4.7 Article

Synthesis, characterization, and thermodynamic study of selected K-based zeolites

期刊

CEMENT AND CONCRETE RESEARCH
卷 148, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.cemconres.2021.106537

关键词

Zeolite; Thermodynamic data; Cemdata; Stability domain; Nuclear waste disposal

资金

  1. Distinguished Senior Researcher Grant at Empa
  2. European Union [754364]
  3. Nagra grant [16675]

向作者/读者索取更多资源

The study focused on the thermodynamic properties of potassium-rich zeolites in cementitious systems, including stability and predominance diagrams. Analysis of experimental data on 14 types of K-based zeolites revealed their typically low solubility between 0 and 100 degrees Celsius.
Potassium-rich zeolites often occur in cementitious systems, as K+ is widespread in various cementitious materials, such as Portland, blended and alkali-activated cements. The knowledge of their stability and of thermodynamic models for solid solutions with Na+ and Ca2+ are critical to understand long-term development and durability in such cements. Completing previous studies on Na- and Ca-based zeolites, the current work aims to determine the thermodynamic data of 14 types of K-based zeolites, which could possibly form in cementitious systems. The zeolites were synthesized hydrothermally, exchanged with K+, and characterized thoroughly with respect to framework structures, elemental compositions, water contents, and bond variations. Their thermodynamic properties were derived from the experimental solubility data, which allowed establishing predominance diagrams in the K2O-SiO2-Al2O3-H2O system. The K-based zeolites typically showed the lowest solubility between 0 and 100 degrees C, with the notable exception of Ca-gismondine and two Na-based zeolites: natrolite and Namordenite.

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