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Relationship of percolation stability of soil aggregates to land use, selected properties, structural indices and simulated rainfall erosion

  • University of Nigeria

Research output: Contribution to journalArticlepeer-review

76 Scopus citations

Abstract

Simple tests of structural stability are needed for evaluating the ease with which soils slake and erode when in contact with water. In a laboratory study, we related the percolation stability (PS) of 22 Nigerian soils to land use, soil properties, structural stability indices and simulated rainfall erosion. All measurements were carried out with the 1-2 mm diameter air-dry aggregates. Land use influenced PS more than the type of soil. Forest soils, bush fallows, mulched, minimally tilled plots and pasture lands had rapid PS (>250 ml/10 min) values, whereas mulched conventionally tilled plots, bare fallows and continuously cultivated plots from where residues were removed by burning had relatively slow to moderate PS values (34241 ml/10 min). The single most important soil property that correlated positively with PS is organic matter (OM) (r = 0.55*) followed by total Fe + Al (r = 0.52*). The significant inverse relationship (r = -0.49*) between log (PS) and log (pH/OM) indicates a decrease in PS of these acidic, low-OM soils with increasing pH levels. The percent water-stable aggregate (WSA) >0.20 mm diameter, aggregated clay index (AC) and clay dispersion ratio (CDR) correlated weakly with PS. Conversely, the sealing index (SI) (i.e. the ratio of saturated hydraulic conductivity of an uncrusted to that of a crusted soil) had a strong, inverse relationship with PS (r = -0.97***). These relationships indicate that PS measures the slakability (and not dispersibility) of soils. The relationship between PS and erosion (E) was an exponential decay form, E = 102 e(-0.0043PS) (r2 = 0.98) and showed that high interrill erosion rates would be expected on soils with PS < 250 ml/10 min. The PS which is simple to measure, is, therefore, a good indicator of structural stability for assessing the potential of these soils to erode.

Original languageEnglish
Pages (from-to)197-206
Number of pages10
JournalSoil and Tillage Research
Volume50
Issue number3-4
DOIs
StatePublished - May 1999

Keywords

  • Aggregate stability
  • Soil erosion
  • Soil properties
  • Soil structure
  • Structural indices
  • Tropics

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