Analysis of remote sensing data for identification of land closure and determine erosion hazard level in Mandikaleng Watershed, Banjar Regency, South Kalimantan Province

Paper Details

Research Paper 01/06/2019
Views (859)
current_issue_feature_image
publication_file

Analysis of remote sensing data for identification of land closure and determine erosion hazard level in Mandikaleng Watershed, Banjar Regency, South Kalimantan Province

Praditya Rahman, Wahyuni Ilham, Syarifuddin Kadir
J. Biodiv. & Environ. Sci. 14(6), 54-61, June 2019.
Copyright Statement: Copyright 2019; The Author(s).
License: CC BY-NC 4.0

Abstract

Banjar Regency is an area that has extensive critical land compared to several districts in South Kalimantan. This can be seen from the results of the critical land inventory in BPDAS Barito, there is a critical area of ​​112.57 hectares. One area that needs attention is the mandikaleng catchment area (DTA). The mandikaleng DTA has an area of ​​606.52 Ha, which has quite complex problems as seen from the decrease in land productivity and is included in the first priority priority catchment area, namely the Martapura watershed. Identifying land cover, analyzing the rate of erosion, determining the level of erosion hazard in the Mandikaleng DTA, Karang Intan District, Banjar Regency, making recommendations for soil conservation based on erosion hazard levels to control erosion that occurs in the Mandikaleng catchment, Karang intan district, Banjar Regency. The results of land cover object segmentation classification show that the classification level with scale level 30 values, and merge level 90 is able to separate the object of classification of land cover properly.

Arsyad S. 2010. Konservasi Tanah dan Air. Edisi Kedua. Bogor : Serial Pustaka IPB Press.

Badaruddin. 2015. Kemampuan dan Daya Dukung Lahan di Sub DAS Kusambi DAS Batulicin Kabupaten Tanah Bumbu, Provinsi Kalimanatan Selatan. Program Disertasi Doktor Ilmu Pertanian Minat Mengelola Sumberdaya Alam dan Lingkungan. Program Pascasarjana Fakultas Pertanian Universitas Brawijaya. Malang.

BPDAS Barito. 2014. Badan Pengelolaan Daerah Aliran Sungai Barito. Banjarbaru.

Halim F. 2014. Pengaruh Hubungan Tata Guna Lahan Dengan Debit Banjir pada Daerah Aliran Sungai Malalayang. Jurnal Ilmiah Media Engineering 4(1), 45-54.

Latifah DH, Yunianto T. 2013. Hubungan antara fungsi tutupan vegetasi dan tingkat erosi DAS Secang Kabupaten Kulenprogo. Jurnal Bumi Indonesia 2(1).

Meylina E, Wahyuningsih S, Pudjojono M. 2015. Estimasi Tingkat Erosi pada Sistem Tumpang Sari Kopi – Tanaman Semusim Menurut Metode MUSLE (Modified Universal Soil Loss Equation) di Desa Pace Kecamatan Silo Kabupaten Jember. Teknologi Pertanian 1(1).

Rusnam R. 2013. Analisis Spasial Besaran Tingkat Erosi pada Setiap Satuan Lahan di Sub DAS Batang Kandis. Jurnal Dampak 10(2), 149-167.

Yanti RN, Rusnam, dan Ekaputra EG. 2017. Analisis Debit pada DAS Air Dingin Menggunakan Metode Swat. Jurnal Teknologi Pertanian Andalas Jilid 21, Terbitan 2. 2017. Universitas Andalas.

Related Articles

Prevalence and risk factors of Fasciola gigantica infection in carabaos (Bubalus bubalis) in selected municipalities in the Province of Cagayan, Philippines

John Michael U. Tabil*, Janine Mae D. Dimas, Jhude C. Gamata, Monique E. Montenegro, Rhina Jean J. Valiente, Jhaysel G. Rumbaoa, Maricel F. Campañano, Kathlyn B. Cruz, Roel T. Calagui, Sherwin L. Alota, Jojo D. Cauilan, Bryan Jerome R. Bassig, Louis Voltaire A. Pagalilauan, Mary Ann M. Santos, J. Biodiv. & Environ. Sci. 29(1), 24-32, July 2026.

Ambient air quality assessment and modelling across phases of road construction: A case study of the Jalgaon-Bhadgaon state highway, India

Anilkumar Dattatray Shimpi*, Ashok Maruti Datir, Pravin Mukund Nalawade, J. Biodiv. & Environ. Sci. 29(1), 17-23, July 2026.

Crayfish aquaponics systems: Current status, design considerations and future development opportunities

Rodolfo G. Nillo*, Abigail P. Cid-Andres, J. Biodiv. & Environ. Sci. 29(1), 1-16, July 2026.

Reptile diversity in agroecosystem and ecotourism area of Aliwagwag Protected Landscape, Davao Oriental, Philippines

Juliet Tilan Cervantes*, J. Biodiv. & Environ. Sci. 28(6), 214-221, June 2026.

Geo-space monitoring technology and gis based predictive modeling of land use/land cover dynamics

E. Ahuchaogu Udo*, U. Duru Uchenna, E. Njoku Richard, G. Ogbonna Chukwuemeka, C. Okoboji Anthony, E. F. Onyeagoro, J. Biodiv. & Environ. Sci. 28(6), 202-213, June 2026.

Carbon emissions and removals from land-use and land-cover change in the Djoum, Mintom, Ngoyla, and Yokadouma forest block, Cameroon (Congo Basin)

Pascal Freddy Bikono*, Zachée Ambang, Joseph Armathé Amougou, Lucas Dominique Bembong Ebokona, Garga Amadou, Rose Ngo Makak, Richard Russell Akoulou Ze Mballa, J. Biodiv. & Environ. Sci. 28(6), 170-184, June 2026.

Characterization of macroplastics in the mangrove ecosystems of Baganga, Davao Oriental, Philippines

Marlone M. Barrete*, J. Biodiv. & Environ. Sci. 28(6), 150-169, June 2026.