会议论文详细信息
2nd International Conference on Biomass: Toward Sustainable Biomass Utilization for Industrial and Energy Applications
Study of oil palm root architecture with variation of crop stage and soil type vulnerable to drought
生物科学;工业技术;能源学
Safitri, Lisma^1 ; Suryanti, Sri^1 ; Kautsar, Valensi^1 ; Kurniawan, Agung^2 ; Santiabudi, Fajar^2
Instiper Yogyakarta, Jl. Nangka II, Sleman, Yogyakarta, Indonesia^1
Research Centre PT Bumitama Gunajaya Agro, Pundu, Kalimantan Tengah, HO : Jl. Melawai Raya No. 10, Kebayoran Baru, Jakarta
12160, Indonesia^2
关键词: Drought detection;    Hydrological properties;    Inceptisols;    Oil palm;    Root architecture;    Soil types;    Spodosols;    Watertable;   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/141/1/012031/pdf
DOI  :  10.1088/1755-1315/141/1/012031
来源: IOP
PDF
【 摘 要 】

Root arhitecture is affected by watertable level, characteristic of soil, organic matter and also the crop stages. Root architecture spread horizontally and vertically which each consist of primary, secondary, tertiary and quaternary downward root. The oil palm root observation with variation of crop stage and soil type showed that the root of oil palm plant year 2008 on spodosols soil spread along 650 cm horizontally from the trunk and penetrate downward in range of 9-28 cm vertically. Planted in the same type of soil, the root of oil palm plant year 2004 spread along 650 cm horizontally and reached to downward in a larger range from 3 to 57 cm vertically. As a comparison, the root architecture of oil palm on inceptisols soil established the range much greater vertically than the previous. The root of oil palm plant year 2008 spread along 640 cm horizontally and penetrate downward in range of 52-90 cm vertically. With the variation of crop age, the root of oil palm plant year 2003 spread along 650 cm horizontally and reached to downward in a larger range from 150 to 200 cm vertically. Based on this study, root architecture of oil palm was varied and need to be detailed. The precise root architecture of oil palm allows a better understanding on hydrological properties of oil palm root particularly which is cultivated on soil type vulnerable to drought. Referring to this root architecture, it was enable to develop the study on early drought detection of oil palm to optimise production and towards oil palm sustainability.

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