Fingerprinting Portland cements by means of 87Sr/86Sr and 143Nd/144Nd isotope ratios and geochemical profiles

Author:

Kazlagić Anera1ORCID,Stephan Dietmar2ORCID,Ostermann Markus3ORCID,Possolo Antonio4ORCID,Vogl Jochen5ORCID

Affiliation:

1. Scientific Researcher, Federal Institute for Materials Research and Testing, Division 1.1 Inorganic Trace Analysis, Berlin, Germany (corresponding author: )

2. Professor, Department of Civil Engineering, Building Materials and Construction Chemistry, Technische Universität Berlin, Berlin, Germany

3. Senior Scientist, Federal Institute for Materials Research and Testing, Division 1.4 Process Analytical Technology, Berlin, Germany

4. NIST Fellow & Chief Statistician, National Institute of Standards & Technology, Gaithersburg, MD, USA

5. Senior Scientist, Federal Institute for Materials Research and Testing, Division 1.1 Inorganic Trace Analysis, Berlin, Germany

Abstract

This study uses conventional 87Sr/86Sr and 143Nd/144Nd isotope and interelement ratios of Ca, Sr, K, Mn, Mg and Ti as fingerprints for provenancing ordinary Portland cements (OPC). Herein, the first database of Sr and Nd isotope ratios investigated in OPCs, stemming from 29 cement plants located worldwide, was created. The results show that the Sr isotope ratios of OPCs are higher than those of seawater from the observed geological period. The spread of 143Nd/144Nd in OPCs is not as large as the spread for 87Sr/86Sr isotope ratios. However, the combination of both Sr and Nd isotope ratios provides the potential for distinguishing between cements of different production sites. Most of the OPCs investigated have measurable differences in their 87Sr/86Sr and 143Nd/144Nd isotope ratios, which can be employed as a valuable analytical fingerprinting tool. In the case of equivocal results, divisive hierarchical clustering was employed to help overcome this issue. The construction of geochemical profiles allowed the computing of suitably defined distances between cements and clustering them according to their chemical similarity. By applying this methodology, successful fingerprinting was achieved in 27 out of the 29 ordinary Portland cements that were analysed.

Publisher

Thomas Telford Ltd.

Subject

General Materials Science,Building and Construction

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