Characteristics of Peat with Different Depths in Supporting Growth and Productivity of Oil Palm
Abstract
Keywords
Full Text:
PDFReferences
Agus C, ZR Ilfana, FF Azmi, D Rachmanadi, Widiyatno, D Wulandari, PB Santosa, MK Harun, TW Yuwati and T Lestari. 2020. The effect of tropical peat land-use changes on plant diversity and soil properties. Int J Environ Sci Te 17: 1703-1712. doi: 10.1007/s13762-019-02579-x.
Agus F, M Anda, Jamil and A Masganti. 2014. Lahan gambut indonesia pembentukan, karakteristik, dan potensi mendukung ketahanan pangan. Badan Penelitian Dan Pengembangan Pertanian. IAARD Press, pp131-160. (in Indonesian)
Astin EM, W Seran, ME Pellondo and AD Ruku. 2022. Laju dekomposisi seresah dan ketersediaan unsur hara makro di bawah tegakan jati (Tectona Grandis) di Kabupaten Kupang. J Wana Lestari 6: 217-228. (in Indonesian).
Hartatik W, IGM Subiksa and A Dariah. 2011. Sifat kimia dan fisik tanah gambut. In: Pengelolaan Lahan Gambut Berkelanjutan. Balai Penelitian Tanah. Bogor. 45-56. (in Indonesian).
Hashim SA, CBS Teh, and OH Ahmed. 2019. Influence of water table depths, nutrients leaching losses, subsidence of tropical peat soil and oil palm (Elaeis
guineensis Jacq.) seedling growth. Malays J Soil Sci 23: 13-30.
Holding DR and AM Streich. 2013. Plant growth processes: transpiration, photosynthesis, and respiration. The Board of Reagents of the University of Nebraska, pp.1-10.
Inisheva LI. 2006. Peat soils: genesis and classification. Eurasian Soil Science 39: 699-704. doi: 10.1134/S1064229306070027.
Jailani, YTM Astuti and A Himawan. 2018. Pengaruh berbagai macam kompos dan intensitas cahaya terhadap bibit kelapa sawit di Pre-Nursery. J Agromast 3: 14 p. (in Indonesian)
Kirana, A Puspa, IS Sitanggang and L Syaufina. 2016. Hotspot pattern distribution in peat land area in Sumatra based on spatiotemporal clustering. Procedia Environ Sci 33: 635-645. doi: 10.1016/j.proenv.2016.03.118.
Lambers H and WC Plaxton. 2015. Phosphorus: back to the roots. In: Phosphorus Metabolism in Plants. Wiley Blackwell, United Kingdom, pp 3-22.
Middleton, Maarit, P Närhi, H Arkimaa, E Hyvönen, V Kuosmanen, P Treitz and R Sutinen. 2012. Ordination and hyperspectral remote sensing approach to classify peatland biotopes along soil moisture and fertility gradients. Remote Sens Environ 124: 596-609. doi: 10.1016/j.rse.2012.06.010.
Nuria PG, G Rein, RM Hadden, CM Belcher and JM Yearsley. 2016. Effects of spatial heterogeneity in moisture content on the horizontal spread of peat fires. Sci Total Environ 572: 1422-1430. doi: 10.1016/j.scitotenv.2016.02.145.
Nurjanah S, D Octavia and F Kusumawi. 2013. Identifikasi lokasi penanaman kembali ramin (Gonystylus Bancanus Kurz) di hutan rawa gambut Sumatra dan Kalimantan. Forda Press bekerjasama dengan pusat penelitian dan pengembangan konservasi dan rehabilitasi, badan penelitian dan pengembangan kehutanan dan international tropical timber organization, Bogor. 64 p. (in Indonesian).
Nurulita Y, EM Adetutu, H Gunawan, D Zul and AS Ball. 2016. Restoration of tropical peat soils: the application of soil microbiology for monitoring the success of the restoration process. Agr Ecosyst Environ 216: 293-303. doi: 10.1016/j.agee.2015.09.031.
Pahan I. 2008. Panduan lengkap kelapa sawit. Jakarta: Penebar Swadaya. Jakarta. 404 p. (in Indonesian).
Purnomo H, B Okarda, A Dermawan, QP Ilham, P Pacheco, F Nurfatriani and E Suhendang. 2020. Reconciling oil palm economic development and environmental conservation in Indonesia: A value chain dynamic approach. Forest Policy Econ 111: 102089. doi: 10.1016/j.forpol.2020.102089.
Ratmini S. 2012. Karakteristik Dan Pengelolaan Lahan Gambut Untuk Pengembangan Pertanian. J Lahan Suboptimal 1: 197-206. (in Indonesian).
Septiyana, A Sutandi and LT Indriyati. 2017. Effectivity of soil amelioration on peat soil and rice productivity. J Trop Soils 22: 11-20. doi: 10.5400/jts.2017.v22i1.11-20.
Shamshuddin J, EA Azman, Rs Shazana, CF Ishak, QA Panhwar and UA Naher. 2014. Properties and management of acid sulfate soils in southeast asia for sustainable cultivation of rice, oil palm, and cocoa. Adv Agron 124: 91-142. doi:10.1016/B978-0-12-800138-7.00003-6
Soewandita H. 2018. Kajian pengelolaan tata air dan produktivitas sawit di lahan gambut (studi kasus: lahan gambut perkebunan sawit PT Jalin Vaneo di Kabupaten Kayong Utara, Propinsi Kalimantan Barat). J Sains & Teknologi Modifikasi Cuaca 19: 41-50.
Veloo R, EV Ranst and P Selliah. 2015. Peat characteristics and its impact on oil palm yield. NJAS – Wagen J Life Sc 72: 33-40. doi: 10.1016/j.njas.2014.11.001.
Winarna M, Yusuf A, Rahutomo S, Sutarta ES. 2017. Impacts of the water table and soil ameliorant on soil moisture, co2 emission, and oil palm yield on peat soil. J Penelitian Kelapa Sawit 25: 147-160.
Wösten JHM, E Clymans, SE Page, JO Rieley and SH Limin. 2008. Peat-water interrelationships in a tropical peatland ecosystem in Southeast Asia. Catena 73: 212-224. doi: 10.1016/j.catena.2007.07.010.
Yanto K, Adiwarman and Nurbaiti. 2016. Pemberian pupuk organik cair terhadap pertumbuhan bibit kelapa sawit (Elaeis Quineensis Jacq) pada pembibitan utama. JOM Faperta 3: 1-12.
DOI: http://dx.doi.org/10.5400/jts.2023.v28i1.17-22
Refbacks
- There are currently no refbacks.
INDEXING SITE
This work is licensed under a Creative Commons Attribution 4.0 International License.