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dc.creatorMancini, Marcelo-
dc.creatorWeindorf, David C.-
dc.creatorSilva, Sérgio Henrique Godinho-
dc.creatorChakraborty, Somsubhra-
dc.creatorTeixeira, Anita Fernanda dos Santos-
dc.creatorGuilherme, Luiz Roberto Guimarães-
dc.creatorCuri, Nilton-
dc.date.accessioned2020-05-12T11:50:40Z-
dc.date.available2020-05-12T11:50:40Z-
dc.date.issued2019-11-
dc.identifier.citationMANCINI, M. et al. Parent material distribution mapping from tropical soils data via machine learning and portable X-ray fluorescence (pXRF) spectrometry in Brazil. Geoderma, [S.I.], v. 354, Nov. 2019. Não paginado.pt_BR
dc.identifier.urihttps://www.sciencedirect.com/science/article/abs/pii/S0016706119307888#!pt_BR
dc.identifier.urihttp://repositorio.ufla.br/jspui/handle/1/40810-
dc.description.abstractKnowledge about parent material (PM) is crucial to understand the properties of overlying soils. Assessing PM of very deep soils, however, is not easy. Previous studies have predicted PM via proximal sensors and machine learning algorithms, but within small areas and with low soil variety. This study evaluates the efficiency of using portable X-ray fluorescence (pXRF) spectrometry together with machine learning algorithms in a large area populated with a wide variety of soil classes and land uses to build accurate PM distribution maps from soil data. Samples from A and B horizons were collected from 117 sites, totaling 234 samples, along with representative PM samples of the predominant PMs in the region. Elemental contents of PM and soil samples were obtained using pXRF. Random Forest (RF), Support Vector Machine (SVM) and Linear Discriminant Analysis (LDA) models built with and without Principal Component Analysis (PCA) were used to predict PMs from A and B horizon samples separately. For validation, PM was identified in 23 different spots and compared with the predicted PM via overall accuracy and Kappa coefficient. Maps built with models excluding PCA had an overall accuracy ranging from 0.87 to 0.96 and kappa coefficient ranging from 0.74 to 0.91. Maps generated with PCA based models reached 100% overall accuracy. Prediction of PM using pXRF with samples from either A or B horizon and machine learning algorithms offers solid results even when applied in large areas with high land use and soil class variability.pt_BR
dc.languageenpt_BR
dc.publisherElsevier B.V.pt_BR
dc.rightsrestrictAccesspt_BR
dc.sourceGeodermapt_BR
dc.subjectPedologypt_BR
dc.subjectParent materialpt_BR
dc.subjectMachine learningpt_BR
dc.subjectDigital soil mappingpt_BR
dc.subjectPrediction modelspt_BR
dc.subjectTropical soilspt_BR
dc.subjectPedologiapt_BR
dc.subjectAprendizagem de máquinapt_BR
dc.subjectMapeamento digital do solopt_BR
dc.subjectModelos de prediçãopt_BR
dc.subjectSolos tropicaispt_BR
dc.titleParent material distribution mapping from tropical soils data via machine learning and portable X-ray fluorescence (pXRF) spectrometry in Brazilpt_BR
dc.typeArtigopt_BR
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