Pembuatan Kompos Granul Ela Sagu Diperkaya Pupuk Majemuk 15:15:15 dan Aplikasinya Pada Budidaya Tanaman Bawang Merah

  • Maimuna La Habi Jurusan Budidaya Pertanian, Fakultas Pertanian Universitas Pattimura
Keywords: granular-enriched compost, inorganic, red-onion

Abstract

Effort to reduce the high dependence of farmers on urea fertilizers is adding sago pith waste granular compost as organic fertilizer. This research is conducted to develop granular-enriched compost and evaluate the effectiveness of granular-enriched compost on red onion cultivation. The application of granular-enriched compost was designed in a Randomized Block Design with three replicates. Treatments included 1) without fertilizers (KGES1); 2) the granular-enriched compost (8 t/ha) (KGES2); 3) recommended dosage of inorganic fertilizers such as Urea, SP-36, and KCl (KGES3); 4) inorganic fertilizer + granular-enriched compost (8 t/ha) (KGES4); 5) ½ x dosage of inorganic fertilizer + granular-enriched compost (8 t/ha) (KGES5); 6) 2× dosage of inorganic fertilizer + granular-enriched compost (8 t/ha) (KGES6); 7) ½× dosage of inorganic fertilizer + granular-enriched compost (12 t/ha) (KGES7) and 8) 2× dosage of inorganic fertilizer + granular-enriched compost (4 t/ha) (KGES8). The granular-enriched compost used in this research has characteristic such as N 2.43 %, P 0.59 %, and K 0.87 %. Based on this study it could be stated that reduction a half dose of inorganic fertilizer combined with compost granule 12 t/ha (KGES7) could give profitable dry bulb yield (13 t/ha) or increased 32% over the inorganic fertilizer. This combination could possibly reduce the amount of the inorganic fertilizer; therefore, it can be used for improving the effectiveness of fertilizer application on the red onion cultivation.

Keywords: granular-enriched compost, inorganic, red-onion

 

ABSTRAK

Upaya untuk dapat mengurangi tingginya ketergantungan petani terhadap pupuk urea yang paling murah yaitu dengan penambahan pupuk organik kompos atau kompos granul. Penelitian ini bertujuan untuk mengembangkan pupuk organik diperkaya bentuk granul dari kompos ela sagu dan mengevaluasi efektifitasnya pada budidaya tanaman bawang merah. Rancangan penelitian yang digunakan yaitu rancangan acak kelompok dengan tiga kali ulangan. Perlakuan terdiri atas: tanpa pupuk (KGES1), kompos granul (8 t/ha) (KGES2), pupuk anorganik (Urea, SP-36, dan KCl) dosis anjuran (KGES3), pupuk anorganik + kompos granul (8 t/ha) (KGES4), ½× dosis pupuk anorganik + kompos granul (8 t/ha) (KGES5), 2 kali dosis pupuk anorganik + kompos granul (8 t/ha) (KGES6), ½× dosis pupuk anorganik + kompos granul (12 t/ha) (KGES7) dan 2 kali dosis pupuk anorganik + kompos (4 t/ha) (KGES8). Pupuk kompos granul diperkaya dengan pupuk phonska yang digunakan dalam penelitian memiliki karakteristik sebagai berikut: kandungan N = 2,43%, P = 0,59% dan K= 0,87%. Hasil Penelitian menunjukkan bahwa pengurangan setengah dosis pupuk anorganik yang dikombinasikan dengan kompos granul 12 t/ha menghasilkan bobot kering umbi tertinggi (13 t/ha) atau meningkatkan hasil 32% dari aplikasi pupuk anorganik.

Kata kunci: bawang merah, inorganik, kompost granula diperkaya

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References

Abbey, L. and R.A.L. Kanton. 2004. Fertilizer type, but not time of cessation of irrigation, affect onion development and yield in a semi-arid region. Journal of Vegetable Crop Production 9: 41-48. https://doi.org/10.1300/J068v09n02_06

Aisha, A.H., F.A. Rizk, A.M. Shaheen, and M.M. Abdel-Mouty. 2007. Onion plant growth, bulbs yield and its physical and chemical properties as affected by organic and natural fertilization. Research Journal of Agriculture and Biological Sciences 3: 380-388.

Agustia, E., B. Prasetya, dan Z. Kusuma. 2006. Pengaruh ampas tapioka, sampah kampus, dan kotoran ayam terhadap ketersediaan air bagi tanaman sawi (Brassica juncea L.) pada berbagai kelas tekstur tanah. Skripsi.

Arisha, H.M.E., A.A. Gad, and S.E. Younes. 2003. Response of some pepper cultivars to organic and mineral nitrogen fertilizer under sandy soil conditions. Zagazig Journal Agriculture Research 30: 1875-1899.

Asandhi, A.A. dan T. Koestani. 1990. Efisiensi pemupukan pada pertanaman tumpang gilir bawang merah-cabai, I. Efisiensi pemupukan pada pertanaman bawang merah. Buletin Penelitian Hortikultura 19: 1-6.

Dirjen Hortikultura. 2010. Statistik Produksi Hortikultuta Tahun 2009. Direktorat Jenderal Hortikultura Departemen Pertanian. Jakarta. Pp. 267.

Gambo, B.A., M.D. Magaji, A.I. Yakuba, and A.U. Dikko. 2008. Effect of Farmyard manure, nitrogen and weed interference on the growth and yield of onion (Allium cepa L.) at the Sokoto Rima Valley. Journal of Sustainable development in Agriculture and Environment 3: 87-92.

Gamiely, S., W.M. Randle, H.A. Mills, D.A. Smittle, and G.I. Banna. 1991. Onion plant growth, bulb quality and water uptake following ammonium and nitrate nutrition. HortScience 26: 1061-1063. https://doi.org/10.21273/HORTSCI.26.8.1061

Hilman, Y. dan A. Asgar. 1995. Pengaruh umur panen pada dua paket pemupukan terhadap kuantitas hasil bawang merah (Allium ascalonicum L) kultivar Kuning di dataran rendah. Buletin Penelitian Hortikultura 27: 40-47.

Jayathilake, P.K.S., I.P. Reddy, D. Srihari, and K.R. Reddy. 2006. Productivity and soil fertility status as influenced integrated use of N-fixing biofertilizers, organic manures and inorganic fertilizers in onion. The Journal of Agricultural Sciences 2: 46-58.

La Habi, M., Z. Kusuma, dan Widianto. 2007. Kajian Cara Pemberian dan Dosis Ela Sagu Terhadap Erosi Tanah, Limpasan Permukaan Serta Pertumbuhan dan Hasil Jagung di Ultisol. Tesis. Universitas Brawijaya.

La Habi, M., Z. Kusuma, S. Prijono, dan B. Prasetyo. 2012. Ketersediaan fosfat, serapan fosfat dan hasil tanaman jagung akibat pemberian pupuk organik granul ela sagu dengan pupuk fosfat pada inceptisol. Plumula: Berkala Ilmiah Agroteknologi 1: 144-155.

La Habi M., B. Prasetya, S. Prijono, and Z. Kusuma. 2012. The effect of sago pith waste granule compost and inorganic fertilizer on soil physical characteristics and corn (Zea mays L.) production in inceptisol. IOSR Journal of Environmental, Toxicology and Food Technology 8: 32-40.

Ouda, B.A. and A.Y. Mahadeen. 2008. Effect of fertilizers on growth, yield, yield components, quality and certain nutrient contents in broccoli (Brassica oleraceae). International Journal of Agriculture & Biology 10: 627-632.

Purseglove, J.W. 1972. Tropical Crops Monocotyledons, Longman Group Ltd, London. Pp 38-50.

Sardi, K., and E. Timar. 2005. Response of garlic (Allium sativum L.) to varying fertilization levels and nutrients ratios. Communications in Soil Science and Plant Analysis 36: 673-679. https://doi.org/10.1081/CSS-200043326

Seran, T.H., S. Srikrishnah, and M.M.Z. Ahamed. 2011. Effect of different levels of inorganic fertilizers and compost as basal application on the growth and yield of onion (Allium cepa L.). Journal of Agricultural Sciences - Sri Lanka 5: 64-70. DOI: http://doi.org/10.4038/jas.v5i2.2783

Stevenson, F.J. and M.A. Cole. 1999. Cycles of soil. Second Edition. John Wiley & Sons, London.

Suryaningsih, E. dan A.A. Asandhi. 1992. Pengaruh pemupukan sistem petani dan sistem berimbang terhadap intensitas serangan penyakit cendawan pada bawang merah (Allium ascalonicum L.). Buletin Penelitian Hortikultura 24: 19-26.

Suwandi, 1998. Optimasi Input Produksi Budidaya Sayuran. Inovasi Teknologi Pertanian. Seperempat Abad Penelitian Pengembangan Pertanian. Badan Litbang Pertanian. P. 540-549.

Suwandi, dan T.K. Moekasan. 2008. Penentuan paket teknologi budidaya bawang merah di dataran rendah dan medium melalui pendekatan analisis model indeks komposit. Jurnal Hortikultura 18: 420-429. DOI: http://dx.doi.org/10.21082/jhort. v18n4.2008.p%25p

Published
2018-07-01
How to Cite
La Habi, M. (2018). Pembuatan Kompos Granul Ela Sagu Diperkaya Pupuk Majemuk 15:15:15 dan Aplikasinya Pada Budidaya Tanaman Bawang Merah. JURNAL BUDIDAYA PERTANIAN, 14(1), 21-27. https://doi.org/10.30598/jbdp.2018.14.1.21