode Penelitian Kuantitatif,kualitatif, dan R&D. 22nd edisi, Alfabeta, Bandung.

Susanty & Bachmid, F. 2016. Perbandingan metode ekstraksi maserasi dan refluks terhadap kadar fenolik dari ekstrak tongkol jagung (Zea mays L.). Jurnal Konversi, 5(2):87-93. https://doi: 10.24853/konversi.5.2.87-92.

Tambun, R., Limbong, H.P., Nababan, P., & Sitorus, N. 2015. Kemampuan daun jambu biji sebagai inhibitor korosi besi pada medium asam klorida. Jurnal Kimia dan Kemasan, 73. doi: 10.24817/jkk.v37i2.1815.

Yufita, E., Fitriana, D. & Zulfalina, Z. 2018. Control of corrosion rate on a36 black plate steel in corrosive medium using salam leaf extract inhibitor. Journal of Aceh Physics Society, 7(2):67–71.




DOI: https://doi.org/10.24815/jipi.v6i3.26001

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