Spatial distribution of Pb and Zn in soils under native vegetation in Southeast Brazil

Heavy metals can play an important biological role as micronutrients but also as potentially toxic elements (PTEs). Understanding the natural concentrations of PTEs-Pb and Zn included-in soils allows for the identification and monitoring of contaminated areas and their role in environmental risk ass...

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Published inEnvironmental geochemistry and health Vol. 46; no. 3; p. 84
Main Authors Skorupa, Alba L. A., Bispo, Fábio H. A., Assunção, Shirlei A., Oliveira, Jakeline R., Lima, Francielle R. D., Teixeira, Marcília B., Guilherme, Luiz R. G., Scolforo, José R. S., Zinn, Yuri L., Marques, João José
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.03.2024
Springer Nature B.V
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Abstract Heavy metals can play an important biological role as micronutrients but also as potentially toxic elements (PTEs). Understanding the natural concentrations of PTEs-Pb and Zn included-in soils allows for the identification and monitoring of contaminated areas and their role in environmental risk assessment. In this study, we aim to determine semi-total or natural and available concentrations of Pb and Zn in topsoils (0–20 cm depth) from 337 samples under native vegetation in the State of Minas Gerais, Brazil. Additionally, we sought to interpret the spatial geochemical variability using geostatistical techniques and quality reference values for these elements in soils were established. The semi-total concentrations were determined by flame and graphite furnace atomic absorption after microwave-assisted nitric acid digestion method. The available concentrations were extracted using the Mehlich-I extractor and determined by atomic absorption spectrometer. Spatial variability was modeled using semivariance estimators: Matheron’s classic, Cressie and Hawkins’ robust, and Cressie median estimators, the last two being less sensitive to extreme values. This allowed the construction of digital maps through kriging of semi-total Pb and Zn contents using the median estimator, as well as other soil properties by the robust estimator. The dominance of acidic pH and low CEC values reflects highly weathered low-fertility soils. Semi-total Pb contents ranged from 2.1 to 278 mg kg −1 (median: 9.35 mg kg −1 ) whereas semi-total Zn contents ranged from 2.7 to 495 mg kg −1 (median: 7.7 mg kg −1 ). The available Pb contents ranged from 0.1 to 6.92 mg kg −1 (median: 0.54 mg kg −1 ) whereas available Zn contents ranged from 0.1 to 78.2 mg kg −1 (median: 0.32 mg kg −1 ). The highest Pb and Zn concentrations were observed near Januária, in the northern part of the territory, probably on limestone rocks from the Bambuí group. Finally, the QRVs for Pb and Zn in natural soils were lower than their background values from other Brazilian region and below the prevention values suggested by Brazilian environmental regulations.
AbstractList Heavy metals can play an important biological role as micronutrients but also as potentially toxic elements (PTEs). Understanding the natural concentrations of PTEs-Pb and Zn included-in soils allows for the identification and monitoring of contaminated areas and their role in environmental risk assessment. In this study, we aim to determine semi-total or natural and available concentrations of Pb and Zn in topsoils (0-20 cm depth) from 337 samples under native vegetation in the State of Minas Gerais, Brazil. Additionally, we sought to interpret the spatial geochemical variability using geostatistical techniques and quality reference values for these elements in soils were established. The semi-total concentrations were determined by flame and graphite furnace atomic absorption after microwave-assisted nitric acid digestion method. The available concentrations were extracted using the Mehlich-I extractor and determined by atomic absorption spectrometer. Spatial variability was modeled using semivariance estimators: Matheron's classic, Cressie and Hawkins' robust, and Cressie median estimators, the last two being less sensitive to extreme values. This allowed the construction of digital maps through kriging of semi-total Pb and Zn contents using the median estimator, as well as other soil properties by the robust estimator. The dominance of acidic pH and low CEC values reflects highly weathered low-fertility soils. Semi-total Pb contents ranged from 2.1 to 278 mg kg-1 (median: 9.35 mg kg-1) whereas semi-total Zn contents ranged from 2.7 to 495 mg kg-1 (median: 7.7 mg kg-1). The available Pb contents ranged from 0.1 to 6.92 mg kg-1 (median: 0.54 mg kg-1) whereas available Zn contents ranged from 0.1 to 78.2 mg kg-1 (median: 0.32 mg kg-1). The highest Pb and Zn concentrations were observed near Januária, in the northern part of the territory, probably on limestone rocks from the Bambuí group. Finally, the QRVs for Pb and Zn in natural soils were lower than their background values from other Brazilian region and below the prevention values suggested by Brazilian environmental regulations.
Heavy metals can play an important biological role as micronutrients but also as potentially toxic elements (PTEs). Understanding the natural concentrations of PTEs-Pb and Zn included-in soils allows for the identification and monitoring of contaminated areas and their role in environmental risk assessment. In this study, we aim to determine semi-total or natural and available concentrations of Pb and Zn in topsoils (0–20 cm depth) from 337 samples under native vegetation in the State of Minas Gerais, Brazil. Additionally, we sought to interpret the spatial geochemical variability using geostatistical techniques and quality reference values for these elements in soils were established. The semi-total concentrations were determined by flame and graphite furnace atomic absorption after microwave-assisted nitric acid digestion method. The available concentrations were extracted using the Mehlich-I extractor and determined by atomic absorption spectrometer. Spatial variability was modeled using semivariance estimators: Matheron’s classic, Cressie and Hawkins’ robust, and Cressie median estimators, the last two being less sensitive to extreme values. This allowed the construction of digital maps through kriging of semi-total Pb and Zn contents using the median estimator, as well as other soil properties by the robust estimator. The dominance of acidic pH and low CEC values reflects highly weathered low-fertility soils. Semi-total Pb contents ranged from 2.1 to 278 mg kg −1 (median: 9.35 mg kg −1 ) whereas semi-total Zn contents ranged from 2.7 to 495 mg kg −1 (median: 7.7 mg kg −1 ). The available Pb contents ranged from 0.1 to 6.92 mg kg −1 (median: 0.54 mg kg −1 ) whereas available Zn contents ranged from 0.1 to 78.2 mg kg −1 (median: 0.32 mg kg −1 ). The highest Pb and Zn concentrations were observed near Januária, in the northern part of the territory, probably on limestone rocks from the Bambuí group. Finally, the QRVs for Pb and Zn in natural soils were lower than their background values from other Brazilian region and below the prevention values suggested by Brazilian environmental regulations.
Heavy metals can play an important biological role as micronutrients but also as potentially toxic elements (PTEs). Understanding the natural concentrations of PTEs-Pb and Zn included-in soils allows for the identification and monitoring of contaminated areas and their role in environmental risk assessment. In this study, we aim to determine semi-total or natural and available concentrations of Pb and Zn in topsoils (0-20 cm depth) from 337 samples under native vegetation in the State of Minas Gerais, Brazil. Additionally, we sought to interpret the spatial geochemical variability using geostatistical techniques and quality reference values for these elements in soils were established. The semi-total concentrations were determined by flame and graphite furnace atomic absorption after microwave-assisted nitric acid digestion method. The available concentrations were extracted using the Mehlich-I extractor and determined by atomic absorption spectrometer. Spatial variability was modeled using semivariance estimators: Matheron's classic, Cressie and Hawkins' robust, and Cressie median estimators, the last two being less sensitive to extreme values. This allowed the construction of digital maps through kriging of semi-total Pb and Zn contents using the median estimator, as well as other soil properties by the robust estimator. The dominance of acidic pH and low CEC values reflects highly weathered low-fertility soils. Semi-total Pb contents ranged from 2.1 to 278 mg kg (median: 9.35 mg kg ) whereas semi-total Zn contents ranged from 2.7 to 495 mg kg (median: 7.7 mg kg ). The available Pb contents ranged from 0.1 to 6.92 mg kg (median: 0.54 mg kg ) whereas available Zn contents ranged from 0.1 to 78.2 mg kg (median: 0.32 mg kg ). The highest Pb and Zn concentrations were observed near Januária, in the northern part of the territory, probably on limestone rocks from the Bambuí group. Finally, the QRVs for Pb and Zn in natural soils were lower than their background values from other Brazilian region and below the prevention values suggested by Brazilian environmental regulations.
Heavy metals can play an important biological role as micronutrients but also as potentially toxic elements (PTEs). Understanding the natural concentrations of PTEs-Pb and Zn included-in soils allows for the identification and monitoring of contaminated areas and their role in environmental risk assessment. In this study, we aim to determine semi-total or natural and available concentrations of Pb and Zn in topsoils (0–20 cm depth) from 337 samples under native vegetation in the State of Minas Gerais, Brazil. Additionally, we sought to interpret the spatial geochemical variability using geostatistical techniques and quality reference values for these elements in soils were established. The semi-total concentrations were determined by flame and graphite furnace atomic absorption after microwave-assisted nitric acid digestion method. The available concentrations were extracted using the Mehlich-I extractor and determined by atomic absorption spectrometer. Spatial variability was modeled using semivariance estimators: Matheron’s classic, Cressie and Hawkins’ robust, and Cressie median estimators, the last two being less sensitive to extreme values. This allowed the construction of digital maps through kriging of semi-total Pb and Zn contents using the median estimator, as well as other soil properties by the robust estimator. The dominance of acidic pH and low CEC values reflects highly weathered low-fertility soils. Semi-total Pb contents ranged from 2.1 to 278 mg kg−1 (median: 9.35 mg kg−1) whereas semi-total Zn contents ranged from 2.7 to 495 mg kg−1 (median: 7.7 mg kg−1). The available Pb contents ranged from 0.1 to 6.92 mg kg−1 (median: 0.54 mg kg−1) whereas available Zn contents ranged from 0.1 to 78.2 mg kg−1 (median: 0.32 mg kg−1). The highest Pb and Zn concentrations were observed near Januária, in the northern part of the territory, probably on limestone rocks from the Bambuí group. Finally, the QRVs for Pb and Zn in natural soils were lower than their background values from other Brazilian region and below the prevention values suggested by Brazilian environmental regulations.
ArticleNumber 84
Author Assunção, Shirlei A.
Oliveira, Jakeline R.
Marques, João José
Teixeira, Marcília B.
Lima, Francielle R. D.
Scolforo, José R. S.
Bispo, Fábio H. A.
Guilherme, Luiz R. G.
Zinn, Yuri L.
Skorupa, Alba L. A.
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Issue 3
Keywords Tropical soils
Soil quality reference values
Environmental safety
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Kriging
Potentially toxic elements
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Snippet Heavy metals can play an important biological role as micronutrients but also as potentially toxic elements (PTEs). Understanding the natural concentrations of...
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StartPage 84
SubjectTerms Absorption
Acid digestion
Digital mapping
Earth and Environmental Science
Environment
Environmental assessment
Environmental Chemistry
Environmental Health
Environmental quality
Environmental regulations
Environmental risk
Estimators
Extreme values
Fertility
Geochemistry
Geostatistics
Heavy metals
Lead
Limestone
Metals
Micronutrients
Minerals
Nitric acid
Nitric acids
Original Paper
Public Health
Risk assessment
Robustness
Soil contamination
Soil fertility
Soil properties
Soil Science & Conservation
Soil sciences
Soils
Spatial distribution
Spatial variations
Spectral analysis
Terrestrial Pollution
Topsoil
Vegetation
Zinc
Title Spatial distribution of Pb and Zn in soils under native vegetation in Southeast Brazil
URI https://link.springer.com/article/10.1007/s10653-024-01859-x
https://www.ncbi.nlm.nih.gov/pubmed/38367079
https://www.proquest.com/docview/2927881543
https://search.proquest.com/docview/2928250334
Volume 46
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