International Journal of Geosciences

Volume 4, Issue 10 (December 2013)

ISSN Print: 2156-8359   ISSN Online: 2156-8367

Google-based Impact Factor: 0.56  Citations  h5-index & Ranking

Cement Kiln Dust Chemical Stabilization of Expansive Soil Exposed at El-Kawther Quarter, Sohag Region, Egypt

HTML  Download Download as PDF (Size: 3394KB)  PP. 1416-1424  
DOI: 10.4236/ijg.2013.410139    7,640 Downloads   11,665 Views  Citations

ABSTRACT

This work dealt with a chemical stabilization of an expansive high plastic soil of Pliocene deposits exposed at El-Kawther quarter using cement kiln dust (CKD) and cement kiln dust with lime (L) to reduce their swelling and improve their geotechnical properties. Several specimens of the studied expansive soil were collected from El-Kawther quarter. Chemical analysis of the used cement kiln dust and the lime was conducted. Microstructural changes were examined using scanning electron microscope (SEM) before and after chemical treatment of the studied soil. Geotechnical properties including plasticity, compaction parameters, unconfined compressive strength (qu), ultrasonic velocities and free swelling of the studied soil were measured before and after the treatment. An optimum content of the cement kiln dust was 16% (CKD). The optimum content of the cement kiln dust with the lime was 14% (CKD) with 3% (L) according to pH-test. The results showed that the addition of cement kiln dust and cement kiln dust with lime led to a decrease in maximum dry density and an increase in optimum water content. Unconfined compressive strength values were increased using cement kiln dust and cement kiln dust with lime at 7 days curing time. Ultrasonic longitudinal (Vp) and shear (Vs) velocities values were also increased by addition of the cement kiln dust and the cement kiln dust with lime at 7 days curing time. Increment of the curing time from 7 to 28 days led to an increase in both unconfined compressive strength and ultrasonic velocities values. Free swelling percent of the studied soil was reduced from 80.0% to 0.0% after the treatment.

Share and Cite:

H. Ismaiel, "Cement Kiln Dust Chemical Stabilization of Expansive Soil Exposed at El-Kawther Quarter, Sohag Region, Egypt," International Journal of Geosciences, Vol. 4 No. 10, 2013, pp. 1416-1424. doi: 10.4236/ijg.2013.410139.

Cited by

[1] Sustainable subgrade improvement using limestone dust and sugarcane bagasse ash
Sustainable Technology and …, 2023
[2] Effect of cement-by-pass dust stabilized-expansive soil subgrade on pavement rutting
Hashmi - Innovative Infrastructure …, 2022
[3] Substantiation of the Method for Calculating Soil Deformation Modulus
Technological Advancements in …, 2022
[4] Modification of Expansive Soil with Costus Lateriflorus Bagasse Ash for Road Pavement Materials
2022
[5] IMPROVEMENTS OF THE GEOTECHNICAL PROPERTIES OF SUBGRADE SOIL USING LIMESTONE DUST
JOURNAL OF INVENTIVE ENGINEERING AND …, 2022
[6] Сравнительный анализ методов вычисления штамповых модулей деформации грунтов
Вестник Сибирской …, 2022
[7] Sustainable Technology and Entrepreneurship
2022
[8] STABILISATION OF TROPICAL BLACK CLAY USING CALCIUM CARBIDE RESIDUE AND COCONUT SHELL ASH AS ADMIXTURE
2021
[9] Flood hazard assessment and characteristics of cement kiln dust in Ain Sukhna industrial area, north‐western part of the Gulf of Suez, Egypt
2021
[10] ВЕСТНИК СИБИРСКОГО ГОСУДАРСТВЕННОГО АВТОМОБИЛЬНО-ДОРОЖНОГО УНИВЕРСИТЕТА
ВЕСТНИК …, 2021
[11] Влияние содержания щебня на модуль деформации грунтощебеночного слоя
Вестник Сибирской …, 2021
[12] Влияние влажности грунта на деформационные свойства грунтощебеночных образцов при сжатии
Вестник Сибирской …, 2021
[13] Effectiveness of fresh cement kiln dust as a soil stabilizer and stabilization mechanism of high swelling clays
2021
[14] Investigating the Influence of the Combination of Cement Kiln Dust and Fly Ash on Compaction and Strength Characteristics of High-Plasticity Clays
2021
[15] Earthen Plasters Stabilized through Sustainable Additives: An Experimental Campaign
2021
[16] Experimental Study of the Deformation Properties of Soil-Crushed-Stone Samples Under Compression
2021
[17] Effect of cement dust on consolidation properties of expansive soil
2021
[18] Dependence of the Deformation Modulus of Soil-Crushed-Stone Layer from the Content of Crushed Stone
2020
[19] The effect of hydrated lime on the petrography and strength characteristics of Illite clay
2020
[20] Determining of cohesion and internal friction angle of low-plasticity clays (CL) soils using SPT number and investigating the effect of lime on compressive strength of …
2020
[21] Lime addition chemical stabilization of expansive soil at Al-Kawamil city, Sohag region, Egypt
2020
[22] Assessing enzyme-based soil stabilisation for unpaved road construction
2020
[23] Comparative Study on Stabilization of Expansive Soil using Cement Kiln Dust and Ceramic Dust
2020
[24] Multiscale laboratory investigation of the mechanical and microstructural properties of dredged sediments stabilized with cement and fly ash
2020
[25] Improvement of Pavement Soil Sub-grade Using Industrial Waste: Cement Kiln Dust & Brick Kiln Dust
2019
[26] Strength Improvement of Clayey Soil with Waste Plastic Strips and Cement Kiln Dust
2019
[27] A Review on Stabilization of Expansive Soil Using Different Methods
2019
[28] A critical reappraisal of residual soils as compacted soil liners
2019
[29] Effect of Cement Kiln Dust and RBI Grade 81 on Engineering Properties of Plastic Clay
2019
[30] Utilization of Recycled Tiles and Tyres in Stabilization of Soils and Production of Construction Materials–A State-of-the-Art Review
KSCE Journal of Civil Engineering, 2018
[31] Treatment of Urmia Peat by Cement Kiln Dust
Iranian Journal of Science and Technology, Transactions of Civil Engineering, 2018
[32] Strength and Micro Structural Behavior of Lime Stabilized Dredged Soil
Latest Thoughts on Ground Improvement Techniques, 2018
[33] Reuse of dredged sediments as pavement materials by cement kiln dust and lime treatment
2018
[34] Latest Thoughts on Ground Improvement Techniques
2018
[35] Chemical Stabilization of Expansive Esna Shale, Qena Region, Egypt
Proc. of The Eighth Intl. Conf. On Advances in Applied Science and Environmental Technology, 2018
[36] Laboratory study on stabilization of clayey soil with cement kiln dust and fiber
Geotechnical and Geological Engineering, 2017
[37] Humic Acid Adsorption by Adsorbent Granule Derived From Sludge of Water Supply Production
2017
[38] Swelling soils treatment using lime and sea water for roads construction
Alexandria Engineering Journal, 2017
[39] Chemical Stabilization of Expansive Dakhla Shale, Qena Region, Egypt
International Journal of Scientific & Engineering Research, 2017
[40] Shear strength stabilization using burned sludge ash
2017
[41] Expansive soil stabilization using coconut shell powder and Lime
2017
[42] CHARACTERIZATION OF LIME-TREATED SOILS FOR ASSESSING SHORT-TERM STRENGTH BEHAVIOUR
2017
[43] Stabilization of Expansive Soil with Cement Kiln Dust and RBI Grade 81 at Subgrade Level
Geotechnical and Geological Engineering, 2016
[44] Effect of Curing Time on the Velocity of Ultrasonic Wave of Granular Soil Stabilized with Cement
International Journal of All Research Education and Scientific Methods, 2015
[45] Potentials of Non-Cementitious Additives for Stabilization of Oye Local Government Area Soils, Ekiti State, Nigeria
International Journal of Scientific …, 2015
[46] Clay minerals of Pliocene deposits and their potential use for the purification of polluted wastewater in the Sohag area, Egypt
Geoderma Regional, 2015
[47] GEOTECHNICAL PROPERTIES OF CALABAR SOUTH SUBGRADE SOIL STABILIZED WITH SUGARCANE BAGASSE ASH
Education, 2013
[48] Evaluating the Potential of Stabilizing Jordanian Brown and Green Clay with Cement Kiln Dust and Silica Fume
Jaber, R Ibrahim
[49] Studying the Strength and Microstructure of Expansive Subgrade Soil Stabilized with Cement Kiln Dust and Geogrid Material

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.