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Control Sections

Control Sections. Objectives. Explain the purpose of the control sections in Soil Taxonomy. Use Chapter 17, Keys to Soil Taxonomy to determine various control sections for family and series differentiae. Rationale for family category and class differentiae.

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Control Sections

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  1. Control Sections

  2. Objectives • Explain the purpose of the control sections in Soil Taxonomy. • Use Chapter 17, Keys to Soil Taxonomy to determine various control sections for family and series differentiae.

  3. Rationale for family category and class differentiae • Integrates physical and chemical properties important for plant growth and engineering use. • Condenses a collection of soil properties into a few classes. • Invokes a superb mental construct of the functional capacity of a soil.

  4. There are several control sections in Soil Taxonomy • Subgroup, great group, suborder, order • Soil moisture regime • Suborder, great group, order • Soil temperature regime • Family • Particle-size classes and their substitutes • Mineralogy classes • Cation-exchange activity classes • Calcareous andreaction classes • Soil temperature classes • Classes of coatings on sands • Classes of permanent cracks • Series control section

  5. 2.5cm MoistureControlSection Soil Moisture Control Section 7.5cm Soil surfacedepth of wetting2.5 cm in 24 hours In the absence of data (guide), for: sandy soils………….use 30-90 cm coarse-loamy……….use 20-60 cm all other classes……use 10-30 cm Depth of wetting7.5 cm in 48 hours

  6. SOIL MOISTURECONTROL SECTION EXAMPLES: II.Coarse-Loamy III.Sandy I.Fine-LoamyFine-SiltyCoarse-SiltyClayey 10 SMCS 20 30 30 SMCS Depth(cm) SMCS 60 90

  7. MAJOR SOIL MOISTURE REGIMES • Aridic (torric) - too dry to support non-irrigated crops • Udic – soil moisture would not usually be limiting for crop production • Ustic - intermediate between aridic and udic; seasonally dry, but some soil moisture during growth periods • Xeric - soil moisture in winter, but dry during summer growth period

  8. Control Sections for Soil Temperature Classes and Temperature Regimes 50 cm Densic, lithic, or paralithic contact

  9. Major Crop Patterns for Soil Temperature Classes in the US • Citrus Crops……………………Hyperthermic • Cotton…………………………..Thermic • Corn & Soybeans ……………...Mesic • Small Grain……………………..Frigid • Pasture & Few Crops………….Cryic • No Commercial Crops…………Subgelic, Pergelic, and Hypergelic

  10. Organic layer w/ andic properties 36 cm Root-Limiting Layer Classes for Particle-Size, Mineralogy, Cation-Exchange Activity, Reaction, Coatings on Sands, and Permanent Cracks A. Root-limiting layer within 36 cm of the mineral soil surface. MSS MSS= Mineral soil surface

  11. Classes for Particle-Size, Mineralogy, Cation-Exchange Activity, Reaction, Coatings on Sands, and Permanent Cracks Organic layer w/ andic properties B. Andisols MSS 36 cm 100 cm Root-Limiting Layer MSS= Mineral soil surface

  12. Fragipan Classes for Particle-Size, Mineralogy, Cation-Exchange Activity, Reaction, Coatings on Sands, and Permanent Cracks • Alfisols, Ultisols, Aridisols, and Mollisols (except Lamellic subgroups) that have the top of an argillic, kandic, or natric horizon within 100 cm and its lower boundary at a depth of 25 cm or more below the mineral soil surface or that are in Arenic or Grossarenic subgroups. • A strongly contrasting particle-size class within or below the argillic, kandic, or natric horizon • If all parts of the argillic, kandic, or natric horizon are in or below a fragipan MSS 25 cm Argillic Horizon 25 cm Contrasting Material 100 cm Root-Limiting Layer MSS= Mineral soil surface

  13. Fragipan Classes for Particle-Size, Mineralogy, Cation-Exchange Activity, Reaction, Coatings on Sands, and Permanent Cracks • Continued 3. Fragipan at a depth of < 50 cm below top of argillic horizon 4. Upper 50 cm or all of the argillic if less than 50 cm thick MSS MSS ≤ 50cm Argillic Horizon 50 cm 100 cm 100 cm Argillic Fragipan 150 cm C Horizon MSS= Mineral soil surface

  14. Classes for Particle-Size, Mineralogy, Cation-Exchange Activity, Reaction, Coatings on Sands, and Permanent Cracks • Alfisols, Ultisols, Aridisols, and Mollisols that are in a Lamellic subgroup OR have the top of an argillic horizon below 100 cm MSS MSS Ap Horizon Ap Horizon 25 cm 25 cm 100 cm 100 cm Argillic Horizon MSS= Mineral soil surface

  15. Classes for Particle-Size, Mineralogy, Cation-Exchange Activity, Reaction, Coatings on Sands, and Permanent Cracks E. Other soils that have the base of the argillic or natric horizon at a depth of less than 25 cm F. All other mineral soils MSS MSS Ap Horizon Argillic 25 cm 25 cm 36 cm 100 cm 100 cm Root-Limiting Layer Root-Limiting Layer MSS= Mineral soil surface

  16. Control Section for the Calcareous Class

  17. Control Section for theCalcareous Class 1. All Gelisols (except Histels) and all Gelic suborders and Gelic great groups 2. Soils with a root-limiting layer 25 cm or less below the mineral soil surface MSS MSS 2.5 cm 25 cm 25 cm Root-limiting layer (e.g., lithic contact) Root-limiting layer (e.g., lithic contact) MSS= Mineral soil surface

  18. Control Section for the Calcareous Class 3. Soils with a root-limiting layer between 26 and 50 cm 4. All other listed soils MSS MSS 25 cm 25 cm 50 cm 50 cm Root-limiting layer (e.g., lithic contact) MSS= Mineral soil surface

  19. Control Sections for Histosols and Histels • Surface Tier • From surface to either 30 or 60 cm depending on type of organic soil materials, Sphagnum fiber content, or bulk density. • Subsurface Tier • Normally 60 cm thick; • Extends from lower boundary of surface tier and may form lower boundary of control section; • Includes mineral layers that may be present. • Bottom Tier • Normally 40 cm thick; • May not be present if control section ends at shallower depth (at densic, lithic, paralithic, water layer, or permafrost); • Base of bottom tier may extend to depths of 130 to 160 cm depending on same factors of organic materials as surface tier.

  20. Series Control SectionMineral Soils Without Permafrost The series control section for mineral soils without permafrost extends from the soil surface to the shallowest of the following: 1. A lithic or petroferric contact: or 2. 25 cm below a densic or paralithic contact or 150 cm from the soil surface, whichever is shallower, if there is a paralithic contact within 150 cm: or 0 cm 0 cm Lithic or petroferric contact Densic or paralithic contact 125 cm 150 cm 200 cm

  21. 0 cm 150 cm Base of diagnostic horizon 175 cm 200 cm 250 cm Series Control SectionMineral Soils Without Permafrost (cont.) 3. 150 cm, if the bottom of the deepest diagnostic horizon is less than 150 cm from the soil surface; or 4. The bottom of the deepest diagnostic horizon or 200 cm, whichever is shallower if the bottom of the deepest diagnostic horizon is more than 150 cm from the soil surface. 0 cm Base of diagnostic horizon 100 cm 150 cm 200 cm

  22. Series Control SectionMineral Soils With Permafrost The series control section for soils that have permafrost within 150 cm of the soil surface extends from the soil surface to the shallowest of the following: 1. A lithic of petroferric contact; 2. 100 cm if depth to permafrost is less than 75 cm; 0 cm 0 cm 30 cm Permafrost top of permafrost 40 cm 75 cm Lithic or petroferric contact 100 cm

  23. Series Control SectionMineral Soils With Permafrost (cont.) 3. 25 cm below the top of the permafrost if depth to permafrost is 75 cm to 125 cm; 4. 25 cm below a densic or paralithic contact that is within 125 cm; 5. 150 cm if permafrost, densic, and paralithic contact are all below 125 cm 0 cm 0 cm 0 cm 75 cm top of permafrost permafrost 125 cm 100 cm 150 cm 125 cm 125cm Permafrost, densic or paralithic contact Densic or paralithic contact 150cm 200 cm 150 cm

  24. Summary • The family category provides information for engineering and agronomic uses. • Control sections are used for the kinds of basic properties such as: soil moisture, soil temperature, various family class differentiae, and the soil series. • Always indicate the kind of control section

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