RECIRCULATING AQUACULTURE SYSTEM FOR ORNAMENTAL FISH PRODUCTION (LITERATURE REVIEW)
Authors
Ayi Yustiati , Agung Meidito Nugroho , Zahra Egidita Maharani , Mohammad Badai Putra Surahman , Yuli AndrianiDOI:
10.29303/jp.v14i4.898Published:
2024-12-19Issue:
Vol. 14 No. 4 (2024): JURNAL PERIKANANKeywords:
filters, ornamental fish, water quality, production, recirculation aquacullture systemsArticles
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Abstract
Ornamental fish have their own charm due to the beauty of their shapes and color patterns. Ornamental fish have good sales prospects and have high economic value, so many ornamental fish hobbyists and breeders are involved in them. Cultivating ornamental fish is certainly not free from obstacles, such as ponds or aquariums that have been contaminated with microbes which can cause fish to get sick or even cause death. One way to maintain fish health while increasing ornamental fish production is to monitor water quality. Efforts that can be made to overcome the above problems are to apply a recirculating aquaculture system. This study aims to provide information on the use of an effective aquaculture recirculation system to increase ornamental fish production while reducing ornamental fish mortality rates. The information that will be provided is a study from several journals regarding circuits for recirculation systems and optimizing the use of filter combinations in recirculation systems.
References
BKIPM (2020) BKIPM dalam Angka. Kementerian Kelautan dan Perikanan.
Boyd, C.E. (1982). Water quality management for pond fish culture. Amsterdam : Elsevier Scientific Publ. Co Montoya dan Velasco, 2000
Boyd, C.E. 1990. Water quality in found Aquaculture. Birminghann Publishing : Alama Cahyo. (2011). Bioball chemical Indonesia. Di akses pada tanggal 24 Maret 2019 pukul 19:38.
Bioball.blog.com.2011/03/05/bioball
Djokosetiyanto, D., Sunarma, A., & Widanarni. (2006). Perubahan Ammonia (NH3-N), Nitrit (NO2-N) dan Nitrat (NO3-N) pada Media Pemeliharaan Ikan Nila Merah (Oreochromis sp) di dalam Sistem Resirkulasi. Jurnal Akuakultur Indonesia, 5, 13-20.
Duborow, R.M., Crosby, D.M., & Brunson, M.W. (1997). Ammonia in Fish Pond. Southern Regional Aquaculture Center. SRAC Publ. No. 463
Djokosetiyanto DA, Sunarma, Widanarni. 2006. Perubahan Ammonia (NH3-N), Nitrit (NO2- N) dan Nitrat (NO3-N) pada Media Pemeliharaan Ikan Nila Merah (Oreochromis sp.) di dalam Sistem Resirkulasi. Jurnal Akuakultur Indonesia. 5: 13-20.
Fauzzia M, Izza R, Nyoman W. 2013. Penyisihan Amonia dan Kekeruhan pada Sistem Resirkulasi Budidaya Kepiting dengan Teknologi Membran Biolfiter. Jurnal Teknologi Kimia dan Industri. 2: 155-161.
Hapsari, Ayudya Wisma, Johannes Hutabarat, dan Dicky Harwanto. 2020. “Aplikasi Komposisi Filter yang Berbeda terhadap Kualitas Air, Pertumbuhan dan Kelulushidupan Ikan Nila (Oreochromis niloticus) pada Sistem Resirkulasi.” Jurnal Sains Akuakultur Tropis 4(1):39–50
Hasnidar , T. M. Nur , Elfiana. 2017. ANALISIS KELAYAKAN USAHA IKAN HIAS DI GAMPONG PAYA CUT KECAMATAN PEUSANGAN KABUPATEN BIREUEN.
Jurnal S. Pertanian 1 (2) : 97 ± 105 (2017)
ITC (2017) www.intracen.org
Jacinda, A. K., Yustiati, A., & Andriani, Y. 2021. Aplikasi teknologi resirculating aquaculture system (RAS) di Indonesia; a review. Jurnal Perikanan dan Kelautan, 11(1): 43-59.
Heriyani O, Mugisidi. 2017. Pengaruh Karbon Aktif dan Zeolit pada pH Hasil Filtrasi Air Banjir. Seminar Nasional Teknoka FT UHAMKA. ISBN: 978-602-73919-0-1.
Isroni W, Setyawati D, Maulida N. 2019. Studi Komunitas Bakteri pada Sistem Resirkulasi pada Budidaya Lele Dumbo (Clarias gariepinus). Journal of Aquaculture and Fish Health, 8(3): 159- 166.
Jacinda, Adinda Kinasih, Ayi Yustiati, dan Yuli Andriani. 2021. “Aplikasi Teknologi Resirculating Aquaculture System (RAS) di Indonesia: A Review.” Jurnal Perikanan dan Kelautan 11(1 (Juni)):43–59
Kamermans P, Blanco A, Joaquim S, Matias D, Magnesen T, Nicolas JL, Petton B, Robert R. 2016. Recirculation Nursery Systems for Bivalves. Aquaculture International. 24: 827- 842.
Kültz, D . 2022. Ornamental fishes: A Primer of Ecological Aquaculture. Oxford University Press. 152-165.
Lee, J., Yeongsik, L. E. E., Song, J. Y., Hyeongsu, K. I. M., Kim, N., & Jihwan, M. O. O. N. 2022. Recirculating aquaculture system using biofloc fermenter and aquaponics. U.S. Patent Application No. 17/638,233.
Li, H., Cui, Z., Cui, H., Bai, Y., Yin, Z., & Qu, K. 2023. A review of influencing factors on a recirculating aquaculture system: Environmental conditions, feeding strategies, and disinfection methods. Journal of the World Aquaculture Society, 54(3): 566-602.
Martins CIM, Eding EH, Verdegem MCJ, Heinsbroek LTN, Schneider O, Blancheton JP, d’Orbcastel ER, Verrerth JAJ. 2010. New Development in Recirculating Aquaculture System in Europe: A Perspective on Environmental Sustainability. Aquaculture Engineering. 43: 83-93.
Medipally, S.R., Sharifhuddin, N., Yusoff, F.M., Shariff, M. 2016. Sustainable aquaculture of Asian arowana. Journal of Environmental Biology. Vol. 37: 829-838
Muhammad F, Adhar S, Ezraneti R. 2017. Efektivitas Penggunaan Ijuk, Jerami Padi dan Ampas Tebu sebagai Filter Air pada Pemeliharaan Ikan Mas Koki (Carassius auratus). Acta Aquatica, 4(1): 37-43.
Putra I, Setiyanto DD, Wahjuningrum D. 2011. Pertumbuhan dan Kelangsungan Hidup Ikan Nila Oreochromis niloticus dalam Sistem Resirkulasi. Jurnal Perikanan dan Kelautan. 16(1):56-63.
Raihan Wandri Samara, Iskandar, Evi Liviawaty , Roffi Grandiossa. 2022. Pengaruh Perbedaan Jenis Tanaman Air Pada Recirculating Aquaculture System (Ras) Terhadap Kinerja Produksi Ikan Mas (Cyprinus Carpio. Jurnal Perikanan dan Kelautan
Rajalakshmi, M., Manoj, V. R., & Manoj, H. 2022. Comprehensive review of aquaponic, hydroponic, and recirculating aquaculture systems. Journal of Experimental Biology and Agricultural Sciences, 10(6): 1266-1289.
Rosmawati, S., 2019. Pengaruh Modifikasi Aerator Kincir Tipe Pedal Lengkung Pada Peningkatan Kadar Oksigen Air. Skripsi. Departemen Teknik Pertanian, Fakultas Teknologi Pertanian, Institut Pertanian Bogor. Bogor.
Samsundari S, Ganjar adhy Wirawan. 2019. Analisis Penerapan Biofilter Dalam Sistem Resirkulasi terhadap Mutu Kualitas Air Budidaya Ikan Sidat (Anguilla bicolor). Jurnal Gamma, 8(2): 86-97.
Siegers WH, Prayitno Y, Sari A. 2019. Pengaruh Kualitas Air terhadap Pertumbuhan Ikan Nila Nirwana (Oreochromis sp.) pada Tambak Payau. The Journals of Fisheries Development. 3(2): 95-104
Silaban, T.F., Santoso, L., Suparmono, 2020. Pengaruh Penambahan Zeolit Dalam Peningkatan Kinerja Filter Air Untuk Menurunkan Konsentrasi Amoniak Pada Pemeliharaan Ikan Mas (Cyprinus Carpio). Jurnal Rekayasa dan Teknologi Budidaya Perairan. Vol. 1 (1): 47-56. Situmorang RF. 2017. Pengolahan Air Menggunakan Adsorben Magnetik Kitosan. DOI:
5281/ zenodo133838.
Sujarwanto, A., 2014. Keefektifan Media Filter Arang Aktif Dan Ijuk Dengan Variasi Lama Kontak Dalam Menurunkan Kadar Besi Air Sumur Di Pabelan Kartasura Sukoharjo Jawa Sutarjo, G. A., & Handajani, H. (2023). PEMBERDAYAAN MASYARAKAT MELALUI PENERAPAN BUDIDAYA IKAN HIAS AIR TAWAR DI KARANG TARUNA SINGO JOYO KABUPATEN MALANG. Jurnal Abdi Insani, 10(2), 1041–1049.Tengah. Artikel Publikasi Ilmiah. Program Studi Kesehatan Masyarakat Fakultas Ilmu Kesehatan Universitas Muhammadiyah Surakarta. Jawa Tengah.
Thesiana L. 2015. Uji Performansi Teknologi Recirculating Aquaculture System (RAS). Jurnal Kelautan Nasional. 10(2): 65-73.
Thesiana L, Adiyana K, Zulkarnain R, Moersidik SS, Gusniani I, Supriyono E. 2020. Ecofriendly Land-Based Spiny Lobster (Panulirus sp.) Rearing with Biofilterapplication in Recirculating Aquaculture System. IOP Conference Series: Earth and Environmental Science. 404 (2020) 012082.
Zidni, Irfan, Ayi Yustiati, Iskandar, dan Yuli Andriani. 2017. “Pengaruh Modifikasi Sistem Budidaya terhadap Kualitas Air dalam Budidaya Ikan Patin (Pangasius hypophthalmus).” Jurnal Perikanan dan Kelautan 7(2):125–35.
Zed, M. (2008). Metode peneletian kepustakaan. Jakarta: Yayasan Obor.