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Research ArticleResearch Section

Soil Vulnerability Index assessment as a tool to explain annual constituent loads in a nested watershed

S. Lohani, C. Baffaut, A.L. Thompson and E.J. Sadler
Journal of Soil and Water Conservation January 2020, 75 (1) 42-52; DOI: https://doi.org/10.2489/jswc.75.1.42
S. Lohani
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C. Baffaut
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A.L. Thompson
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E.J. Sadler
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    Figure 1

    Location map for the Salt River basin.

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    Figure 2

    Generation of Soil Vulnerability Index (SVI) layers.

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    Figure 3

    Location map for rainfall stations in the Salt River basin.

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    Figure 4

    Spatial distribution of Soil Vulnerability Index (SVI) main input parameters: (a) hydrologic soil group, (b) soil erodibility K-factor, (c) slope category for SVI runoff potential, (d) slope category for SVI leaching potential, and (e) land cover in 2010.

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    Figure 5

    (a) Soil Vulnerability Index (SVI) runoff potential map and (b) runoff potential in 2010 croplands only in the Mark Twain Lake watershed.

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    Figure 6

    (a) Soil Vulnerability Index (SVI) leaching potential map and (b) leaching potential in 2010 croplands only in the Mark Twain Lake watershed.

  • Figure 7
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    Figure 7

    Annual constituent loads per unit area in the Mark Twain Lake watershed.

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Journal of Soil and Water Conservation: 75 (1)
Journal of Soil and Water Conservation
Vol. 75, Issue 1
January/February 2020
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Soil Vulnerability Index assessment as a tool to explain annual constituent loads in a nested watershed
S. Lohani, C. Baffaut, A.L. Thompson, E.J. Sadler
Journal of Soil and Water Conservation Jan 2020, 75 (1) 42-52; DOI: 10.2489/jswc.75.1.42

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Soil Vulnerability Index assessment as a tool to explain annual constituent loads in a nested watershed
S. Lohani, C. Baffaut, A.L. Thompson, E.J. Sadler
Journal of Soil and Water Conservation Jan 2020, 75 (1) 42-52; DOI: 10.2489/jswc.75.1.42
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  • Mapping the Soil Vulnerability Index across broad spatial extents to guide conservation efforts
  • Assessing cultivated cropland inherent vulnerability to sediment and nutrient losses with the Soil Vulnerability Index
  • Purpose, development, and synthesis of the Soil Vulnerability Index for inherent vulnerability classification of cropland soils
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Research Section

  • Phytoremediation and high rainfall combine to improve soil and plant health in a North America Northern Great Plains saline sodic soil
  • Combining a saltation impact sensor and a wind tunnel to explore wind erosion processes–A case study in the Zhundong mining area, Xinjiang, China
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Special Research Section: Soil Vulnerability Index

  • Evaluation of the Soil Vulnerability Index for artificially drained cropland across eight Conservation Effects Assessment Project watersheds
  • Purpose, development, and synthesis of the Soil Vulnerability Index for inherent vulnerability classification of cropland soils
  • Performance of the Soil Vulnerability Index with respect to slope, digital elevation model resolution, and hydrologic soil group
Show more Special Research Section: Soil Vulnerability Index

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Keywords

  • nutrient load
  • sediment load
  • Soil Vulnerability Index
  • SVI

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