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1
CHEMICAL STABILIZATION
2
TYPES OF STABILIZATIONS
 Mechanical Stabilization
 Geosynthetic Stabilization
 Electrical & Heat Stabilization
 Chemical Stabilization
i) Lime Stabilization
ii) Cement Stabilization
iii) Bitumen Stabilization
iv) Fly ash Stabilization
v) Other chemicals
3
Chemical Stabilization
 Transformation of the soil index properties by
adding chemicals thereby improving
a) volume stability
b) strength & stress-strain properties
c) permeability and durability
 Mechanisms of alteration
4
Selection of method of stabilization
Lime Stabilization
 Involves the use of burned lime products,
quicklime, hydrated lime (oxides & hydroxides)
or lime by-products to the soil for stabilizing it.
 It has been applied to all types of roads,
temporary construction roads, parking lots,
railroad beds, irrigation canals, earth dams etc.
5
Mechanism
• Lime is a strong alkaline base.
• Reacts chemically with clays causing a base exchange.
• Calcium ions displace sodium and hydrogen cations and
combine with available silica & alumina in the soil to form
complex silicates & aluminates which are cementing
materials.
• Rapid change in plasticity due to a strong reaction between
OH- from the lime & H+ from within the clay mineral
structure to form water.
• Results in an immediate reduction in the plastic limit of soil.
6
• Other changes include reduction in volume change
characteristics of the soil, flocculation of clay
particles, increase in OMC, thereby permitting
compaction under wetted conditions.
7
Determination of amount of lime to be used must be
based on laboratory testing such as paticle size
gradation, plasticity index, strength tests etc.
8
Objectives
 Improve wokability
 Increase strength
 Increase the strength of subgrade soils over
long term
 Increase durability
 To increase the bearing capacity & to reduce
the settlements
9
10
Construction Procedure
Standard stabilization includes:
 Scarifying
 Lime spreading
 Mixing and pulverizing
 Compaction
 Shaping of stabilized base
 Curing
 Testing
11
Monitoring
Field Tests are conducted
 Penetration resistance
 Unit weight
 Permeability
 Subgrade Reaction
12
 Laboratory Tests
Shear strength
Permeability
Unit weight
Compressive strength
13
Applications:
 Plastic clayey soils
 Clay-gravels
 Gravels with high fine content
 Fine grained soils ranging from clays to silty
clays.
Environmental concerns
 Lime dust, easily blown by wind, when highly
inhaled by people is hazardous and can pollute
streams nearby.
 Prolonged contact of lime may cause bad burns.
 Quicklime can produce severe burns when in
contact with moist skin.
 Lime burns in eyes may result in loss of sight.
14
Safety Precautions
 Clothing
 Protective cream
 Eye protection
 Mouth/Nose protection
 After work
 First aid
15
Lime Columns
 A mixing tool is penetrated to the desired depth
after which during retreival a lime mixture is
injected into the soft soilusing compressed air,
then mixed with soil.
16
17
Uses
 As foundation for light buildings
 Alternative to piles & floating foundation
 Function as drains in the soils
 Stabilize trenches and deep excavations
 Improve stability of slopes
18
19

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STABILIZATION OF SOIL_Lime and Chemical methods

  • 2. 2 TYPES OF STABILIZATIONS  Mechanical Stabilization  Geosynthetic Stabilization  Electrical & Heat Stabilization  Chemical Stabilization i) Lime Stabilization ii) Cement Stabilization iii) Bitumen Stabilization iv) Fly ash Stabilization v) Other chemicals
  • 3. 3 Chemical Stabilization  Transformation of the soil index properties by adding chemicals thereby improving a) volume stability b) strength & stress-strain properties c) permeability and durability  Mechanisms of alteration
  • 4. 4 Selection of method of stabilization
  • 5. Lime Stabilization  Involves the use of burned lime products, quicklime, hydrated lime (oxides & hydroxides) or lime by-products to the soil for stabilizing it.  It has been applied to all types of roads, temporary construction roads, parking lots, railroad beds, irrigation canals, earth dams etc. 5
  • 6. Mechanism • Lime is a strong alkaline base. • Reacts chemically with clays causing a base exchange. • Calcium ions displace sodium and hydrogen cations and combine with available silica & alumina in the soil to form complex silicates & aluminates which are cementing materials. • Rapid change in plasticity due to a strong reaction between OH- from the lime & H+ from within the clay mineral structure to form water. • Results in an immediate reduction in the plastic limit of soil. 6
  • 7. • Other changes include reduction in volume change characteristics of the soil, flocculation of clay particles, increase in OMC, thereby permitting compaction under wetted conditions. 7
  • 8. Determination of amount of lime to be used must be based on laboratory testing such as paticle size gradation, plasticity index, strength tests etc. 8
  • 9. Objectives  Improve wokability  Increase strength  Increase the strength of subgrade soils over long term  Increase durability  To increase the bearing capacity & to reduce the settlements 9
  • 10. 10 Construction Procedure Standard stabilization includes:  Scarifying  Lime spreading  Mixing and pulverizing  Compaction  Shaping of stabilized base  Curing  Testing
  • 11. 11 Monitoring Field Tests are conducted  Penetration resistance  Unit weight  Permeability  Subgrade Reaction
  • 12. 12  Laboratory Tests Shear strength Permeability Unit weight Compressive strength
  • 13. 13 Applications:  Plastic clayey soils  Clay-gravels  Gravels with high fine content  Fine grained soils ranging from clays to silty clays.
  • 14. Environmental concerns  Lime dust, easily blown by wind, when highly inhaled by people is hazardous and can pollute streams nearby.  Prolonged contact of lime may cause bad burns.  Quicklime can produce severe burns when in contact with moist skin.  Lime burns in eyes may result in loss of sight. 14
  • 15. Safety Precautions  Clothing  Protective cream  Eye protection  Mouth/Nose protection  After work  First aid 15
  • 16. Lime Columns  A mixing tool is penetrated to the desired depth after which during retreival a lime mixture is injected into the soft soilusing compressed air, then mixed with soil. 16
  • 17. 17
  • 18. Uses  As foundation for light buildings  Alternative to piles & floating foundation  Function as drains in the soils  Stabilize trenches and deep excavations  Improve stability of slopes 18
  • 19. 19