Soils surrounding saline-alkaline lakes of Nhecolândia, Pantanal, Brazil: Toposequences, mineralogy and chemistry

The Nhecolândia subregion of the Brazilian Pantanal, subject to a highly seasonal climate, hosts a diverse range of freshwater and saline-alkaline lakes. The latter can be green due to cyanobacterial bloom, black due to dissolved organic matter, or crystalline. Over the past two decades, numerous st...

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Published inGeoderma Regional Vol. 36; p. e00746
Main Authors Costa-Silva, André Renan, Lucas, Yves, Rezende-Filho, Ary Tavares, Ramos, Mariana Dias, Merdy, Patricia, Ishida, Débora Ayumi, Barbiero, Laurent, Melfi, Adolpho José, Montes, Célia Regina
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LanguageEnglish
Published Elsevier B.V 01.03.2024
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Abstract The Nhecolândia subregion of the Brazilian Pantanal, subject to a highly seasonal climate, hosts a diverse range of freshwater and saline-alkaline lakes. The latter can be green due to cyanobacterial bloom, black due to dissolved organic matter, or crystalline. Over the past two decades, numerous studies in the region have explored the connections between the lake type, the surrounding soils, and water table dynamics. However, these insights emerged from independent studies conducted at multiple sites, making their synthesis challenging and leaving questions about the differences between lake types. Our research focuses on a representative Nhecolândia site, aiming to comprehensively understand soil and lake genesis and dynamics. For each lake type, we conducted detailed toposequence soil studies, assessing particle size distribution, chemistry and mineralogy of the <2 mm fraction of identified horizons. A 49-month temporal study utilizing PlanetScope satellite data examined lake connections to the hydrographic network affected by seasonal flooding. Our findings confirmed the general organization and mineralogy of soils around saline-alkaline lakes. Notably, we identified variations in soil toposequences corresponding to different lake type. Two types of silcrete were observed: one acidic, found at the upper slopes, and the other alkaline, located at the lower slopes. We determined that, for endorheism and lake alkalinization, the presence of a ridge around a lake is insufficient. Instead, deep impermeable horizons in the lower portion of the toposequences are essential. Additionally, crystalline lakes differentiate from black and green ones due to less efficient hydraulic isolation. Our comprehensive dataset from a single site provides a valuable resource for guiding and developing more specific studies on these alkaline systems. •This system is representative of soil systems related to Pantanal alkaline lakes.•Being surrounded by ridges is not enough to explain the alkalinity of a lake.•Alkaline lake colour depends on hydraulic discontinuity between depth and surface.•Horizons with pH > 10 and pH < 4 can be closer than one meter.•Two types of silcrete currently form in these systems.
AbstractList The Nhecolândia subregion of the Brazilian Pantanal, subject to a highly seasonal climate, hosts a diverse range of freshwater and saline-alkaline lakes. The latter can be green due to cyanobacterial bloom, black due to dissolved organic matter, or crystalline. Over the past two decades, numerous studies in the region have explored the connections between the lake type, the surrounding soils, and water table dynamics. However, these insights emerged from independent studies conducted at multiple sites, making their synthesis challenging and leaving questions about the differences between lake types. Our research focuses on a representative Nhecolândia site, aiming to comprehensively understand soil and lake genesis and dynamics. For each lake type, we conducted detailed toposequence soil studies, assessing particle size distribution, chemistry and mineralogy of the <2 mm fraction of identified horizons. A 49-month temporal study utilizing PlanetScope satellite data examined lake connections to the hydrographic network affected by seasonal flooding. Our findings confirmed the general organization and mineralogy of soils around saline-alkaline lakes. Notably, we identified variations in soil toposequences corresponding to different lake type. Two types of silcrete were observed: one acidic, found at the upper slopes, and the other alkaline, located at the lower slopes. We determined that, for endorheism and lake alkalinization, the presence of a ridge around a lake is insufficient. Instead, deep impermeable horizons in the lower portion of the toposequences are essential. Additionally, crystalline lakes differentiate from black and green ones due to less efficient hydraulic isolation. Our comprehensive dataset from a single site provides a valuable resource for guiding and developing more specific studies on these alkaline systems. •This system is representative of soil systems related to Pantanal alkaline lakes.•Being surrounded by ridges is not enough to explain the alkalinity of a lake.•Alkaline lake colour depends on hydraulic discontinuity between depth and surface.•Horizons with pH > 10 and pH < 4 can be closer than one meter.•Two types of silcrete currently form in these systems.
The Nhecolândia subregion of the Brazilian Pantanal, subject to a highly seasonal climate, hosts a diverse range of freshwater and saline-alkaline lakes. The latter can be green due to cyanobacterial bloom, black due to dissolved organic matter, or crystalline. Over the past two decades, numerous studies in the region have explored the connections between the lake type, the surrounding soils, and water table dynamics. However, these insights emerged from independent studies conducted at multiple sites, making their synthesis challenging and leaving questions about the differences between lake types. Our research focuses on a representative Nhecolândia site, aiming to comprehensively understand soil and lake genesis and dynamics. For each lake type, we conducted detailed toposequence soil studies, assessing particle size distribution, chemistry and mineralogy of the <2 mm fraction of identified horizons. A 49-month temporal study utilizing PlanetScope satellite data examined lake connections to the hydrographic network affected by seasonal flooding. Our findings confirmed the general organization and mineralogy of soils around saline-alkaline lakes. Notably, we identified variations in soil toposequences corresponding to different lake type. Two types of silcrete were observed: one acidic, found at the upper slopes, and the other alkaline, located at the lower slopes. We determined that, for endorheism and lake alkalinization, the presence of a ridge around a lake is insufficient. Instead, deep impermeable horizons in the lower portion of the toposequences are essential. Additionally, crystalline lakes differentiate from black and green ones due to less efficient hydraulic isolation. Our comprehensive dataset from a single site provides a valuable resource for guiding and developing more specific studies on these alkaline systems.
ArticleNumber e00746
Author Ishida, Débora Ayumi
Merdy, Patricia
Barbiero, Laurent
Lucas, Yves
Ramos, Mariana Dias
Rezende-Filho, Ary Tavares
Melfi, Adolpho José
Costa-Silva, André Renan
Montes, Célia Regina
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  givenname: Yves
  surname: Lucas
  fullname: Lucas, Yves
  organization: Université de Toulon, Aix Marseille Univ, CNRS, IM2NP, 83041 CEDEX 9 Toulon, France
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  givenname: Ary Tavares
  surname: Rezende-Filho
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  givenname: Mariana Dias
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  fullname: Merdy, Patricia
  organization: Université de Toulon, Aix Marseille Univ, CNRS, IM2NP, 83041 CEDEX 9 Toulon, France
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  givenname: Débora Ayumi
  surname: Ishida
  fullname: Ishida, Débora Ayumi
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  givenname: Laurent
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  fullname: Barbiero, Laurent
  organization: GET, IRD, CNRS, UPS, OMP, Toulouse 31400, France
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  givenname: Adolpho José
  surname: Melfi
  fullname: Melfi, Adolpho José
  organization: IEE, LEST, Universidade de São Paulo, São Paulo 05508-010, Brazil
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  givenname: Célia Regina
  surname: Montes
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Keywords Nhecolândia
EG
DOM
OMF
Petroduric horizon
Solonetz
Pantanal
ODFE
Silcrete
ECS
ECW
DOC
Arenosols
Pantanal Nhecolândia Arenosols Solonetz Silcrete Petroduric horizon
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Snippet The Nhecolândia subregion of the Brazilian Pantanal, subject to a highly seasonal climate, hosts a diverse range of freshwater and saline-alkaline lakes. The...
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SubjectTerms Arenosols
Chemical Sciences
Environmental Sciences
Nhecolândia
Pantanal
Petroduric horizon
Silcrete
Solonetz
Title Soils surrounding saline-alkaline lakes of Nhecolândia, Pantanal, Brazil: Toposequences, mineralogy and chemistry
URI https://dx.doi.org/10.1016/j.geodrs.2023.e00746
https://hal.science/hal-04437294
Volume 36
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