Pemanfaatan Tepung Tapioka dengan Dosis Berbeda Sebagai Sumber Karbon Pembentuk Bioflok pada Media Pemeliharaan Benih Ikan Patin (Pangasius sp.)
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Biofloc technology is one of alternative method that used to control water quality on culture media using heterotrophic bacteria with addition of organic matter. This research was held to determine the effect of tapioca flour addition as source of biofloc carbon in culture media on water quality, survival rate and growth of catfish fry. The research held on February to March 2015 in Laboratorium Budidaya Perairan, Aquaculture Department, Agriculture Faculty of Sriwijaya University. Used completely randomized design with four treatments and three replications were addition of tapioca flour with C/N ration 5, 10, and 15 as carbon source. The result showed that addition of flour as carbon source with C/N ratio of 15 was the best treatment with 88% survival rate, absolute length 3,20 cm and absolute weight 2,26 g.
Avnimelech Y. 1999. Carbon/nitrogen ratio as a control elemen in aquaculture system. J. Aquaculture. 176:227-235.
Avnimelech Y dan Kochba M. 2009. Evaluation of nitrogen uptake on excretion by Tilapia in biofloc tanks using 15N racing. J. Aquaculture. 287:163-168.
Azhar MH. 2013. Peranan Sumber Karbon Eksternal yang Berbeda dalam Pembentukan Bioflok dan Pengaruhnya Terhadap Kualitas Air serta Produksi pada Sistem Budidaya Udang Vaname Litopenaeus vannamei. Tesis S2 (Tidak dipublikasikan). Sekolah Pascasarjana Institut Pertanian Bogor, Bogor.
Crab R, De Schryver P, DefoirdtT, Boon N, dan Verstraete W. 2008. The basics of bio-flocs technology: The added value for aquaculture. J. Aquaculture. 277:125-137.
Effendi H. 2003. Telaah Kualitas Air. Kanisius,Yogyakarta.
Effendie MI. 2002. Biologi Perikanan. Yayasan Pustaka Nusantara, Yogyakarta.
Ekasari J. 2009. Teknologi bioflok: Teori dan aplikasi dalam perikanan budidaya sistem intensif. Jurnal Akuakultur Indonesia. 8(2):117-126.
Fransiska MS. 2012. Aplikasi Teknologi Bioflok pada Pemeliharaan Benih Ikan Nila (Oreochromis niloticus). Tesis S2 (Tidak dipublikasikan). Pascasarjana Universitas Terbuka, Jakarta.
Gunarto, Muliani dan Abdul M. 2010. Pengaruh aplikasi sumber C-karbohidrat (tepung tapioka) dan fermentasi probiotik pada budidaya udang windu, Panaeus monodon pola intensif di tambak. Jurnal Riset Akuakultur. 5(3):393-409.
Hanafiah KA. 2002. Rancangan Percobaan: Teori dan Aplikasi. PT. Raja Grafindo Persada, Jakarta.
Hari B, Kurup BM, Varghese JT, Schrama JW dan Verdegem MCJ. 2004. Effect of carbohydrate addition on production in exstensive shrimp culture systems. J. Aquaculture. 241:179-194.
Najamuddin M. 2008. Pengaruh Penambahan Dosis Karbon yang Berbeda Terhadap Produksi Benih Ikan Patin (Pangasius sp.) pada Sistem Pendederan Intensif. Skripsi S1 (Tidak dipublikasikan). Fakultas Perikanan Ilmu Kelautan Institut Pertanian Bogor, Bogor.
Rohmana D. 2009. Konversi Limbah Budidaya Ikan Lele, Clarias sp. Menjadi Biomassa Bakteri Heterotrof untuk Perbaikan Kualitas Air dan Makanan Udang Galah, Macrobrachium rosenbergii. Tesis S2 (Tidak dipublikasikan). Sekolah Pascasarjana Institut Pertanian Bogor, Bogor.
Suprapto dan Samtafsir LS. 2013. Biofok 165 Rahasia Sukses Teknologi Budidaya Lele. Agro 165, Depok.
Usman. 2012. Konversi Limbah Nitrogen Budidaya Ikan Menjadi Bioflok dan Pemanfaatannya bagi Pertumbuhan Ikan Bandeng. Disertasi S3 (Tidak dipublikasikan). Sekolah Pascasarjana Institut Pertanian Bogor, Bogor.
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