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A structural equation model of land capability and related drivers

Implications for land degradation forecasting in a tropical river basin

Bibliographic Data

ID21647447
AuthorsGabriel Henrique de Morais Fernandes (0000-0003-0946-2052, Federal Institute of Triângulo Mineiro (IFTM), Uberaba Campus, Geoprocessing Laboratory Uberaba Brazil), Renato Farias do Valle Junior (Federal Institute of Triângulo Mineiro (IFTM), Uberaba Campus, Geoprocessing Laboratory Uberaba Brazil), Renato Farias do Valle (0000-0003-0774-5788, Instituto Federal de Educação, Ciência e Tecnologia do Triângulo Mineiro), Maytê Maria Abreu Pires de Melo Silva (0000-0002-7633-0714, Federal Institute of Triângulo Mineiro (IFTM), Uberaba Campus, Geoprocessing Laboratory Uberaba Brazil), Rafaella Gouveia Mendes (0000-0002-4849-0841, Federal Institute of Triângulo Mineiro (IFTM), Uberaba Campus, Geoprocessing Laboratory Uberaba Brazil), Luís Filipe Sanches Fernandes (0000-0002-9486-7160, Center for Research and Agro‐environmental and Biological Technologies (CITAB) University of Trás‐os‐Montes e Alto Douro Vila Real Portugal), António Carlos Pinheiro Fernandes (0000-0001-6124-1578, Centre for Natural Resources and Environment (CERENA/FEUP), Engineering Faculty University of Porto Porto Portugal), Fernando António Leal Pacheco (0000-0002-2399-5261, Center of Chemistry of Vila Real (CQVR) University of Trás‐os‐Montes e Alto Douro Vila Real Portugal, corresponding author), Teresa Cristina Tarle Pissarra (0000-0001-8261-2470, Faculty of Agricultural and Veterinary Sciences São Paulo State University (UNESP) Jaboticabal Brazil), Marília Carvalho De Melo (0000-0002-9789-2169, Secretary of State for Environment and Sustainable Development, Administrative City of the State of Minas Gerais Belo Horizonte Brazil), Carlos Alberto Valera (0000-0001-5096-0550, Public Ministry of Minas Gerais State, Regional Coordination of Environmental Prosecutors' Offices of the Paranaíba and Baixo Rio Grande River Basins Uberaba Brazil)
Year2023
Volume34
Issue6
Pages1778-1794
Publication date2023-04-15
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueLand Degradation and Development (JOURNAL)
Journal identifiersISSN: 1085-3278 • E-ISSN: 1099-145X
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ldr.4568
OpenAlexW4312001017
LanguageEN
References cited85

Land degradation is a worldwide problem with natural and anthropogenic causes. An important anthropogenic cause of land degradation is land uses that deviate from land capability, which is the “natural” use. Despite the conscience of scientists about this issue, studies are lacking that set up a quantitative nexus between land capability and related drivers. This nexus is essential because it allows anticipating changes in the drivers that promote or recede degradation. In this study, a partial least squares–path model (PLS–PM) was used to help closing this gap. The pilot study occurred in seven Paraopeba River sub‐basins located in the State of Minas Gerais (Brazil), where capability is dominated by mosaics of forests and pastures. Land capability was assessed by the ruggedness number, being inversely proportional to it. Among multiple potential drivers of land capability initially included in the model, collinearity and other consistency and performance analyses indicated the percentage of latosols and (re)forested areas, annual rainfall, and water‐related processes (e.g., weathering, nutrient leaching) as prominent in the studied region. The results linked increases of latosol and forest occupation to runoff reduction [runoff = latosol × (−0.640) + forest × (−0.156) + reforestation × (−0.379)], suggesting an attenuation of erosion by these parameters, namely gully erosion that impacts on the ruggedness number and land capability in the sequel. The weathering of carbonate rocks was also related to land capability changes because the PLS–PM model exposed a relationship between the ruggedness number and products of carbonate rock dissolution: ruggedness number = alkalinity × (−0.578) + total magnesium × (0.462) + dissolved oxygen × (−0.418). In addition to highlighting processes capable of changing land capability overtime, the model equations brought attention to measures that could improve it in the region thus preventing degradation. The measures included management practices capable to raise the soil's dissolved oxygen (e.g., through aeration) or preventing soil's magnesium deficiency (e.g., through foliar sprays). The network of cause‐and‐effect relationships set up by the PLS–PM model was finally used to elucidate about potential land use changes that would bring capability in the Paraopeba River basin towards a better status, such as conversions to pasture land. Future work is expected to further elucidate about the benefits for land capability of specific land use changes, through the testing of expected socioeconomic development scenarios

Agroforestry · Land degradation · Land use · Reforestation · Surface runoff · Environmental Science · Geography and Environmental Studies · Soil erosion and sediment transport · Soil Geostatistics and Mapping · Ecology · Geology · Soil Science

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