The Effect of Mechanical Activation of Fly Ash on Cement-Based Materials Hydration and Hardened State Properties

Author:

Akmalaiuly Kenzhebek1,Berdikul Nazerke1,Pundienė Ina2,Pranckevičienė Jolanta2

Affiliation:

1. Department of Construction and Building Materials, Satbayev University, Satbayeva Str. 22, 050013 Almaty, Kazakhstan

2. Laboratory of Concrete Technology, Institute of Building Materials, Vilnius Gediminas Technical University, Linkmenų Str. 28, LT-08217 Vilnius, Lithuania

Abstract

Fly ash from coal represents the foremost waste product of fossil fuel combustion. These waste materials are most widely utilised in the cement and concrete industries, but the extent of their use is insufficient. This study investigated the physical, mineralogical, and morphological characteristics of non-treated and mechanically activated fly ash. The possibility of enhancing the hydration rate of the fresh cement paste by replacing part of the cement with non-treated and mechanically activated fly ash, and the hardened cement paste’s structure and early compressive strength performance, were evaluated. At the first stage of the study, up to 20% mass of cement was replaced by untreated and mechanically activated fly ash to understand the impact of the mechanical activation on the hydration course; rheological properties, such as spread and setting time; hydration products; mechanical properties; and microstructure of fresh and hardened cement paste. The results show that a higher amount of untreated fly ash significantly prolongs the cement hydration process, decreases hydration temperature, deteriorates the structure and decreases compressive strength. Mechanical activation caused the breakdown of large porous aggregates in fly ash, enhancing the physical properties and reactivity of fly ash particles. Due to increased fineness and pozzolanic activity by up to 15%, mechanically activated fly ash shortens the time of maximum exothermic temperature and increases this temperature by up to 16%. Due to nanosized particles and higher pozzolanic activity, mechanically activated fly ash facilitates a denser structure, improves the contact zone between the cement matrix, and increases compressive strength up to 30%.

Publisher

MDPI AG

Subject

General Materials Science

Reference81 articles.

1. Characteristics and Applications of Fly Ash as a Sustainable Construction Material: A State-of-the-Art Review;Xu;Resour. Conserv. Recycl.,2018

2. A Review on Fly Ash Characteristics e Towards Promoting High Volume Utilisation in Developing Sustainable Concrete;Hemalatha;J. Clean. Prod.,2017

3. Advances in Understanding Alkali-Activated Materials;Provis;Cem. Concr. Res.,2015

4. Eco-Efficient Cements: Potential Economically Viable Solutions for a Low-CO2 Cement-Based Materials Industry;Scrivener;Cem. Concr. Res.,2018

5. (2009). Standard Specification for Coal Fly Ash and Raw or Calcined Natural Pozzolan for Use in Concrete (Standard No. ASTM–C618-8a).

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