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The Geography of The Geography of SoilsSoilsChapter 18Chapter 18
GEOG 1011GEOG 1011Kristina Klos WynneKristina Klos WynneSeptember 28September 28thth, 2005, 2005
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What is soil made of?What is soil made of?
clayclay sand sand silt silt base cationsbase cations biota biota organic matter organic matter water water pore spaces (air)pore spaces (air)
http://soils.usda.gov/sqi/concepts
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Soil Forming FactorsSoil Forming Factors
ClClimateimate OOrganic matterrganic matter RReliefelief PParent materialarent material TTimeime
Cl.O.R.P.TCl.O.R.P.T
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Soil PropertiesSoil Properties
Soil Color Soil Color Soil Texture Soil Texture Soil Structure Soil Structure Soil Chemistry Soil Chemistry
Soil AciditySoil Acidity Alkalinity Alkalinity Soil nutrientsSoil nutrients
www.Jordforsk.no/english/soilquality.htm
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Munsell Soil Color ChartMunsell Soil Color Chart
Figure 18.3
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Soil Texture TriangleSoil Texture Triangle
Figure 18.4
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Types of Soil StructureTypes of Soil Structure
Figure 18.5
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Soil Colloids and CECSoil Colloids and CEC
Figure 18.6
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Soil Sampling and Mapping Soil Sampling and Mapping UnitsUnits
Figure 18.1
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O HorizonO Horizon
•Humus-mixture of decomposed and synthesized organic materials, usually dark in color.
•Microorganisms work on this layer and it is generally 20%-30% organic material.
•Important because it can hold water and supply nutrients
www.soils.usda.gov
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A HorizonA Horizon
•Humus and clay particles supply nutrients for plant growth
• Usually richer in organic matter (from above) than horizons below
•Darker in color than horizons below
•Impacted by plowing/human activity
www.soils.usda.gov
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E HorizonE Horizon
•Zone of elluviation or leaching
•Clays and oxides are leached out of the soil by water and then are collected in the E horizon
•Very light in color
•Because small particles such as clay are removed, this horizon is sandier
www.soils.usda.gov
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B Horizon(s)B Horizon(s)
•Distinguished by the deposition of the clays that leached out of the A and E horizons
•Reddish or yellowish (minerals and oxides) in color
•In B horizon, some material can come from above, some may come from regolith belowwww.soils.usda.gov
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C HorizonC Horizon
•Regolith- weathered bed rock or parent material
•Not really any biological interactions here
•Lacks clay, more like rock
www.soils.usda.gov
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Soils vary geographicallySoils vary geographically
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Soils vary geographicallySoils vary geographically
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l
Laterization
•Leaching process that occurs in humid and warm climates
•Soil Orders: Oxisols: Amazon region Ultisols: SE USA
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•deeply weathered.•Precipitation >> PET•Soluble minerals weathered from A horizon•A horizon can be more than 10-m deep•A horizon characterized by iron and aluminum oxides, often in high enough concentration to be commercial ores•Results in reddish to yellow color•Little CEC•Low in fertility•Wet tropical areas•Amazon rain forest classic example
•Ultisols are similar, characteristic of sub- tropical areas such as SE USA
Oxisols
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Oxisols being used for building materials in India
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Calcification
•Accumulation of calcium carbonate (B horizon) in continental climates
•Large amounts of organic matter in O and A horizons, dark color
•Soil orders:•Mollisol: Great Plains
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MollisolMollisol
Figure 18.2
•Dark O horizon above the 1•Dark A horizon between 1 and 2 -these indicate lots of organic matter•B horizon below the 2 -the white particles are carbonate nodules•Calcification regime -ppt about equal to ET•Great plains area•Very fertile soils if add water
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Podzolization
•Soil acidification due to forest soils cool climates
•Soil Orders:•Spodosols: NE, Boreal forests worldwide
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Spodosols
•Cold, forested, moist regimes, acidic• Precip > PET•Generally an E or spodic horizon of leached/bleached gray/white• A horizon heavily leached, lack humus and clay •Iron and aluminum oxides in B horizon•Low CEC•Infertile soils
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Salinization•Accumulation of salts in arid areas•PET >> precipitation•Soil orders: Aridisols
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Aridisols
•PET >> Precipitation•Desert soils•Pale, light color near surface•Long periods of soil moisture deficit•Little if any organic matter•High CEC•Very fertile if add water•Salinization is common•Here the white color is from salts that have precipitated in the soil•Largest soil order
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Histosols: poorly-drained areas, high OM, wetlands and peat areas
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Soil ManagementSoil Management
Soil is often affected by human Soil is often affected by human impacts, particularly agriculture.impacts, particularly agriculture.
2 examples:2 examples: The Dust BowlThe Dust Bowl Kesterson NationalKesterson National
Wildlife RefugeWildlife Refuge
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The Dust BowlThe Dust Bowl•Southern Plains, 1930s
•Heavy planting and plowing plus prolonged drought reduced the amount of topsoil and ground-cover
•Could it happen again?
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Kesterson Kesterson ReservoirReservoir The The Kesterson ReservoirKesterson Reservoir in the in the
San Joaquin Valley of California San Joaquin Valley of California is the recipient of water is the recipient of water drained from agricultural fields. drained from agricultural fields. Studies of the freshwater Studies of the freshwater wetlands at Kesterson have wetlands at Kesterson have shown that the water entering shown that the water entering Kesterson has brought with it Kesterson has brought with it boron, selenium and other boron, selenium and other trace elements. These material trace elements. These material have accumulated to toxic have accumulated to toxic levels in plant and animal levels in plant and animal communities. communities.
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GeophagyGeophagy
People around the world eat clay, dirt or other pieces of the lithosphere for a variety of reasons. Commonly, it is a traditional cultural activity which takes place during pregnancy, religious ceremonies, or as a remedy for disease. Most people who eat dirt live in Central Africa and the Southern United States. While it is a cultural practice, it also fills a physiological need for nutrients.
And of course, kids all over the world still eat dirt.