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March 22, 2026Cement and Concrete Research5 citationsOpen Access

Impact of the mineralogy of low–purity clays on their suitability as supplementary cementitious materials

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ITIlda ToleUniversity of LeedsYDYuvaraj DhandapaniUniversity of LeedsSKSimon J. KempBritish Geological Survey

Key Points

  • This research aims to determine the suitability of low-purity clays as supplementary cementitious materials by examining their mineral content.
  • Investigated 73 clays from 27 geological formations
  • Analyzed chemical composition and kaolinite content
  • Assessed pozzolanic reactivity of calcined clays at 800 °C
  • Clays with ≥40 wt% total clay mineral content and <60 wt% mica showed moderate to high reactivity
  • Kaolinitic clays from Carboniferous formations had higher pozzolanic reactivity compared to younger clays
  • Existing guidelines on chemical composition did not predict reactivity accurately

Abstract

The lack of rapid screening and selection criteria limits the use of low–purity and common clays as supplementary cementitious materials (SCMs). Here the potential suitability as SCMs of 73 clays from 27 different geological formations, was investigated. Neither chemical composition nor kaolinite content were appropriate criteria to infer the calcined clays pozzolanic reactivity, which is the recommendation in existing guidelines. Clays exhibiting a total clay mineral content of ≥40 wt%, and a mica content below 60 wt% in the clay mineral fraction present moderate to high pozzolanic reactivity when calcined at 800 °C. Low–purity clays derived from kaolinitic Carboniferous formations, such as the Etruria and Pennine Coal Measures, consistently exhibited higher pozzolanic reactivity, compared with younger or marine–derived clays, particularly those from Jurassic, Cretaceous, and Quaternary aged-units. This new knowledge provides a novel guideline for the exploration and sourcing of promising clays for SCMs production globally.

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Cite This Study

Tole et al. (2026) studied this question.

synapsesocial.com/papers/69bf8641f665edcd009e8bebhttps://doi.org/10.1016/j.cemconres.2026.108211
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Also Consider

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  3. 3Calcined Clays as Supplementary Cementitious Materials for Sustainable Construction: A Systematic Comparative Review of Mineralogy, Calcination Conditions, and Performance Outcomes2026 · 1 citations
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