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Journal : Seminar Nasional Lahan Suboptimal

Kandungan Mineral Hijauan Rumput Rawa Sebagai Pakan Kerbau Pampangan di Sumatera Selatan Muhakka, Muhakka; Suwignyo, R.A.; Budianta, D.; Yakup, Yakup
Seminar Nasional Lahan Suboptimal 2018: Prosiding Seminar Nasional Lahan Suboptimal "Tantangan dan Solusi Pengembangan PAJALE dan Kel
Publisher : Seminar Nasional Lahan Suboptimal

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Muhakka et al, 2019. Mineral Content of Forage Swamp Grass as Pampangan Buffalo Feed in South Sumatera. pp. 82-92.This study aims to analyze the mineral content of swamp forage vegetation as feed for pampangan buffalo. This research was carried out in Rambutan Village and Pulau Layang Village. This research is a descriptive study to describe the mineral content of swamp forage vegetation as feed for pampangan buffalo. Parameters observed were content of Calcium (Ca), Phosphorus (P), Sodium (Na), Iron (Fe), Aluminum (Al), Cobalt (Co) and Selenium (Se). Mineral content of swamp forage vegetation varies. The content of Ca with a range of 0.041 - 1.170%, with the lowest Ca of kumpai tembaga (Hymenachne acutigluma) and the highest of Are Bolong (Polygonum barbatum L). P content ranged from 0.020 - 0.181%, the lowest content of kerak maling grass and the highest kumpai minyak (Hymenachne amplexicaulis). Na content ranges from 0.005 - 0.362%, the lowest content of kumpai tembaga (Hymenachne acutigluma) and the highest kumpai minyak (Hymenachne amplexicaulis). Fe content ranges from 0.003 - 0.005%, the lowest content of kumpai tembaga grass (Hymenachne acutigluma) and the highest kerak maling grass. Al content ranges from 1,815 - 182,29 ppm, with the lowest content of kumpai tembaga grass. The best mineral content of forage swamp vegetation is kumpai tembaga, are bolong, kerak maling and telepuk gajah.
Evaluasi Kualitas Fisik dan Fitokimia Ransum melalui Kombinasi Daun Lamtoro dan Indigofera Riswandi, Riswandi; Muhakka, Muhakka; Wijaya, Agus; Imsya, Afnur; Karomah, Cici
Seminar Nasional Lahan Suboptimal Vol 10, No 1 (2022): Prosiding Seminar Nasional Lahan Suboptimal ke-10 “Revitalisasi Sumber Pangan N
Publisher : Pusat Unggulan Riset Pengembangan Lahan Suboptimal (PUR-PLSO) Universitas Sriwijaya

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Riswandi R, Muhakka M, Wijaya A, Imsya A, Karomah C. 2022. evaluation of the physical and phytochemical quality of the ration through the combination of leucaena and indigofera leaves.  In: Herlinda S et al. (Eds.), Prosiding Seminar Nasional Lahan Suboptimal ke-10 Tahun 2022, Palembang 27 Oktober 2022. pp. 254-262. Palembang: Penerbit & Percetakan Universitas Sriwijaya (UNSRI).Tree legume supplementation is a solution to improve the quality of rations in traditional ruminant rearing systems, because they contain high nutrients. The purpose of this study was to evaluate the physical and phytochemical quality of bento grass based rations through the combination of Lamtoro and Indigofera leaves. This research was conducted for 3 months at the Animal Feed Nutrition Laboratory, Faculty of Agriculture, Sriwijaya University. This study used a completely randomized design (CRD) with 4 treatments and 4 replications. The treatments consisted of R0 (70%  Bento Rayap Grass + 30% Concentrate), R1 (40% Bento Rayap Grass + 30% Concentrate + 30%  Leucaena leaves), R2 (40% Bento Rayap Grass + 30% Concentrate + 30% Indigofera) , R3 ( 40%  Bento Rayap Grass + 30% Concentrate + 15% Leucaena leaves + 15% Indigofera). Parameters observed in the physical quality test were specific gravity (SG), pile density (PD), water absorption (WA) and moisture content (MC). Phytochemical analysis consists of tannins and saponins. The results of this study showed that the treatment had a significant effect (P<0.05) on SG, PD, WA, tannin and saponins while the MC had no significant effect (P>0.05). Furthermore, the lowest content of SG (0.47 g/ml) and WA (381.71%) was obtained at R2, the highest PD (0.23 g/cm3) at R1. The highest concentration of tannins (3.16%) and saponins (2.08%) was obtained at R1. The conclusion of this study showed that the combination of 40% Bento Rayap grass + 30% concentrate + 30% Leucaena leaves could improve the physical and phytochemical quality of the ration.
Evaluasi Hi-fer+Are Bolong dan Kumpai Tembaga dengan Suplementasi Kemon Air terhadap Nilai Kecernaan Secara In Vitro Muhakka, Muhakka; Imsya, A; Tunggal, T; Riswandi, Riswandi
Seminar Nasional Lahan Suboptimal Vol 10, No 1 (2022): Prosiding Seminar Nasional Lahan Suboptimal ke-10 “Revitalisasi Sumber Pangan N
Publisher : Pusat Unggulan Riset Pengembangan Lahan Suboptimal (PUR-PLSO) Universitas Sriwijaya

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Muhakka M, Imsya A, Tunggal T, Riswandi R. 2022. Evaluation of hi-fer+are bolong and kumpai tembaga with kemon air supplementation on digestibility value in vitro. In: Herlinda S et al. (Eds.), Prosiding Seminar Nasional Lahan Suboptimal ke-10 Tahun 2022, Palembang 27 Oktober 2022. pp. 816-823. Palembang: Penerbit & Percetakan Universitas Sriwijaya (UNSRI).Forage is the main feed for ruminants whose availability is addictive to the season, so it is necessary to find an alternative by utilizing swamp forage by fermentation. This study aimed to determine the nutritional value of fermented forage (Hi-fer+) Are Bolong and Kumpai tembaga with Kemon Air Supplementation on in vitro Digestibility Value. This study used a completely randomized design with 4 treatments and 3 replications, with the following treatments: (A) Hi-fer+Are Bolong 100% + Kumpai tembaga 0% + Kemon air 0%; (B) Hi-fer+ Are Bolong 75% + Kumpai tembaga 20% + Kemon Air 5%; (C) Hi-fer+Are Bolong 50% +Kumpai tembaga 40% + Kemon Air 10% and (D) Hi-fer+Are Bolong 25% +Kumpai tembaga 60% + 15% Kemon Air. The results showed that the treatment had a notable effect on the digestibility of dry matter, organic matter and NH3, but had no significant outcome on the pH content. The best results were in treatment C, namely: Hi-fer+Are perforated 50%, Kumpai tembaga 40% and Kemon air 10% which gave the best digestibility value.
Produksi dan Kapasitas Tampung Padang Pengembalaan di Desa Sejaro Sakti Kecamatan Indralaya Kabupaten Ogan Ilir Muhakka, Muhakka; Munawar, Asep Indra; Fariani, Armina; Sahara, Eli; Sabrina, Salmi
Seminar Nasional Lahan Suboptimal Vol 12, No 1 (2024): Vol 12, No 1 (2024): Prosiding Seminar Nasional Lahan Suboptimal ke-12 “Revital
Publisher : Pusat Unggulan Riset Pengembangan Lahan Suboptimal (PUR-PLSO) Universitas Sriwijaya

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Muhakka, M., Ali, A. I. M., Riswandi, R., Fariani, A., Sahara, E., & Sabrina, S. (2024).Production and carrying capacity of pasture in Sejaro Sakti Village, Indralaya District, Ogan Ilir Regency. In: Herlinda S et al. (Eds.), Prosiding Seminar Nasional Lahan Suboptimal ke-12 Tahun 2024, Palembang  21 Oktober 2024. (pp. 501–511).  Palembang: Penerbit & Percetakan Universitas Sriwijaya (UNSRI).Forage is very important to increase ruminant livestock production. The purpose of this study was to determine the production and carrying capacity of pasture in Sejaro Sakti Village, Indralaya District. This study was conducted in the pasture area in Sejaro Sakti Village, Indralaya District, and at the Animal Nutrition and Feed Laboratory of the Animal Husbandry Study Program, Faculty of Agriculture, Sriwijaya University. The method used in this study was the Halls method, which took samples using a 1m2 sample plot to determine the type and production of forage. The parameters observed were the vegetation types in the swamp pasture, fresh weight production, dry matter production and carrying capacity. The results of the study showed 9 types of swamp green vegetation, namely Kumpai minyak grass (Hymenache amplexicausis), Kumpai padi (Oryza rupifogon), Purun tikus (Eleocharis dulcis), Algae (Spirogyra sp.), Eceng Gondok (Eichornia crassipes), Kiambang (Salvinia cucullata), Telepuk padi (Nymphanea adorate), Serpang (Caesalpinia sp.) and Kemon air (Neptunia oleracea). Fresh production of swamp greens is 1.10 tons Ha-1 and dry matter production is 0.23 tons.Ha-1 and carrying capacity is 0.66 AU.Ha-1.year-1. It can be concluded that the fresh production of swamp greens in the pasture in Sejaro Sakti Village is 1.10 tons.Ha-1 and dry matter production is 0.23 tons.Ha-1 and carrying capacity is 0.66 AU.Ha-1.year-1.