Related Experiment Video
Updated: May 25, 2025

Preparation of Aligned Steel Fiber Reinforced Cementitious Composite and Its Flexural Behavior
Published on: June 27, 2018
The compressive strength development and pH of cement mortars incorporating high volume supplementary cementitious
Sumra Yousuf1, Muhammad Rizwan2, Belal Alsubari3
1Department of Building and Architectural Engineering, Faculty of Engineering & Technology, Bahauddin Zakariya University, 60000, Multan, Pakistan.
Abstract:
The durability and service life of concrete structures is primarily dependent on the performance of cement-based material (CBM). This performance of CBMs is linked to their pH directly. Literature suggests that when supplementary cementitious materials (SCMs) are used, the pH of CBMs decreases as a result Ca(OH)₂ consumption during the Pozzolanic reaction (PR). With the construction industry increasingly adopting blended cements for their technical, economic, and environmental benefits, the use of high volumes of SCMs remains a subject of caution. This study investigates the pH behavior of cement mortars modified by replacement of ordinary Portland cement (OPC) with three SCMs (50 %): fly ash (FA), ground granulated blast furnace slag (GGBS), and treated palm oil fuel ash (TPFA), both at early and later stages of curing. The pH values were measured at different curing ages, and thermal gravimetric analysis and X-ray diffraction were used to support the findings. Results indicated that the pH of mortars containing FA or GGBS showed only a slight decrease after 5 months compared to their initial pH values, remaining above 11.5, which is considered within the safe range for concrete durability. In contrast, the pH of TPFA blended mortars decreased significantly, dropping by approximately 14 %, indicating that TPFA had a more substantial impact on the alkalinity of the mortars. These findings suggest that the pH of CBMs is influenced by factors other than just the Ca(OH)₂ (Hydrated lime) content, such as the chemical composition and reactivity of the SCMs used, and that high volumes of TPFA may negatively affect long-term durability.
More Related Videos
05:36Production and Analysis of Sporosarcina pasteurii Biocement Bricks Using Custom 3D-Printed Molds for Unconfined Compression Tests
Published on: March 7, 2025
06:27Expression of Cementitious Pore Solution and the Analysis of Its Chemical Composition and Resistivity Using X-ray Fluorescence
Published on: September 23, 2018
Related Concept Videos
Strength of Cement
For compressive strength tests, ASTM C 109-05 standards prescribe a cement-sand mix ratio of 1:2.75 and a water/cement ratio of 0.485 for making 2-inch cubes. These cubes are mixed, cast, and cured in saturated lime water at 23°C until testing. Flexural strength testing, outlined in...
Testing Water Quality
Mortar Properties
Soundness of Cement
Curing of Concrete
Strength and Heat of Hydration
The heat of hydration for each cement compound is significant; for instance, tricalcium aluminate (C3A) and...