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Tytuł artykułu

Using of Oil Palm Empty Fruit Bunch Compost and Mycorrhizae Arbuscular for Improving the Fertility of Nickel Post-Mining Soil

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The nickel post-mining soil with an open-pit mining system has poor soil chemical and physical properties. Thus, it requires appropriate site-specific management so that it can be optimized as a plant cultivation area. This study aimed to analyze the effectiveness of compost from oil palm empty fruit bunches (OPEFB) and mycorrhizal vesicular-arbuscular (MVA) in improving soil fertility of nickel post-mining soil. This study was conducted using a randomized block trial design with 2 factors. The first factor is compost with 3 treatments, consisting of 5 t•ha-1 (K1), 7.5 t•ha-1 (K2), 10 t•ha-1 (K3) and the second factor was mycorrhiza (M) in the fine-crushed brick carrier media with as many as 3 treatments consisting of 2 t•ha-1 (M1), 4 t•ha-1 (M2), 6 t•ha-1 (M3). A total of 9 treatment combinations were repeated 3 times, arranged in experimental pots at the Experimental Farm of Hasanuddin University, South Sulawesi, Indonesia. The results showed that the compost and MVA treatments had a significant effect on increasing the average values of cation exchange capacity, organic carbon, available P2O5, calcium and magnesium exchangeable,as well as decreasing exchangeable aluminum and iron. The highest soil properties values were found in the combination of compost 10 t•ha-1 (K3) and MVA 6 t•ha-1 (M3). The application of compost from OPEFB combined with MVA significantly improved soil fertility, which was indicated by improving soil chemical and biological properties. The application of MVA at various doses had a significant effect on the dry weight, root length of Calopogonium mucunoides and increase the number of MVA spores in the soil.
Rocznik
Strony
86--96
Opis fizyczny
Bibliogr. 38 poz., rys., tab.
Twórcy
  • Department of Soil Science, Hasanuddin University, Indonesia
  • Department of Soil Science, Hasanuddin University, Indonesia
  • Department of Soil Science, Hasanuddin University, Indonesia
  • Reclamation and Rehabilitation PT Vale Indonesia Tbk., Indonesia
Bibliografia
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  • 5. Balai Penelitian Tanah. 2010. Mengenal Calopogonium mucunoides Sumber Pupuk Hijau dan Bahan Organik. Bogor. Indonesia, 32(4), 9–10.
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  • 7. Charisma A., Yuni S.R., Isnawati. 2012. Pengaruh Kombinasi Kompos Trichoderma dan Mikoriza Vesikular Arbuskular (MVA) terhadap Pertumbuhan Tanaman Kedelai (Glycine max (L.) Merill) pada Media Tanam Tanah Kapur. Lantera Bio, 1(3), 111–116.
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  • 11. Ghaida S.H., Wasis B., Budi S.W. 2020. Application of Arbuscular Mycorrhizal Fungi and Soil Ameliorant on the Growth of Leucaena leucocephala in Limestone Post-mining Soil Media. Journal of Tropical Forest Management, 26(3), 282–290.
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  • 20. Mahyudin R.P., Firmansyah M., Purwanti M.A., Najmina D. 2020. Bioremediation of Iron on Diamond Post Mining Soil Using Compost Made from Cow Manure and Traditional Market Organic Waste. Journal of Ecological Engineering, 21(5), 221–228. https://doi.org/10.12911/22998993/122566
  • 21. Musfal. 2010. Potensi cendawan mikoriza arbuskula untuk meningkatkan hasil tanaman jagung. Jurnal Penelitian dan Pengembangan Pertanian, 29(4), 154–158. http://dx.doi.org/10.21082/jp3.v29n4.2010.p154–158
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  • 35. Sutanto A., Prasetyo A.E., Fahroidayanti A.F., Lubis, Dongoran A.P. 2005. Viability of Trichoderma koningii Fungus Bioactivator on Oil Palm Blank Mark Media. Journal of Oil Palm Bunches Research, 13(1), 25–33.
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  • 37. Umaternate G.R, Abidjulid J., Wuntu A.D. 2014. Test of Olsen and Bray Methods in Analyzing Available Phosphate Content in Rice Field Soil in Konarom Barat Village, Dumoga Utara District. Journal of Mathematics and Natural Sciences, Sam Ratulangi University, 3(1), 6–10. https://doi.org/10.35799/jm.3.1.2014.3898
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0cd2897e-f78a-49be-9988-3025afe079aa
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