Seasonal variation of soil aggregate stability, porosity and infiltration during a crop sequence under no tillage
Soil properties vary over time with soils presenting different susceptibility to runoff and erosion during the year. Under no-tillage cropping, soil physical properties could change mainly due to the climatic factor effect, crop type and wheel traffic. The aim of this study was to analyze the season...
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Sociedad Mexicana de la Ciencia del Suelo A. C.
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doaj-65523101f3544eba99a15bd169d2927d2020-11-24T23:10:31ZengSociedad Mexicana de la Ciencia del Suelo A. C.Terra Latinoamericana0187-57792395-80302018-07-0136319920910.28940/terra.v36i3.333Seasonal variation of soil aggregate stability, porosity and infiltration during a crop sequence under no tillageMario Guillermo Castiglioni0María Carolina Sasal1Marcelo Wilson2José Daniel Oszust3Facultad de Agronomía, Universidad de Buenos Aires. Av. San Martin 4453 - C1417DSE. Buenos Aires, Argentina. Estación Experimental INTA Paraná. Ruta 11 km 12.5. 3101 Oro Verde, Entre Ríos, Argentina.Estación Experimental INTA Paraná. Ruta 11 km 12.5. 3101 Oro Verde, Entre Ríos, Argentina.Facultad de Ciencias Agropecuarias. Universidad Nacional de Entre Ríos. Ruta Pcial. No. 11 km 10.5. 3100 Oro Verde, Entre Ríos, Argentina. Soil properties vary over time with soils presenting different susceptibility to runoff and erosion during the year. Under no-tillage cropping, soil physical properties could change mainly due to the climatic factor effect, crop type and wheel traffic. The aim of this study was to analyze the seasonal variation of selected soil physical properties of an Aquic Argiudoll under no-tillage, focusing on their relationship with water partitioning between infiltration and runoff during a typical crop sequence of the Pampean region (Argentina). The study was carried out in an agricultural field located at the Paraná Experimental Station of the Instituto Nacional de Tecnología Agropecuaria (INTA) in Entre Ríos province (Argentina). Soil samples were taken at six different times during the crop rotation cycle. Soil water content, bulk density, pore size distribution, structural stability and water infiltration obtained with a rainfall simulator were determined on each sampling date. To relate the behavior of these soil properties with the previous weather conditions, we considered different climatic variables. Our results showed that there was no influence on soil physical properties of the crop type or the wetting and drying soil cycles. However, in this high silt content Argiudoll with a moderate to high contraction and expansion capacity, it was found that soil macroporosity was higher in drier soils, reducing the runoff coefficient. Furthermore, soil structural stability also affected the infiltration capacity of this soil during some periods, resulting in a better structure during periods of higher temperature. We conclude that the critical period for this Argiudoll to generate runoff would be mid-autumn to early spring, when the soil water content is higher, temperatures are low, and therefore macroporosity, soil structural stability and infiltration rates have worse values. In this sense, winter cover crops is a management practice that will favor the soil drying and coverage, reducing runoff risk during this period. https://www.terralatinoamericana.org.mx/index.php/terra/article/view/333/440soil physical propertiestemporal variationrainfall simulator |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mario Guillermo Castiglioni María Carolina Sasal Marcelo Wilson José Daniel Oszust |
spellingShingle |
Mario Guillermo Castiglioni María Carolina Sasal Marcelo Wilson José Daniel Oszust Seasonal variation of soil aggregate stability, porosity and infiltration during a crop sequence under no tillage Terra Latinoamericana soil physical properties temporal variation rainfall simulator |
author_facet |
Mario Guillermo Castiglioni María Carolina Sasal Marcelo Wilson José Daniel Oszust |
author_sort |
Mario Guillermo Castiglioni |
title |
Seasonal variation of soil aggregate stability, porosity and infiltration during a crop sequence under no tillage |
title_short |
Seasonal variation of soil aggregate stability, porosity and infiltration during a crop sequence under no tillage |
title_full |
Seasonal variation of soil aggregate stability, porosity and infiltration during a crop sequence under no tillage |
title_fullStr |
Seasonal variation of soil aggregate stability, porosity and infiltration during a crop sequence under no tillage |
title_full_unstemmed |
Seasonal variation of soil aggregate stability, porosity and infiltration during a crop sequence under no tillage |
title_sort |
seasonal variation of soil aggregate stability, porosity and infiltration during a crop sequence under no tillage |
publisher |
Sociedad Mexicana de la Ciencia del Suelo A. C. |
series |
Terra Latinoamericana |
issn |
0187-5779 2395-8030 |
publishDate |
2018-07-01 |
description |
Soil properties vary over time with soils presenting different susceptibility to runoff and erosion during the year. Under no-tillage cropping, soil physical properties could change mainly due to the climatic factor effect, crop type and wheel traffic. The aim of this study was to analyze the seasonal variation of selected soil physical properties of an Aquic Argiudoll under no-tillage, focusing on their relationship with water partitioning between infiltration and runoff during a typical crop sequence of the Pampean region (Argentina). The study was carried out in an agricultural field located at the Paraná Experimental Station of the Instituto Nacional de Tecnología Agropecuaria (INTA) in Entre Ríos province (Argentina). Soil samples were taken at six different times during the crop rotation cycle. Soil water content, bulk density, pore size distribution, structural stability and water infiltration obtained with a rainfall simulator were determined on each sampling date. To relate the behavior of these soil properties with the previous weather conditions, we considered different climatic variables. Our results showed that there was no influence on soil physical properties of the crop type or the wetting and drying soil cycles. However, in this high silt content Argiudoll with a moderate to high contraction and expansion capacity, it was found that soil macroporosity was higher in drier soils, reducing the runoff coefficient. Furthermore, soil structural stability also affected the infiltration capacity of this soil during some periods, resulting in a better structure during periods of higher temperature. We conclude that the critical period for this Argiudoll to generate runoff would be mid-autumn to early spring, when the soil water content is higher, temperatures are low, and therefore macroporosity, soil structural stability and infiltration rates have worse values. In this sense, winter cover crops is a management practice that will favor the soil drying and coverage, reducing runoff risk during this period. |
topic |
soil physical properties temporal variation rainfall simulator |
url |
https://www.terralatinoamericana.org.mx/index.php/terra/article/view/333/440 |
work_keys_str_mv |
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