Microbubble Technology to Improve Growth of Catfish (Clarias sp.)

Authors

Bagus Dwi Hari Setyono , Lalu Wirahadi Al Baihaqi , Muhammad Marzuki , Lalu Mukhtar Atmawinata , Syawalina Fitria , Rangga Idris Affandi

DOI:

10.29303/jppipa.v9i9.3433

Published:

2023-09-25

Issue:

Vol. 9 No. 9 (2023): September

Keywords:

Catfish, Growth, Microbubble

Research Articles

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How to Cite

Setyono, B. D. H., Baihaqi, L. W. A., Marzuki, M., Atmawinata, L. M., Fitria, S., & Affandi, R. I. (2023). Microbubble Technology to Improve Growth of Catfish (Clarias sp.) . Jurnal Penelitian Pendidikan IPA, 9(9), 7373–7382. https://doi.org/10.29303/jppipa.v9i9.3433

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Abstract

Catfish (Clarias sp.) is one of the economically important freshwater fish that has been widely cultivated both traditionally and intensively. Catfish has many advantages such as fast growth, resistance to disease, and can live in water conditions that are low in oxygen content. The use of microbubble technology is expected to support the performance of catfish farming with a biofloc system. With the application of this technology, it is hoped that the oxygen supply from micro-sized air bubbles will increase. Because the diameter of the air bubble is less than 50 µm, it is expected to last a long time in the water and can spread horizontally so that it can be utilized optimally by catfish and biofloc. The purpose of this study was to evaluate the effectiveness of microbubble technology on the growth performance of catfish. The research method used a completely randomized design, with 4 treatments and 3 replications. The variables measured during the study included survival rate, length and weight growth, specific growth rate, feed conversion ratio (FCR), and water quality including temperature, dissolved oxygen (DO), pH, ammonia (NH3), nitrite (NO2-), nitrate (NO3-), oxygen consumption rate (OCR), and total organic matter (TOM).

References

Adharani, N., Soewardi, K., Dhamar Syakti, A., & Hariyadi, S. (2016). Water Quality Management Using Bioflocs Technology: Catfish Aquaculture (Clarias sp.). Jurnal Ilmu Pertanian Indonesia, 21(1), 35–40. https://doi.org/10.18343/jipi.21.1.35

Agarwal, A., Ng, W. J., & Liu, Y. (2011). Principle and applications of microbubble and nanobubble technology for water treatment. Chemosphere, 84(9), 1175–1180. https://doi.org/10.1016/j.chemosphere.2011.05.054

Anggraini, S. I., Diana Arfiati, Happy Nursyam, Audina I. Pratiwi, Ekki Windi, & Sofiatul. (2019). Reducing The Concentration of Organic Matter and Proximate of Catfish (Clarias gariepinus) Culture Medium Using Bacillus Subtilis. Samakia : Jurnal Ilmu Perikanan, 10(2), 73–82. https://doi.org/10.35316/jsapi.v10i2.313

Anis, M. Y., & Hariani, D. (2019). Pemberian EM4 (Effective Microorganisme 4) Hasil Kultur dalam Media yang Berbeda pada Pakan untuk Budi daya Lele (Clarias sp.). Jurnal Riset Biologi Dan Aplikasinya, 1(1), 1. https://doi.org/10.26740/jrba.v1n1.p1-8

Arifin, M. Y. (2016). Pertumbuhan Dan Survival Rate Ikan Nila (Oreochromis. Sp) Strain Merah Dan Strain Hitam Yang Dipelihara Pada Media Bersalinitas. Jurnal Ilmiah Universitas Batanghari Jambi, 16(1), 159–166. https://doi.org/10.33087/jiubj.v16i1.97

Asma, N., Muchlisin, Z. A., & Hasri, I. (2016). PERTUMBUHAN DAN KELANGSUNGAN HIDUP BENIH IKAN PERES (Osteochilus Vittatus) PADA RANSUM HARIAN YANG BERBEDA. Jurnal Ilmiah Mahasiswa Kelautan Dan Perikanan Unsyiah, 1(1), 1–11. Retrieved from https://jim.usk.ac.id/fkp/issue/view/2

Ayuniar, L. N., & Hidayat, J. W. (2018). Analisis Kualitas Fisika dan Kimia Air di Kawasan Budidaya Perikanan Kabupaten Majalengka. Jurnal Enviscience, 2(2), 68–74. https://doi.org/10.30736/2ijev.v2iss2.67

Crab, R., Defoirdt, T., Bossier, P., & Verstraete, W. (2012). Biofloc technology in aquaculture: Beneficial effects and future challenges. Aquaculture, 356–357, 351–356. https://doi.org/10.1016/j.aquaculture.2012.04.046

De Schryver, P., Crab, R., Defoirdt, T., Boon, N., & Verstraete, W. (2008). The basics of bio-flocs technology: The added value for aquaculture. Aquaculture, 277(3–4), 125–137. https://doi.org/10.1016/j.aquaculture.2008.02.019

Endo, A., Srithongouthai, S., Nashiki, H., Teshiba, I., Iwasaki, T., Hama, D., & Tsutsumi, H. (2008). DO-increasing effects of a microscopic bubble generating system in a fish farm. Marine Pollution Bulletin, 57(1–5), 78–85. https://doi.org/10.1016/j.marpolbul.2007.10.014

Fahrizal, A., & Nasir, M. (2017). Pengaruh Penambahan Probiotik Dengan Dosis Berbeda Pada Pakan Terhadap Pertumbuhan Dan Rasio Konversi Pakan (Fcr) Ikan Nila (Oreochromis Niloticus). Median : Jurnal Ilmu Ilmu Eksakta, 9(1), 69–80. https://doi.org/10.33506/md.v9i1.310

Firman, S. W., Nirmala, K., Supriyono, E., & Rochman, N. T. T. (2019). Performance evaluation of micro bubble generator on physiological response of Nile tilapia Oreochromis niloticus (Linnaeus, 1758) farmed at different densities in recirculating aquaculture system. Jurnal Iktiologi Indonesia, 19(3), 425. https://doi.org/10.32491/jii.v19i3.504

Hidayat, K. W., Supriyono, E., Djoko Setiyanto, D., Widiyati, A., & Kurniawan Hidayat, C. W. (2016). Effect of three simple design micro-pore aeration on growth and survival of hybrid catfish Pangasius sp. International Journal of Fisheries and Aquatic Studies, 4(4), 170–172. Retrieved from https://www.researchgate.net/publication/305208991

Kelana, P. P., Subhan, U., Suryadi, I. B. B., & Haris, R. B. K. (2021). Studi Kesesuaian Kualitas Air Untuk Budidaya Ikan Lele Dumbo (Clarias Gariepinus) Di Kampung Lauk Kabupaten Bandung. Aurelia Journal, 2(2), 159. https://doi.org/10.15578/aj.v2i2.9887

Kesuma, B. W., Budiyanto, B., & Brata, B. (2019). Efektifitas Pemberian Probiotik Dalam Pakan Terhadap Kualitas Air Dan Laju Pertumbuhan Pada Pemeliharaan Lele Sangkuriang (Clarias Gariepinus) Sistem Terpal. Naturalis: Jurnal Penelitian Pengelolaan Sumber Daya Alam Dan Lingkungan, 8(2), 21–27. https://doi.org/10.31186/naturalis.8.2.9206

Kuhn, D., & Lawrence, A. (2012). Biofloc Technology Options For Aquaculture. Global Aquaculture Advocate, 20–21. Retrieved from https://www.globalseafood.org/advocate/biofloc-technology-options-for-aquaculture/

Kusumawati, A. A., Suprapto, D., & Haeruddin, H. (2018). Pengaruh Ekoenzim Terhadap Kualitas Air Dalam Pembesaran Ikan Lele (Clarias Gariepinus). Management of Aquatic Resources Journal (MAQUARES), 7(4), 307–314. https://doi.org/10.14710/marj.v7i4.22564

Mardhiana, A., Buwono, I. D., Adriani, Y., & Iskandar. (2017). Suplementasi Probiotik Komersil Pada Pakan Buatan untuk Induksi Pertumbuhan Ikan Lele Sangkuriang (Clarias gariepinus). Jurnal Perikanan Dan Kelautan, 8(2), 133–139. Retrieved from http://jurnal.unpad.ac.id/jpk/article/view/15519/7291

Mohamed, A. H., Jr, A. E. S., & Traifalgar, R. F. M. (2013). Variations in the rate of oxygen consumption by fry and fingerlings of the African catfish Clarias gariepinus (Burchell, 1822). European Journal of Experimental Biology, 3(1), 348–353. Retrieved from https://www.primescholars.com/abstract/variations-in-the-rate-of-oxygen-consumption-by-fry-and-fingerlings-of-the-african-catfish-clarias-gariepinus-burchell-1-90724.html

Pratama, F. A., Harris, H., & Anwar, S. (2020). Pengaruh Perbedaan Media Filter Dalam Resirkulasi Terhadap Kualitas Air, Pertumbuhan Dan Kelangsungan Hidup Benih Ikan Mas (Cyprinus carpio). Jurnal Ilmu-Ilmu Perikanan Dan Budidaya Perairan, 15(2), 95–104. Retrieved from https://jurnal.univpgri-palembang.ac.id/index.php/ikan/article/view/5089

Pratama, R. H., Tarsim, T., & Yudha, I. G. (2019). EFEKTIFITAS PENAMBAHAN ASAM AMINO PADA PAKAN UNTUK PERTUMBUHAN IKAN SIDAT, Anguilla bicolor (McCelland, 1844). E-Jurnal Rekayasa Dan Teknologi Budidaya Perairan, 7(2), 835. https://doi.org/10.23960/jrtbp.v7i2.p835-844

Pratama, W. D., . P., & Manan, A. (2017). Effect Addition of Different Probiotic in Aquaponic Systems towards Water Quality in Aquaculture Catfish (Clarias sp.). Journal of Aquaculture Science, 1(1), 27–35. https://doi.org/10.31093/joas.v1i1.4

Ratulangi, R., Junaidi, M., & Setyono, B. D. H. (2022). Performa Pertumbuhan Ikan Lele (Clarias Sp.) Pada Budidaya Teknologi Microbubble Dengan Padat Tebar Yang Berbeda. Jurnal Perikanan Unram, 12(4), 544–554. https://doi.org/10.29303/jp.v12i4.365

Rizal, A., Yustiati, A., Suryana, A. A. H., & Putro, R. D. (2018). Analisis Komparasi Keragaan Usaha Budidaya Ikan Lele Mutiara (Clarias Gariepinus) Dengan Dan Tanpa Sistem Bioflok. Jurnal Perikanan Unram, 8(1), 65–70. https://doi.org/10.29303/jp.v8i1.73

Ronald, N., Gladys, B., & Gasper, E. (2014). The Effects of Stocking Density on the Growth and Survival of Nile Tilapia (Oreochromis niloticus) Fry at Son Fish Farm, Uganda. Journal of Aquaculture Research & Development, 5(2). https://doi.org/10.4172/2155-9546.1000222

Rosariawari, F., Wahjudijanto, I., & Rachmanto, T. A. (2018). Peningkatan Efektifitas Aerasi Dengan Menggunakan Micro Bubble Generator (MBG). Jurnal Ilmiah Teknik Lingkungan, 8(2), 88–97. Retrieved from http://ejournal.upnjatim.ac.id/index.php/envirotek/article/view/947

Rusherlistyani, Sudaryati, D., & Heriningsih, S. (2017). Budidaya Lele dengan Sistem Kolam Bioflok. Budidaya Lele Dengan Sistem Kolam Bioflok, 1–36. Retrieved from http://eprints.upnyk.ac.id/15416/1/BUDIDAYA%20LELE%20DENGAN%20SISTEM%20KOLAM%20%20BIOFLOK.pdf

Rustam, A., Adi, N. S., Mustikasari, E., Kepel, T. L., & Kusumaningtyas, M. A. (2018). Karakteristik Sebaran Sedimen Dan Laju Sedimentasi Perairan Teluk Banten. Jurnal Segara, 14(3), 137–144. https://doi.org/10.15578/segara.v14i3.7351

Saputra, H. K., Nirmala, K., Supriyono, E., & Rochman, N. T. (2018). Micro/Nano Bubble Technology : Characteristics and Implications Biology Performance of Koi Cyprinus carpio in Recirculation Aquaculture System (RAS). Omni-Akuatika, 14(2), 244–248. https://doi.org/10.20884/1.oa.2018.14.2.539

Scabra, A. R., Afriadin, A., & Marzuki, M. (2022). Efektivitas Peningkatan Oksigen Terlarut Menggunakan Perangkat Microbubble Terhadap Produktivitas Ikan Nila (Oreochromis niloticus). Jurnal Perikanan Unram, 12(1), 13–21. https://doi.org/10.29303/jp.v12i1.269

Scabra, A. R., Marzuki, M., Setyono, B. D. H., Diniarti, N., & Mulyani, L. F. (2021). Aplikasi Teknologi Mikrobubble Pada Petani Ikan Nila Di Desa Bayan. Indonesian Journal of Fisheries Community Empowerment, 1(1), 36–42. https://doi.org/10.29303/jppi.v1i1.56

Tasyah, N. N., Mulyono, M., Farchan, M., Panjaitan, A. S., & Thaib, E. A. (2020). Performa Budidaya Ikan Lele Sangkuriang (Clarias Gariepinus) Sistem Bioflok Dengan Intervensi Grading. Jurnal Agroqua: Media Informasi Agronomi Dan Budidaya Perairan, 18(2), 168. https://doi.org/10.32663/ja.v18i2.1297

Thongdon-a, R., Thonglek, V., & Yoshikawa, K. (2019). Effects of oxygen micro bubble water on the recovery process of tilapia fry transportation at high stocking density and long distance. International Journal of Plasma Environmental Science and Technology, 12(2), 79–83. https://doi.org/10.34343/ijpest.2019.12.02.079

Tsuge, H. (2015). Micro- and Nanobubbles: FUNDAMENTALS AND APPLICATIONS.

Wulandari, C. D., Sudiro, S., & Poerwati, T. (2020). Budidaya Ikan Lele dengan Sistem Bioflok untuk Kawasan Permukiman. Abdimas: Jurnal Pengabdian Masyarakat Universitas Merdeka Malang, 5(3), 286–293. https://doi.org/10.26905/abdimas.v5i3.4044

Author Biographies

Bagus Dwi Hari Setyono, University of Mataram

Lalu Wirahadi Al Baihaqi, University of Mataram

Muhammad Marzuki, University of Mataram

Lalu Mukhtar Atmawinata, University of Mataram

Syawalina Fitria, University of Mataram

Rangga Idris Affandi, Universitas Mataram

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Copyright (c) 2023 Bagus Dwi Hari Setyono, Lalu Wirahadi Al Baihaqi, Muhammad Marzuki, Lalu Mukhtar Atmawinata, Syawalina Fitria, Rangga Idris Affandi

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