[1]
W.Y. Mo, Y.B. Man and M.H. Wong M H, Use of food waste, fish waste and food processing waste for China's aquaculture industry: Needs and challenge Sci. Total Environ. 613–614 (2018) 635–643.
DOI: 10.1016/j.scitotenv.2017.08.321
Google Scholar
[2]
I.K. Arisa, N. Fadli, A. Anwar, N. Nizamuddin and P. Parmakope, Utilization of organic waste as raw material of fish feed production for African catfish Clarias gariepinus IOP Conf. Ser. Earth Environ. Sci. 216(2018) 012035-012041.
DOI: 10.1088/1755-1315/216/1/012035
Google Scholar
[3]
Y. Andriani, W. Lili, I. Zidni, M.F. Wiyatna, Risdiana, The effect of fermentation process on physical properties of organic material from domestic food waste, Key Engineering Materials. 860 (2020) 345-350.
DOI: 10.4028/www.scientific.net/kem.860.345
Google Scholar
[4]
Y.Mao, Z.Chen, L. Lu, B. Jin, H.Ma, Y.Pan and T.Chen, Efficient solid-state fermentation for the production of 5-aminolevulinic acid enriched feed using recombinant Saccharomyces cerevisiae J. Biotechnol. 322 (2020) 29–32.
DOI: 10.1016/j.jbiotec.2020.06.001
Google Scholar
[5]
Y. Andriani, Iskandar, I. Zidni, Risdiana, Quality improvement of biomaterial of Lemna sp, Key Engineering Materials. 966 (2019) 139-144.
DOI: 10.4028/www.scientific.net/msf.966.139
Google Scholar
[6]
M.A.O. Dawood, F. I. Magouz, M. Mansour, A.A. Saleh, A.M.E. Asely, S.E. Fadl, H.A. Ahmed, K. Al- Ghanim, S. Mahboob, F. Al-Misned, Evaluation of yeast fermented poultry by-product meal in nile tilapia (Oreochromis niloticus) feed: Effects on growth performance, digestive enzymes activity, innate iImmunity, and antioxidant capacity, Front Vet Sci. 6 (2019) 1-9.
DOI: 10.3389/fvets.2019.00516
Google Scholar
[7]
T. Pan, H. Xiang, T. Diao, W. Ma, C. Shi, Y. Xu and Q. Xie, Effects of probiotics and nutrients addition on the microbial community and fermentation quality of peanut hull Bioresour. Technol. 273 (2019) 144–152.
DOI: 10.1016/j.biortech.2018.10.088
Google Scholar
[8]
R. Rostika and R.Safitri, Influence of fish feed containing corn-cob was fermented by Trichoderma sp, Aspergillus sp, Rhizopus oligosporus to the rate of growth of Java Barb (Puntius gonionitus) APCBEE Procedia 2 (2012) 148–152.
DOI: 10.1016/j.apcbee.2012.06.027
Google Scholar
[9]
T.Sar, J.A. Ferreira, and M.J. Taherzadeh, Bioprocessing strategies to increase the protein fraction of Rhizopus oryzae biomass using fish industry sidestreams Waste Manag. 113 (2020) 261–269.
DOI: 10.1016/j.wasman.2020.06.005
Google Scholar
[10]
V.E. Herawati, Hutabarat J, Pinandoyo and Radjasa O K, Growth and Survival Rate of Tilapia (Oreochromis niloticus) Larvae Fed by Daphnia magna Cultured With Organic Fertilizer Resulted From Probiotic Bacteria Fermentation HAYATI J. Biosci. 22 (2015)169–173.
DOI: 10.1016/j.hjb.2015.08.001
Google Scholar
[11]
A. Anwar, A.H. Wan, S.Omar S, E. El-Haroun and S.J. Davies, The potential of a solid-state fermentation supplement to augment white lupin (Lupinus albus) meal incorporation in diets for farmed common carp (Cyprinus carpio) Aquac. Reports 17 (2020) 100348-100357.
DOI: 10.1016/j.aqrep.2020.100348
Google Scholar
[12]
R.M. Asadi, M. Zakeri, V. Yavari V and S.M. Mousavi, Effect of different levels of dietary supplementation of Saccharomyces cerevisiae on growth performance, feed utilization and body biochemical composition of Nile Tilapia (Oreochromis niloticus) fingerlings J. Persian Gulf 3 (2012) 15–24.
DOI: 10.21608/jappmu.2008.218916
Google Scholar
[13]
A. Samaddar, A. Kaviraj, and S.Saha, Utilization of fermented animal by-product blend as fishmeal replacer in the diet of Labeo rohita. Aquac Rep. 1(2015) 28–36.
DOI: 10.1016/j.aqrep.2015.03.004
Google Scholar
[14]
E.Saade and S. Aslamyah S, Uji Fisik dan Kimiawi Pakan Buatan untuk Udang Windu Panaeus monodon Fab. yang Menggunakan Berbagai Jenis Rumput Laut Sebagai Bahan Perekat. Jurnal Ilmu Kelautan dan Perikanan. 19 (2009) 107-115.
DOI: 10.30649/fisheries.v1i1.13
Google Scholar
[15]
G.H. Balazs, E. Ross, and CC. Brooks, Preliminary studies on the preparation and feeding of crustacean diets. Aquaculture. 8 (1973) 755–766.
DOI: 10.1016/0044-8486(73)90168-3
Google Scholar
[16]
C.P. Pascual and N.Tabbu, Freshwater and agar as binding in prawn diets. Quart Res. Rep. (1979). SEAFDEC.
Google Scholar
[17]
S.F. Forsido, A.A. Hordofa, A. Ayelign, T. Belachew, O. Hensel, Effects of fermentation and malt addition on the physicochemical properties of cereal based complementary foods in Ethiopia. Heliyon 6 (2020) e04606-04613.
DOI: 10.1016/j.heliyon.2020.e04606
Google Scholar
[18]
K. Haetami, Junianto, Iskandar, R.Rostika, Abun, Durability and water stability of pellet fish supplementation results pairing coconut oils and hazelnut oil. International Journal of Environment, Agriculture and Biotechnology. 2 (2017) 1336-1340.
DOI: 10.22161/ijeab/2.3.40
Google Scholar
[19]
F.Eze and V.O. Eyo, Floating and Stability Effect on Fish Feed Pellets Using Different Concertation of Baobab Leaf Meal (Adansonia digitata). Asian Journal of Fisheries and Aquatic Research. 4 (2018) 1-6.
DOI: 10.9734/ajfar/2018/v1i4348
Google Scholar
[20]
V.T. Okomoda, S.O. Musa, L.O. Tiamiyu, S.G. Solomon, A.S. Oladimeji, A.Hassan, K.I. Alabi and A.B. Abol-Munafi, Fermentation of hydrothermal processed Jatropha curcas Kernel: Effects on the performance of Clarias gariepinus (Burchell, 1822) fingerlings Aquac. Reports 18 (2020) 100428-100434.
DOI: 10.1016/j.aqrep.2020.100428
Google Scholar