Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

An assessment of the pozzolanic potential and mechanical properties of Nigerian calcined clays for sustainable ternary cement blends

View through CrossRef
This study investigates the potential of calcined clays from Nigerian deposits as supplementary cementitious materials. Clay materials were obtained from three sites namely: Ikpeshi, Okpilla and Uzebba. The raw clay samples were then calcined at 700°C and 800°C. Chemical and mineralogical compositions were determined for the raw and calcined clay samples using XRF and XRD respectively. The chemical composition by XRF confirmed these clays as potential pozzolans with SiO2, Al2O3, and Fe2O3 collectively exceeding 70%. XRD analysis identified kaolinite and quartz as major mineral phases in the raw clays, which transformed into metakaolin upon calcination. Thermo Gravimetric Analysis (TGA) indicated varying lime consumption levels among the clays, with Ikpeshi clay displaying the highest pozzolanic reactivity and Uzebba clay the least. Compressive strength investigation on mortar cubes prepared with 50% substitution of Portland cement with the calcined clay and limestone, showed that Ikpeshi clay at 800°C had the best strength performance, with strength activity index of 0.92 (at age 28 days), demonstrating superior pozzolanic potential. Strength development was more significant between 7 and 28 days, indicating the pozzolanic reaction's contribution to long-term strength. However, initial strength at 3 days was lower than the reference Portland cement due to a delayed pozzolanic reaction. XRD analysis of blended pastes revealed typical phases of hydration like portlandite, calcium silicate hydrate phase, strätlingite, and ettringite, with the calcined clay blends showing reduced portlandite content, indicating absorption by the pozzolan's alumina phase.
Title: An assessment of the pozzolanic potential and mechanical properties of Nigerian calcined clays for sustainable ternary cement blends
Description:
This study investigates the potential of calcined clays from Nigerian deposits as supplementary cementitious materials.
Clay materials were obtained from three sites namely: Ikpeshi, Okpilla and Uzebba.
The raw clay samples were then calcined at 700°C and 800°C.
Chemical and mineralogical compositions were determined for the raw and calcined clay samples using XRF and XRD respectively.
The chemical composition by XRF confirmed these clays as potential pozzolans with SiO2, Al2O3, and Fe2O3 collectively exceeding 70%.
XRD analysis identified kaolinite and quartz as major mineral phases in the raw clays, which transformed into metakaolin upon calcination.
Thermo Gravimetric Analysis (TGA) indicated varying lime consumption levels among the clays, with Ikpeshi clay displaying the highest pozzolanic reactivity and Uzebba clay the least.
Compressive strength investigation on mortar cubes prepared with 50% substitution of Portland cement with the calcined clay and limestone, showed that Ikpeshi clay at 800°C had the best strength performance, with strength activity index of 0.
92 (at age 28 days), demonstrating superior pozzolanic potential.
Strength development was more significant between 7 and 28 days, indicating the pozzolanic reaction's contribution to long-term strength.
However, initial strength at 3 days was lower than the reference Portland cement due to a delayed pozzolanic reaction.
XRD analysis of blended pastes revealed typical phases of hydration like portlandite, calcium silicate hydrate phase, strätlingite, and ettringite, with the calcined clay blends showing reduced portlandite content, indicating absorption by the pozzolan's alumina phase.

Related Results

The cement-bone bond is weaker than cement-cement bond in cement-in-cement revision arthroplasty. A comparative biomechanical study
The cement-bone bond is weaker than cement-cement bond in cement-in-cement revision arthroplasty. A comparative biomechanical study
This study compares the strength of the native bone-cement bond and the old-new cement bond under cyclic loading, using third generation cementing technique, rasping and contaminat...
Interactive effect of calcined eggshell and montmorillonite on the characteristics of polyvinyl alcohol blends
Interactive effect of calcined eggshell and montmorillonite on the characteristics of polyvinyl alcohol blends
The objective of this work was to investigate the effect of calcined eggshell and montmorillonite (MMT) on the mechanical‐physico properties and thermal characteristics of the poly...
First Implementation of Self-Healing Cement Systems in H2S/CO2 Aggressive Environment Across Pay-Zone
First Implementation of Self-Healing Cement Systems in H2S/CO2 Aggressive Environment Across Pay-Zone
Abstract Carbonate reservoirs are often characterized by high pressure and high content of H2S and CO2. For these reasons, drilling the reservoir is the most challen...
A novel environmental framework for cleaner cement production in a cement plant
A novel environmental framework for cleaner cement production in a cement plant
Meeting the Paris Agreement goal of maintaining the global temperature ‘less than 2°C and towards 1.5°C above preindustrial temperatures requires combined CO2 emissions from all co...
Real-Time Distributed Fiber Optic Sensing for Cement Sheath Integrity Monitoring
Real-Time Distributed Fiber Optic Sensing for Cement Sheath Integrity Monitoring
ABSTRACT: The integrity of cement sheath is critical to oil and gas effective extraction, in which the cement displacement efficiency and solidify quality are the...
FLY ASH FOUNDATION REINFORCED BY CEMENT–SOIL MIXING PILES
FLY ASH FOUNDATION REINFORCED BY CEMENT–SOIL MIXING PILES
Cement-soil mixing piles have been commonly used to enhance the bearing capacity of fly ash stratum and mitigate the settlement damage to the surrounding environment. However, only...
Behavior of Nano Calcium Carbonate Modified Smart Cement Contaminated with Oil Based Drilling Mud
Behavior of Nano Calcium Carbonate Modified Smart Cement Contaminated with Oil Based Drilling Mud
Abstract As oil and gas exploration and production expands around the world, there are unique challenges in well construction beginning at the seafloor. There are se...

Back to Top