Sorption Experiments with HTO, 36-Cl, 125-I and 14-C Labeled Formate on Aged Cement Matrices Retrieved from Long-term In-situ Rock Laboratory Experiments

Author:

Nedyalkova Latina1,Tits Jan2,Bernard Ellina1,Wieland Erich2,Mäder Urs1

Affiliation:

1. Rock-Water Interaction Group, Institute of Geological Sciences, Baltzerstrasse 1-3, University of Bern, Switzerland.

2. Laboratory for Waste Management (LES), Paul Scherrer Institut, Forschungsstrasse 111, 5232 Villigen, Switzerland.

Publisher

Japan Concrete Institute

Subject

General Materials Science,Building and Construction

Reference41 articles.

1. 1) Aggarwal, S., Angus, M. J. and Ketchen, J., (2000). “Sorption of radionuclides onto specific mineral phases present in repository cements (Report No. NSS/R312).” Harwell, UK: AEA Technology.

2. 2) Aimoz, L., Wieland, E., Taviot-Guého, C., Dähn, R., Vespa, M. and Churakov, S. V., (2012). “Structural insight into iodide uptake by AFm phases.” Environmental Science & Technology, 46(7), 3874-3881.

3. 3) Atkinson, A., Everitt, N. and Guppy, R., (1988). “Evolution of pH in a radwaste repository: Internal reactions between concrete constituents (Report No. AERE-R12939).” Harwell, UK: United Kingdom Atomic Energy Authority (UKAEA).

4. 4) Atkinson, A., Everitt, N. and Guppy, R., (1989). “Evolution of pH in a radwaste repository: Internal reactions between concrete constituents - Part 2 (Report No. DOE/RW/89/025).” Harwell, UK: United Kingdom Atomic Energy Authority (UKAEA).

5. 5) Balonis, M., Lothenbach, B., Le Saout, G. and Glasser, F. P., (2010). “Impact of chloride on the mineralogy of hydrated Portland cement systems.” Cement and Concrete Research, 40(7), 1009-1022.

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