Geomaterials

Geomaterials

ISSN Print: 2161-7538
ISSN Online: 2161-7546
www.scirp.net/journal/gm
E-mail: [email protected]
Citations    
"Consolidation Properties of Compacted Lateritic Soil Treated with Rice Husk Ash"
written by Adrian. O. Eberemu,
published by Geomaterials, Vol.1 No.3, 2011
has been cited by the following article(s):
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[1] Mechanical Properties Optimization and Simulation of Soil–Saw Dust Ash Blend Using Extreme Vertex Design (EVD) Method
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[2] Correlation between one-dimensional consolidation coefficients and different basalt fiber lengths and RHA-cement contents in fiber-reinforced stabilized …
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[3] Investigation of mechanical and micro-structural properties of weak laterite soil treated by bischofite
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[4] Geophysical Investigation of Part of Ahmadu Bello University Farm, Nigeria
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[5] Application of lime-rice husk ash mixture (LRHA) for the stabilization of fine-grained soil: a state-of-the-art review
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[6] Numerical Research of Lightweight Foam Concrete Replacement Method of Deep Soft Foundation Treatment of Low-Filled Embankment
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[7] CONSOLIDATION CHARACTERISTICS OF LATERITIC SOIL TREATED WITH RICE HUSK ASH
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[8] Compaction and consolidation characteristics of chemically treated expansive soil of Jamshoro
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[9] EFFECT OF LIQUIDITY INDEX ON THE STABILISED LATERITIC SOIL BY ACIDIC BASED STABILIZER.
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[10] Strength and Compressibility of Kaolinite Clay Stabilized with Lime Sludge and Fly Ash
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[11] Effect of Sawdust on the Geotechnical Properties of a Lateritic Soil
2021
[12] Reliability Evaluation of Compaction Water Content of Plantain Peel Ash Treated Lateritic Soil
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[13] Experimental investigation on the primary and secondary consolidation behaviors of organic soil under different water contents
Arabian Journal of Geosciences, 2021
[14] Properties of Tropical Black Clay Treated with Selected Admixtures
… Severe Weathers and …, 2021
[15] Suitability of brick kiln waste as a stabilizer for clayey soils
2020
[16] Utilization of palm kernel shell ash as stabilization materials for clay to settlement consolidation
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[17] Comparative effect of microbial induced calcite precipitate, cement and rice husk ash on the geotechnical properties of soils
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[18] Sustainable Soils Re-Engineering
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[19] Recycling and reuse of solid wastes; a hub for ecofriendly, ecoefficient and sustainable soil, concrete, wastewater and pavement reengineering
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[20] Effect of moisture on volumetric behavior of compacted laterites
2018
[21] Influence of rice husk ash source variability on road subgrade properties
Nigerian Journal of Technology, 2018
[22] Engineering Behavior of Swelling Soil Treated by Tyre Ash
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[23] Evaluation of the Compressibility and Compressive Strength of a Compacted Cement Treated Laterite Soil for Road Application
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[24] Structural performance of earth blocks stabilized with rice husk ash and cement
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[25] Effect of Rice Husk Ash on the Index Properties of Tropical Black Clay
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[26] Compaction Characteristics of Heavy Metal Contaminated Soil Treated with Cement Admixed with Millet Husk Ash
Seminar Series, 2018
[27] SUITABILITY OF RICE HUSK ASH TREATED BLACK COTTON SOIL FOR WASTE CONTAINMENT APPLICATION
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[28] Suitability of brick kiln waste as a stabilizer to clayey soils
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[29] Utilisation of rice husk ash for improvement of deficient soils in Nigeria: a review
Nigerian Journal of Technology, 2017
[30] Consolidation Properties of Compacted Lateritic Soil Treated with Glass Cullet
International Digital Organization for Scientific Research ISSN: 2550-794X IDOSR JOURNAL OF SCIENTIFIC RESEARCH, 2017
[31] Environmental Performance of Lime–Rice Husk Ash Stabilized Lateritic Soil Contaminated with Lead or Naphthalene
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[32] IMPROVEMENT THE COMPRESSIBILITY IN RESIDUAL SOILS BY USING STYRENE BUTADIENE RUBBER
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[33] Sustainable improvement of clays using low-carbon nontraditional additive
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[34] Stabilization of Clay Soil Using Tyre Ash
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[35] Utilization of Rice Husk Ash for Improvement of Deficient Soils in Nigeria: A Review
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[36] Swelling pressure and consolidation of soft clay stabilized with bagasse ash and lime
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[37] Geotechnical assessment strategy for bridge maintenance–case study.
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[38] Bearing Capacity of Roads, Railways and Airfields: Proceedings of the 10th International Conference on the Bearing Capacity of Roads, Railways and …
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[39] EFFECT OF RICE HUSK ASH ON SHEAR AND CONSOLIDATION OF LATERITIC SOIL
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[40] Strength characteristics of genetically different rice and coconut husk ash compacted shales
International Journal of Geo-Engineering, 2015
[41] Improvement of Strength of Clayey Soil by Adding Rice Husk Ash and Cement
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[42] Analysis of strength development in non-traditional liquid additive-stabilized laterite soil from macro-and micro-structural considerations
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[43] Geotechnical and Micro-Structural Behaviour of Chemically Stabilized Tropical Residual Soil
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[44] Consolidation characteristics of highly plastic clay stabilised with rice husk ash
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[45] 1-DIMENSIONAL CONSOLIDATION CHARACTERISTICS OF CLAY STABILIZED WITH MAJOR INDUSTRIAL WASTES OF HARYANA
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[46] The Use of Compacted Tropical Clay Treated With Rice Husk Ash as a Suitable Hydraulic Barrier Material in Waste Containment Applications
Waste and Biomass Valorization, 2013
[47] Puri N (2013a) 1-dimensional consolidation characteristics of clay stabilized with major industrial wastes of Haryana
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