Use of fine ground dune sand as a supplementary cementing material

    Abdulrahman Alhozaimy Info
    Omer Abdalla Alawad Info
    Mohd Saleh Jaafar Info
    Abdulaziz Al-Negheimish Info
    Jamaloddin Noorzaei Info
DOI: https://doi.org/10.3846/13923730.2013.768541

Abstract

The process of Portland cement production is associated with high consumption of energy and resources. Therefore, there is a need to replace the Portland cement with environmental friendly materials. This study was conducted to determine the feasibility of using ground dune sand as cement replacement materials under different curing conditions. Portland cement was replaced by ground dune sand at five levels of replacement (0–40% by weight). The compressive strength of mortar under standard and autoclave curing conditions and the influence of different autoclave temperatures and durations were investigated. The microstructure of selected mixtures was analyzed by XRD and SEM. Results showed that the compressive strength under the standard curing decreased as the level of replacement increased. However, under autoclave curing compressive strength increased as the content of ground dune sand increased. XRD and SEM revealed the absence of calcium hydroxide and the formation of secondary calcium silicate hydrate. The improvement of compressive strength and the absence of calcium hydroxide under autoclave curing indicated that the pozzolanic reaction between silica of dune sand and calcium hydroxide occurred.

Keywords:

dune sand, autoclave curing, pozzolanic materials, compressive strength, XRD, SEM

How to Cite

Alhozaimy, A., Alawad, O. A., Jaafar, M. S., Al-Negheimish, A., & Noorzaei, J. (2014). Use of fine ground dune sand as a supplementary cementing material. Journal of Civil Engineering and Management, 20(1), 32-37. https://doi.org/10.3846/13923730.2013.768541

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March 10, 2014
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2014-03-10

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How to Cite

Alhozaimy, A., Alawad, O. A., Jaafar, M. S., Al-Negheimish, A., & Noorzaei, J. (2014). Use of fine ground dune sand as a supplementary cementing material. Journal of Civil Engineering and Management, 20(1), 32-37. https://doi.org/10.3846/13923730.2013.768541

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