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Publication details

Document type
Journal articles

Document subtype
Full paper

Title
Dynamics of land-cover change and characterization of charcoal production and trade in southwestern Angola

Participants in the publication
Raquel Kissanga (Author)
FACULDADE DE CIÊNCIAS DA UNIVERSIDADE DE LISBOA
Centro de Ecologia, Evolução e Alterações Ambientais
Luís Catarino (Author)
FACULDADE DE CIÊNCIAS DA UNIVERSIDADE DE LISBOA
Centro de Ecologia, Evolução e Alterações Ambientais
Dep. Biologia Vegetal
CE3C
Cristina Máguas (Author)
Dep. Biologia Vegetal
CE3C
Ana I.R. Cabral (Author)

Summary
Abstract\\nMiombo and mopane woodlands of southwestern Angola have been overexploited for decades, leading to deforestation and forest degradation driven by social dynamics during and after the civil war (1975–2002), with different patterns of use of natural resources. Our objective was to study the changes in land-cover in three municipalities of southwestern Angola, and to characterize the charcoal production and trade on miombo and mopane woodlands, where that production was identified as one of the main causes of degradation. Land-cover dynamics between 1990 and 2019 was evaluated based on four land-cover maps, and the processes involved in deforestation and forest degradation were identified and discussed. Roadside charcoal sale locations, markets, the most exploited species, and the type, size, and efficiency of the kilns were assessed through field surveys. Between 1990 and 2019, the woodland area decreased and was converted to savanna woodland and agriculture, while the urban area continuously increased. Both miombo and mopane woodlands went through higher annual deforestation rates than those reported by FAO at the national level. The dynamics of land use were different between the war and post-war periods, respectively with the abandonment of agricultural land and migration of rural populations to the cities, and their return to the countryside and use of land and forest resources as primary subsistence activities. Agriculture and charcoal production were identified as the main income-generating activities, and the occupation of unused land by outsiders may have also contributed to intensify deforestation and forest degradation. To slow down the ongoing area loss of miombo and mopane woodlands, it seems crucial to implement conservation and restoration strategies promoting the sustainable use of the resources while ensuring the provision of essential goods to local populations and contributing to reduce poverty.

Date of Submisson/Request
2023-09-11
Date of Acceptance
2023-12-29
Date of Publication
2024-02-13

Where published
Remote Sensing Applications: Society and Environment

Publication Identifiers
ISSN - 2352-9385

Publisher
Elsevier BV

Volume
34

Starting page
101162

Document Identifiers
DOI - https://doi.org/10.1016/j.rsase.2024.101162
URL - https://doi.org/10.1016/j.rsase.2024.101162

Rankings
Web Of Science Q2 (2023) - 3.8 - ENVIRONMENTAL SCIENCES
Web Of Science Q2 (2023) - 3.8 - REMOTE SENSING
SCIMAGO Q1 (2023) - 0.892 - Computers in Earth Sciences

Keywords
Deforestation and forest degradation Huíla MiomMiombo and Mopane woodlands Remote sensing Socioeconomic factors Rural migration


Export

APA
Raquel Kissanga, Luís Catarino, Cristina Máguas, Ana I.R. Cabral, (2024). Dynamics of land-cover change and characterization of charcoal production and trade in southwestern Angola. Remote Sensing Applications: Society and Environment, 34, ISSN 2352-9385. eISSN . https://doi.org/10.1016/j.rsase.2024.101162

IEEE
Raquel Kissanga, Luís Catarino, Cristina Máguas, Ana I.R. Cabral, "Dynamics of land-cover change and characterization of charcoal production and trade in southwestern Angola" in Remote Sensing Applications: Society and Environment, vol. 34, 2024. 10.1016/j.rsase.2024.101162

BIBTEX
@article{63955, author = {Raquel Kissanga and Luís Catarino and Cristina Máguas and Ana I.R. Cabral}, title = {Dynamics of land-cover change and characterization of charcoal production and trade in southwestern Angola}, journal = {Remote Sensing Applications: Society and Environment}, year = 2024, volume = 34 }