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Magnesium silicate binder shows potential as a carbon-neutral route for cement manufacture

  • Christoph Naber
  • Juraj Majzlan
  • Nils Moosdorf
  • Jürgen Neubauer
  • Daniel Wagner
  • Frank Bellmann

Departments

Global Change Impacts and Adaptation

Abstract

Cement production is responsible for a significant share of global anthropogenic carbon dioxide emissions, largely due to limestone calcination, and is projected to remain a major emitter through mid-century. Identifying materials that could reduce reliance on limestone-based cement therefore remains an important research objective. Here we evaluate a magnesium silicate binder produced from thermally activated serpentinite and examine its technical performance alongside an assessment of raw-material availability. A prospective life-cycle analysis for the European cement sector indicates that replacing or retrofitting existing cement plants to produce this binder could substantially reduce emissions by 2050, depending on future energy systems. Modelled resource estimates suggest that suitable ultramafic rocks are widespread, though data availability varies by region. These findings illustrate the potential of magnesium-silicate-based binders as a prospective lower-carbon pathway for cement production.

Cite this activity

Naber C., Majzlan J., Moosdorf N., Neubauer J., Wagner D. and Bellmann F. (2026) Magnesium silicate binder shows potential as a carbon-neutral route for cement manufacture. Communications Sustainability 1(1): 79. 10.1038/s44458-026-00085-z

Details

Research topics
Date 13.05.2026
Journal Communications Sustainability
Issue 1
Volume 1
Pages 79
Open Access Open Access (open)
Open Access Status Open Access (open)
Eprints_link https://cris.leibniz-zmt.de/id/eprint/6219
Peer-Reviewed

Research Spectrum

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