Abstract CO 2 can be absorbed and mineralized as solid carbonates in a range of construction materials. Accurate measurement of CO 2 content and uptake in cement-based and other construction products is important for the development as well as the certification of novel mineral carbonation products, processes, and practices. However, measurement is complex as samples can range from fine powders to blocks with varying levels of heterogeneity, different solid carbonate phases can be present, and measurement methods may require correction for interferences. When and where the CO 2 content is measured is also important. Numerous techniques are available for measuring the solid CO 2 content of a sample, from which the CO 2 uptake can be calculated. Here, a critical review of the most relevant methods is presented; the most used methods are thermogravimetric and combustion analysis, however, diffraction-based, spectroscopic, wet-chemical, and other methods can also be used for this purpose. Advantages and disadvantages of the various test methods are discussed. Aspects of sample preparation, result interpretation, measurement limitations and possible interferences, as well as the use of complementary methods are highlighted. Important aspects of conversion of measured solid CO 2 contents to calculated CO 2 uptake are highlighted.
Matschei et al. (Fri,) studied this question.