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Land use land cover change detection through geospatial analysis in an Indian Biosphere Reserve

Bibliographic Data

ID19586178
AuthorsTarun Kumar Thakur (0000-0001-9389-1292, Indira Gandhi National Tribal University), Digvesh Kumar Patel (0000-0001-5742-9287, Indira Gandhi National Tribal University), Arvind Bijalwan (0000-0001-8719-3842, Veer Chandra Singh Garhwali Uttarakhand University of Horticulture & Forestry), Mammohan J Dobriyal, Mammohan J R Dobriyal (Central Agricultural University), Anirudh Kumar (0000-0002-9672-901X, Indira Gandhi National Tribal University), Anita Thakur (0000-0003-0926-3045, Indira Gandhi National Tribal University), Abhishek Bohra (0000-0003-4569-8900, Indian Institute of Pulses Research), Jahangeer A Bhat (0000-0003-2451-8499, Central Agricultural University, corresponding author)
Year2020
Volume2
Pages100018
Publication date2020-12-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueTrees Forests and People (JOURNAL)
Journal identifiersISSN: 2666-7193 • E-ISSN: 2666-7193
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.tfp.2020.100018
OpenAlexW3046440818
LanguageEN
Citations received4
References cited26

The present study examines the land use land cover (LULC) and change detection impacts on forest ecosystem in Achanakmaar Amarkantak Biosphere Reserve (AABR – area 626.76 km2) of Central India. Results revealed that there has been a change in AABR land use pattern from 2008 to 2018. The major changes include loss of 19.72 km2 of vegetation cover in various forest types due to increasing biotic interference and over grazing, conversion of 14.77 km2 of Dense Sal mixed forest to open mixed forest and cultivable land, and 5.0 km2 teak plantation and Bamboo brakes to agricultural land. Despite losing many plant species due to anthropogenic pressure, the present study found that the AABR as a unique repository of plant species rich in biodiversity. Many spots of this area are invaded or replaced by exotic species which is causing the loss of ecology and diversity of this region. Based on our study Sal mixed forest reduced by 2.88% (5.23 km2), Dense mixed forest 4.02% (9.54 km2), Teak plantation 6.77% (2.61 km2) and Bamboo brakes reduced by 7.66% (2.34 km2). The study concludes that the Landsat 7 TM and Resourcesat 2A satellite images are the most suitable for studying the LULC change on forest ecosystem of AABR. We advocate that by adopting the rigorous conservation measures, especially in open & dense forest and young under-stocked teak forests can restore the vegetation density and diversity in the area. Moreover, Sal natural regeneration of vegetation would remain crucial, and invasion of exotic species over native species needs to be restored in the forest area. Such findings on major changes occurring in forest ecosystem hold tremendous implications in relation to the welfare of the resource-poor tribal communities who are greatly dependent on the natural resources available in AABR for their livelihood

Agroforestry · Bamboo · Biodiversity · Biosphere · Geography · Land cover · Land use · Conservation, Biodiversity, and Resource Management · Environmental Science · Land Use and Ecosystem Services · Remote Sensing in Agriculture · Ecology · Forestry

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Unique citing works4
Citations per year1
Citation span2022 - 2025 (4)
Citation velocityrecent
Highly citedNo
Citation typesNeutral: 3

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