Identifikasi Ketebalan Tanah Gambut Menggunakan Metode Geolistrik Resistivitas Konfigurasi Wenner

Authors

  • Fiki Husnial Umam
  • Radhitya Perdhana Program Studi Geofisika Universitas Tanjungpura
  • Zulfian

DOI:

https://doi.org/10.30872/zrg5ej60

Keywords:

Peat thickness, Geoelectric resistivity, Wenner configuration, West Kalimantan, Subsurface modeling

Abstract

Peat soils are organic deposits that have a high carbon content. West Kalimantan is the second largest province in Kalimantan with a total peat ecosystem of around 1,729,980 Ha. In 2018, it was recorded that the peat area in West Kalimantan Province was 1,543,752 Ha. Its utilization in this province has increased every year although it has not yet reached a large area. Identification of peat thickness can be done with the resistivity geoelectric method. In this study, subsurface modeling was carried out using the Wenner configuration to determine the thickness of the peat layer. The modeling results are in the area of Perdana Street, Bansir Darat Village, Southeast Pontianak. The depth of the peat layer in the research area was found at a depth of 1.30 m to reach more than 5.5 m with a range of peat layer resistivity values obtained in the range of 131 Ωm - 267 Ωm. The clay layer is found at a depth of 1.31m - 8m. with a resistivity value range of 1.80 Ωm - 131 Ωm.

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References

Agus, F. and Subiksa, I. M. 2008. Lahan Gambut: Potensi untuk Pertanian dan Aspek Lingkungan. Bogor, Indonesia: Balai Penelitian Tanah dan World Agroforestry Center (ICRAF).

Fajania, R., Arman, Y., dan Muhardi, M. 2021. Pendugaan Ketebalan Lapisan Gambut Di Sekitar Jalan Reformasi Kota Pontianak Menggunakan Metode Geolistrik Tahanan Jenis. Jurnal Geocelebes, 16-22.

BPS. 2019. Propinsi Kalimantan Barat dalam Angka. Pontianak: Badan Pusat Statistik Kalimantan Barat.

Romadhan, F., Arman, Y., dan Zulfian, Z. 2022. Identifikasi Ketebalan Tanah Gambut dengan Metode Geolistrik Tahanan Jenis 3D di Desa Rasau Jaya 2 Kecamatan Rasau Jaya. PRISMA FISIKA, 10(3), 338-343.

Muliadi, M., Zulfian, Z., dan Muhardi, M. 2019. Identifikasi Ketebalan Tanah Gambut Berdasarkan Nilai Resistivitas 3D: Studi Kasus Daerah Tempat Pembuangan Akhir Batu Layang Kota Pontianak. Positron, 9(2), 86-94.

Abdullah, F.. 2022. Symmetrical Electrode Configuration for Noise Reduction in Peatland Surveys. Journal of Applied Geophysics, 198, 104525.

Hidayat, W., Palupi, I. R., dan Novianto, A. 2013. Identifikasi Potensial Air Tanah Dengan Menggunakan Metode Geolistrik di Desa Girijati Kecamatan Purwosari Kabupaten Gunungkidul Provinsi Daerah Istimewa Yogyakarta. In Proseding Seminar Nasional Kebumian, 2013 (Vol. 8, pp. 219-225).

Herman, R., 2001. An Introduction to Electrical Resistivity in Geophysics. Journal of American Association of Physics Teachers, 69, 943-952.

Hakim, H., dan Manrulu, R. H. 2016. Aplikasi Konfigurasi Wenner dalam Menganalisis Jenis Material Bawah Permukaan. Jurnal Ilmiah Pendidikan Fisika Al-Biruni, 5(1), 95-103.

Telford, W.M., Geldart, L.P., dan Sheriff, R.E., 1990, Applied geophysics, Cambridge university press.

Loke, M. H., and Barker, R. D. 1996. Rapid least‐squares inversion of apparent resistivity pseudosections by a quasi‐Newton method1. Geophysical prospecting, 44(1), 131-152.

Lines, L. R., and Treitel, S. 1984. A review of least‐squares inversion and its application to geophysical problems. Geophysical prospecting, 32(2), 159-186.

Kessouri, P., 2019. "Electrical resistivity in clay-rich materials: A review" Geophysical Journal International, 217(2), 1234-1248

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Published

30-12-2025

How to Cite

Identifikasi Ketebalan Tanah Gambut Menggunakan Metode Geolistrik Resistivitas Konfigurasi Wenner. (2025). Progressive Physics Journal, 6(2), 631-641. https://doi.org/10.30872/zrg5ej60

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