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Engineering
High Water Content
100%
Fill Material
100%
Ordinary Portland Cement
100%
Leachability
66%
Heavy Metal
66%
Shear Strength
66%
Compression Strength
66%
Compressive Strength
66%
Controlling Mechanism
33%
Test Result
33%
Strength Gain
33%
Ray Diffraction
33%
Mercury Intrusion Porosimetry
33%
Strength Development
33%
Acceptance Criterion
33%
Environmental Footprint
33%
Deformation Resistance
33%
Environmental Property
33%
Engineering
33%
Keyphrases
Filling Material
100%
High Water Content
100%
Incinerated Sewage Sludge Ash
100%
Contaminated Marine Sediments
100%
Novel Binder
100%
Binder
55%
Ordinary Portland Cement
33%
Heavy Metals
22%
Leachability
22%
Shear Strength
22%
Unconfined Compressive Strength
22%
Scanning Electron Microscopy
11%
Chemical Reaction
11%
Contaminated Sediment
11%
Environmental Impact Assessment (EIA)
11%
X Ray Diffraction
11%
Leaching Characteristics
11%
Strength Gain
11%
Acceptance Criteria
11%
Curing Time
11%
Marine Sediments
11%
Strength Development
11%
Mercury Intrusion Porosimetry
11%
Thermogravimetric Analysis
11%
Geotechnical Properties
11%
Water Permeability
11%
Pore Volume
11%
Stabilized Methods
11%
Resistance Strength
11%
Environmental Footprint
11%
Environmental Properties
11%
Metal Immobilization
11%
Deformation Resistance
11%
Cementitious Compounds
11%
Sediment Properties
11%
Material Science
Portland Cement
100%
Compressive Strength
66%
Shear Strength
66%
Heavy Metal
66%
Porosimetry
33%
Thermogravimetric Analysis
33%
Solidification
33%
Scanning Electron Microscopy
33%
Pore Volume
33%
X-Ray Diffraction
33%
Chemical Engineering
Water Content
100%
Sewage Sludge
100%
Contaminated Marine Sediments
100%
Heavy Metal
22%
Cementitious
11%
Earth and Planetary Sciences
Marine Sediment
100%
Sewage Sludge
100%
Heavy Metal
22%
Shear Strength
22%
Compressive Strength
22%
Environmental Impact Assessment
11%
Sediment Property
11%
X Ray Diffraction
11%
Scanning Electron Microscopy
11%
Thermogravimetric Analysis
11%