IMAGING TROPICAL PEATLAND AND AQUIFER POTENTIAL IN SOUTH SUMATERA USING ELECTRICAL RESISTIVITY TOMOGRAPHY

Indonesia has one of the largest tropical peatland areas in the world. In Sumatra Island, peatland is spread over 11 areas and it was mainly found in Riau (60.1%) and South Sumatra (19.6 %) Provinces. This study investigates the subsurface of tropical peatland in Ogan Komering Ilir Regency, South Su...

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Main Authors: Muhammad Rizki Ramdhani, Acep Ruhimat, Wiyono Wiyono, Ahmad Barnes
Format: Article
Language:English
Published: Ministry of Environment and Forestry 2020-04-01
Series:Indonesian Journal of Forestry Research
Subjects:
Online Access:http://ejournal.forda-mof.org/ejournal-litbang/index.php/IJFR/article/view/5565
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spelling doaj-102d4109bd6346a6bed0ca5eac75a3382020-11-25T04:08:20ZengMinistry of Environment and ForestryIndonesian Journal of Forestry Research2355-70792406-81952020-04-017111410.20886/ijfr.2020.7.1.1-144028IMAGING TROPICAL PEATLAND AND AQUIFER POTENTIAL IN SOUTH SUMATERA USING ELECTRICAL RESISTIVITY TOMOGRAPHYMuhammad Rizki Ramdhani0Acep Ruhimat1Wiyono Wiyono2Ahmad Barnes3Geological Agency - Ministry of Energy and Mineral ResourcesGeological Agency-Ministry of Energy and Mineral ResourcesGeological Agency-Ministry of Energy and Mineral ResourcesPeatland Restoration AgencyIndonesia has one of the largest tropical peatland areas in the world. In Sumatra Island, peatland is spread over 11 areas and it was mainly found in Riau (60.1%) and South Sumatra (19.6 %) Provinces. This study investigates the subsurface of tropical peatland in Ogan Komering Ilir Regency, South Sumatra Province. Data was recorded using Electrical Resistivity  Tomography (ERT) method based on the sub-surface images of tropical peatland. This study was conducted based on dipole-dipole configuration with 72 channels spread. This paper also studies the physical properties (thickness and electrical resistivity) of peatland and its substrate using ERT. In this study the ERT section and the geological map identified Alluvium (Qs), Kasai Formation, and the Basement. Result shows the ERT is applicable for imaging the thickness of tropical peatland and other geological features (Aquifer, geological structures, and stratigraphy). The electrical resistivity of peat varies from 20 ohm meter to 120 ohm meter and the thickness of peat varies from 2–5 meter. In some ERT sections, the basement was identified from 130 meter to 170 meter beneath the surface. The aquifer sweet spots were located from ERT Sections combined with the hydrogeological map. The aquifer was identified in Kasai Formation. The thickness of the aquifer layer is 2–20 meter. These physical properties may support the peatland conservation (forest fire mitigation) and geotechnical analysis purposes.http://ejournal.forda-mof.org/ejournal-litbang/index.php/IJFR/article/view/5565electrical resistivity tomographypeatlandaquiferriausouth sumatra
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Rizki Ramdhani
Acep Ruhimat
Wiyono Wiyono
Ahmad Barnes
spellingShingle Muhammad Rizki Ramdhani
Acep Ruhimat
Wiyono Wiyono
Ahmad Barnes
IMAGING TROPICAL PEATLAND AND AQUIFER POTENTIAL IN SOUTH SUMATERA USING ELECTRICAL RESISTIVITY TOMOGRAPHY
Indonesian Journal of Forestry Research
electrical resistivity tomography
peatland
aquifer
riau
south sumatra
author_facet Muhammad Rizki Ramdhani
Acep Ruhimat
Wiyono Wiyono
Ahmad Barnes
author_sort Muhammad Rizki Ramdhani
title IMAGING TROPICAL PEATLAND AND AQUIFER POTENTIAL IN SOUTH SUMATERA USING ELECTRICAL RESISTIVITY TOMOGRAPHY
title_short IMAGING TROPICAL PEATLAND AND AQUIFER POTENTIAL IN SOUTH SUMATERA USING ELECTRICAL RESISTIVITY TOMOGRAPHY
title_full IMAGING TROPICAL PEATLAND AND AQUIFER POTENTIAL IN SOUTH SUMATERA USING ELECTRICAL RESISTIVITY TOMOGRAPHY
title_fullStr IMAGING TROPICAL PEATLAND AND AQUIFER POTENTIAL IN SOUTH SUMATERA USING ELECTRICAL RESISTIVITY TOMOGRAPHY
title_full_unstemmed IMAGING TROPICAL PEATLAND AND AQUIFER POTENTIAL IN SOUTH SUMATERA USING ELECTRICAL RESISTIVITY TOMOGRAPHY
title_sort imaging tropical peatland and aquifer potential in south sumatera using electrical resistivity tomography
publisher Ministry of Environment and Forestry
series Indonesian Journal of Forestry Research
issn 2355-7079
2406-8195
publishDate 2020-04-01
description Indonesia has one of the largest tropical peatland areas in the world. In Sumatra Island, peatland is spread over 11 areas and it was mainly found in Riau (60.1%) and South Sumatra (19.6 %) Provinces. This study investigates the subsurface of tropical peatland in Ogan Komering Ilir Regency, South Sumatra Province. Data was recorded using Electrical Resistivity  Tomography (ERT) method based on the sub-surface images of tropical peatland. This study was conducted based on dipole-dipole configuration with 72 channels spread. This paper also studies the physical properties (thickness and electrical resistivity) of peatland and its substrate using ERT. In this study the ERT section and the geological map identified Alluvium (Qs), Kasai Formation, and the Basement. Result shows the ERT is applicable for imaging the thickness of tropical peatland and other geological features (Aquifer, geological structures, and stratigraphy). The electrical resistivity of peat varies from 20 ohm meter to 120 ohm meter and the thickness of peat varies from 2–5 meter. In some ERT sections, the basement was identified from 130 meter to 170 meter beneath the surface. The aquifer sweet spots were located from ERT Sections combined with the hydrogeological map. The aquifer was identified in Kasai Formation. The thickness of the aquifer layer is 2–20 meter. These physical properties may support the peatland conservation (forest fire mitigation) and geotechnical analysis purposes.
topic electrical resistivity tomography
peatland
aquifer
riau
south sumatra
url http://ejournal.forda-mof.org/ejournal-litbang/index.php/IJFR/article/view/5565
work_keys_str_mv AT muhammadrizkiramdhani imagingtropicalpeatlandandaquiferpotentialinsouthsumaterausingelectricalresistivitytomography
AT acepruhimat imagingtropicalpeatlandandaquiferpotentialinsouthsumaterausingelectricalresistivitytomography
AT wiyonowiyono imagingtropicalpeatlandandaquiferpotentialinsouthsumaterausingelectricalresistivitytomography
AT ahmadbarnes imagingtropicalpeatlandandaquiferpotentialinsouthsumaterausingelectricalresistivitytomography
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