3D soil void space lacunarity as an index of degradation after land use change

In this work, lacunarity analysis is performed on soil pores segmented by the pure voxel extraction method from soil tomography images. The conversion of forest to sugarcane plantation was found to result in higher sugarcane soil pore lacunarity than that of native forest soil, while the porosity wa...

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Bibliographic Details
Authors: Santos, Carlos Renato dos, Antonino, Antônio Celso Dantas, Heck, Richard John, Lucena, Leandro Ricardo Rodrigues de, Oliveira, Alex Cristóvão Holanda de, Silva, Antonio Samuel Alves da, Stosic, Borko, Menezes, Romulo Simões Cezar
Format: article
Status:Published version
Publication Date:2020
Country:Brasil
Institution:Universidade Estadual de Maringá (UEM)
Repository:Acta Scientiarum. Agronomy (Online)
Language:English
OAI Identifier:oai:periodicos.uem.br/ojs:article/42491
Online Access:http://www.periodicos.uem.br/ojs/index.php/ActaSciAgron/article/view/42491
Access Level:Open access
Keyword:lacunarity; soil porosity; impact of land use change.
lacunarity
soil porosity
impact of land use change
Description
Summary:In this work, lacunarity analysis is performed on soil pores segmented by the pure voxel extraction method from soil tomography images. The conversion of forest to sugarcane plantation was found to result in higher sugarcane soil pore lacunarity than that of native forest soil, while the porosity was found to be lower. More precisely, this study shows that native forest has more porous soil with a more uniform spatial distribution of pores, while sugarcane soil has lower porosity and a more heterogeneous pore distribution. Moreover, validation through multivariate statistics demonstrates that lacunarity can be considered a relevant index of clustering and can explain the variability among soils under different land use systems. While porosity by itself represents a fundamental concept for quantification of the impact of land use change, the current findings demonstrate that the spatial distribution of pores also plays an important role and that pore lacunarity can be adopted as a complementary tool in studies directed at quantifying the effect of human intervention on soils.