Methods for Evaluating Pozzolanic Reactivity in Calcined Clays: A Review

Author:

Pinheiro Valber Domingos1ORCID,Alexandre Jonas2,Xavier Gustavo de Castro2ORCID,Marvila Markssuel Teixeira3ORCID,Monteiro Sergio Neves4ORCID,de Azevedo Afonso Rangel Garcez2ORCID

Affiliation:

1. Laboratory of Advanced Materials, State University of the Northern Rio de Janeiro, Campos dos Goytacazes 28013-602, Brazil

2. Civil Engineering Laboratory, State University of the Northern Rio de Janeiro, Campos dos Goytacazes 28013-602, Brazil

3. CRP-Rio Paranaíba Campus, UFV-Federal University of Viçosa, Rio Paranaíba 38810-000, Brazil

4. Department of Materials Science, IME—Military Institute of Engineering, Square General Tibúrcio 80, Rio de Janeiro 22290-270, Brazil

Abstract

The search for alternative materials to replace ordinary Portland cement has been the object of work that enhances the investigation of the use of pozzolanic materials and the reduction of the carbon footprint with supplementary cementitious materials. However, not all materials are available to meet the large-scale demand for cement replacement. A relevant exception is the calcined clay, a material found worldwide that, when subjected to appropriate heat treatment, presents pozzolanic reactivity and can be used as a supplementary material to cement. This review presents, through a systematic search, methods for measuring the pozzolanic reactivity of calcined clays, namely, direct, indirect, qualitative, quantitative, chemical and physical methods such as electrical conductivity (Lùxan), the force activity index, the modified Chapelle, R3, Frattini test, thermal analysis, X-ray diffraction and X-ray fluorescence spectrometry. The most usual methods to assess the pozzolanic reactivity of calcined clays were exposed and analyzed. It should be pointed out that there is greater use of the Frattini and modified Chapelle methods as well as the analysis of the mechanical strength behavior of the material in cementitious matrices. X-ray diffraction and thermal analysis were exposed as the most used correlation methods but it was also concluded that different tests are needed to generate accurate results.

Funder

FAPERJ

CNPq

Publisher

MDPI AG

Subject

General Materials Science

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