Javascript must be enabled to continue!
Soil Aggregate Stability in Salt-Affected Vineyards: Depth-Wise Variability Analysis
View through CrossRef
Soil aggregate stability is an ideal integrative soil quality indicator, but little is known about the relevance of such an indicator with soil depth for salt-affected soils. The objective of this study was to determine soil aggregate stability and identify preponderant aggregation factors, both in topsoil and subsoil horizons in salt-affected conditions. We conducted field investigations by describing soil profiles in pedological pits and by collecting soil samples from different field units. Soils were sampled within different soil horizon types, from superficial tilled organo-mineral horizons to mineral horizons. For all soil samples, we determined the mean weight diameter (MWD) as an indicator of soil aggregate stability and also determined associated physical and chemical properties in some samples. The measured MWD value from 0.28 mm to 1.10 mm could be categorised as unstable, with MWD values and variability decreasing drastically from the topsoil to the deepest mineral horizons. Analysis of MWD in relation to physical and chemical properties suggested that the variability in the MWD value of A-horizons was influenced by both clay fraction abundance and soil organic carbon (SOC) content and the nature of the agricultural practices, while at deeper B-horizons, the decrease in SOC content and the variability in other soil properties with soil depth could be used to explain the overall low aggregate stability. In this study, investigations of soil pits coupled with measurements of soil aggregate stability indicated that it could be possible to restore soil structure quality by limiting deep soil profile compaction in order to improve salt leaching and exportation.
Title: Soil Aggregate Stability in Salt-Affected Vineyards: Depth-Wise Variability Analysis
Description:
Soil aggregate stability is an ideal integrative soil quality indicator, but little is known about the relevance of such an indicator with soil depth for salt-affected soils.
The objective of this study was to determine soil aggregate stability and identify preponderant aggregation factors, both in topsoil and subsoil horizons in salt-affected conditions.
We conducted field investigations by describing soil profiles in pedological pits and by collecting soil samples from different field units.
Soils were sampled within different soil horizon types, from superficial tilled organo-mineral horizons to mineral horizons.
For all soil samples, we determined the mean weight diameter (MWD) as an indicator of soil aggregate stability and also determined associated physical and chemical properties in some samples.
The measured MWD value from 0.
28 mm to 1.
10 mm could be categorised as unstable, with MWD values and variability decreasing drastically from the topsoil to the deepest mineral horizons.
Analysis of MWD in relation to physical and chemical properties suggested that the variability in the MWD value of A-horizons was influenced by both clay fraction abundance and soil organic carbon (SOC) content and the nature of the agricultural practices, while at deeper B-horizons, the decrease in SOC content and the variability in other soil properties with soil depth could be used to explain the overall low aggregate stability.
In this study, investigations of soil pits coupled with measurements of soil aggregate stability indicated that it could be possible to restore soil structure quality by limiting deep soil profile compaction in order to improve salt leaching and exportation.
Related Results
Ecological soil physics as section of ecological soil science
Ecological soil physics as section of ecological soil science
Nowadays, there is a general penetration of ecology in other related sciences. Soil science is not an exception. To the evidence of this, the works of soil scientists may serve, th...
Soil-Available Nutrients Associated with Soil Chemical and Aggregate Properties following Vegetation Restoration in Western Sichuan, China
Soil-Available Nutrients Associated with Soil Chemical and Aggregate Properties following Vegetation Restoration in Western Sichuan, China
The status and drivers of soil-available nutrients in plant-recovered soils are not fully understood, limiting our ability to explore the role of soil-available nutrients in soil g...
Assessment of total and available heavy metal contents in vineyards managed under different agriculture practices
Assessment of total and available heavy metal contents in vineyards managed under different agriculture practices
<p>Land degradation is a major challenge, particularly in intensive agriculture areas such as typical vineyards. Soil contamination with heavy metals is a widespread ...
Deformation of Allochthonous Salt and Evolution of Related Salt-Structural Systems, Eastern Louisiana Gulf Coast
Deformation of Allochthonous Salt and Evolution of Related Salt-Structural Systems, Eastern Louisiana Gulf Coast
Abstract
Salt tectonics in the northern Gulf of Mexico involves both vertical diapirism and lateral silling or flow of salt into wings and tablets (sheets). Combi...
Thermal Anomalies Around Evolving Salt Sheets
Thermal Anomalies Around Evolving Salt Sheets
ABSTRACT
The thermal conductivity of salt is about a factor three larger than that of sediments at sediment surface temperatures. The increase of sedimentary ther...
The American Salt-Dome Problems in the Light of the Roumanian and German Salt Domes
The American Salt-Dome Problems in the Light of the Roumanian and German Salt Domes
Abstract
The American salt-dome problems are divisible into two parallel series, the one comprising problems of description, the other problems of theory. The soluti...
First Look-Ahead VSP Guided Salt Dome Island Exploration Well Drilling in the UAE
First Look-Ahead VSP Guided Salt Dome Island Exploration Well Drilling in the UAE
Abstract
An exploration well offshore UAE, which was the first of it's kind, was planned to be drilled from an island and within salt dome. Well planning was based o...
Salt Glacier and Composite Sediment-Salt Glacier Models for the Emplacement and Early Burial of Allochthonous Salt Sheets
Salt Glacier and Composite Sediment-Salt Glacier Models for the Emplacement and Early Burial of Allochthonous Salt Sheets
Abstract
Allochthonous salt sheets in the northern Gulf of Mexico were emplaced as extrusive “salt glaciers” at the sediment-water interface. Massive dissolution ...

