Aggregate Stability in Soil with Humic and Histic Horizons in a Toposequence under Araucaria Forest
ABSTRACT Aggregate stability is one of the most important factors in soil conservation and maintenance of soil environmental functions. The objective of this study was to investigate the aggregate stability mechanisms related to chemical composition of organic matter in soil profiles with humic and...
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Sociedade Brasileira de Ciência do Solo
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doaj-2a205bd256d64a15bb50e7626529dc732021-01-02T04:14:08ZengSociedade Brasileira de Ciência do SoloRevista Brasileira de Ciência do Solo1806-965741010.1590/18069657rbcs20160369S0100-06832017000100412Aggregate Stability in Soil with Humic and Histic Horizons in a Toposequence under Araucaria ForestDaniel HankeDeborah Pinheiro DickABSTRACT Aggregate stability is one of the most important factors in soil conservation and maintenance of soil environmental functions. The objective of this study was to investigate the aggregate stability mechanisms related to chemical composition of organic matter in soil profiles with humic and histic horizons in a toposequence under Araucaria moist forest in southern Brazil. The soils sampled were classified as Humic Hapludox (highest position), Fluvaquentic Humaquepts (lowest slope position), and Typic Haplosaprists (floodplain). The C and N contents were determined in bulk soil samples. The chemical composition of soil organic matter was evaluated by infrared spectroscopy. Aggregate stability was determined by applying increasing levels of ultrasound energy. Carbon content increased from the top of the slope to the alluvial plain. Higher ultrasonic energy values for clay dispersion were observed in the C-rich soils in the lower landscape positions, indicating that organic compounds play an important role in the structural stabilization of these profiles. Both aliphatic and carbohydrate-like structures were pertinent to aggregate stability. In the Oxisol, organo-mineral interaction between carbohydrates and the clay mineral surface was the most important mechanism affecting aggregation. In soils with a higher C content (Humaquepts and Haplosaprists), stabilization is predominantly conferred by the aliphatic groups, which is probably due to the structural protection offered by these hydrophobic organic groups.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-06832017000100412&lng=en&tlng=encarbonsoil structureultrasound energyorgano-mineral interactionhydrophobicity |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Daniel Hanke Deborah Pinheiro Dick |
spellingShingle |
Daniel Hanke Deborah Pinheiro Dick Aggregate Stability in Soil with Humic and Histic Horizons in a Toposequence under Araucaria Forest Revista Brasileira de Ciência do Solo carbon soil structure ultrasound energy organo-mineral interaction hydrophobicity |
author_facet |
Daniel Hanke Deborah Pinheiro Dick |
author_sort |
Daniel Hanke |
title |
Aggregate Stability in Soil with Humic and Histic Horizons in a Toposequence under Araucaria Forest |
title_short |
Aggregate Stability in Soil with Humic and Histic Horizons in a Toposequence under Araucaria Forest |
title_full |
Aggregate Stability in Soil with Humic and Histic Horizons in a Toposequence under Araucaria Forest |
title_fullStr |
Aggregate Stability in Soil with Humic and Histic Horizons in a Toposequence under Araucaria Forest |
title_full_unstemmed |
Aggregate Stability in Soil with Humic and Histic Horizons in a Toposequence under Araucaria Forest |
title_sort |
aggregate stability in soil with humic and histic horizons in a toposequence under araucaria forest |
publisher |
Sociedade Brasileira de Ciência do Solo |
series |
Revista Brasileira de Ciência do Solo |
issn |
1806-9657 |
description |
ABSTRACT Aggregate stability is one of the most important factors in soil conservation and maintenance of soil environmental functions. The objective of this study was to investigate the aggregate stability mechanisms related to chemical composition of organic matter in soil profiles with humic and histic horizons in a toposequence under Araucaria moist forest in southern Brazil. The soils sampled were classified as Humic Hapludox (highest position), Fluvaquentic Humaquepts (lowest slope position), and Typic Haplosaprists (floodplain). The C and N contents were determined in bulk soil samples. The chemical composition of soil organic matter was evaluated by infrared spectroscopy. Aggregate stability was determined by applying increasing levels of ultrasound energy. Carbon content increased from the top of the slope to the alluvial plain. Higher ultrasonic energy values for clay dispersion were observed in the C-rich soils in the lower landscape positions, indicating that organic compounds play an important role in the structural stabilization of these profiles. Both aliphatic and carbohydrate-like structures were pertinent to aggregate stability. In the Oxisol, organo-mineral interaction between carbohydrates and the clay mineral surface was the most important mechanism affecting aggregation. In soils with a higher C content (Humaquepts and Haplosaprists), stabilization is predominantly conferred by the aliphatic groups, which is probably due to the structural protection offered by these hydrophobic organic groups. |
topic |
carbon soil structure ultrasound energy organo-mineral interaction hydrophobicity |
url |
http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-06832017000100412&lng=en&tlng=en |
work_keys_str_mv |
AT danielhanke aggregatestabilityinsoilwithhumicandhistichorizonsinatoposequenceunderaraucariaforest AT deborahpinheirodick aggregatestabilityinsoilwithhumicandhistichorizonsinatoposequenceunderaraucariaforest |
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