open access publication

Article, 2022

Correlating the development of chloride profiles and microstructural changes in marine concrete up to ten years

Cement and Concrete Composites, ISSN 0958-9465, 1873-393X, Volume 131, Page 104590, 10.1016/j.cemconcomp.2022.104590

Contributors

Fjendbo, Simon 0000-0001-6487-4207 (Corresponding author) [1] [2] Sørensen, Henrik Erndahl [1] De Weerdt, Klaartje 0000-0001-8705-8413 [2] Jakobsen, Ulla Hjorth [1] Geiker, Mette Rica 0000-0003-4952-8394 [2]

Affiliations

  1. [1] Danish Technological Institute
  2. [NORA names: Danish Technological Institute; GTS Institutes; Denmark; Europe, EU; Nordic; OECD];
  3. [2] Norwegian University of Science and Technology
  4. [NORA names: Norway; Europe, Non-EU; Nordic; OECD]

Abstract

After ten years of marine exposure, chloride and calcium profiles and petrographic data were obtained from the tidal and submerged zones of six concrete panels differing in binder composition. Moisture and portlandite profiles were also determined on the submerged concrete. The data enables us to improve our understanding of the impact of sea water exposure and can also be used for service life modeling. The depth of the maximum chloride content and the depth of the microstructurally changed zone were comparable. Both depths progressed over time and reached a depth of as much as 10 mm after ten years of exposure. When using these and other field data for testing of chloride ingress prediction models, we recommend excluding datapoints from the microstructurally changed zone, i.e., the outermost datapoints including the maximum chloride content, unless reactive transport models are used.

Keywords

binder, binder composition, calcium, calcium profile, changes, chloride, chloride content, chloride profiles, composition, concrete, concrete panels, content, data, datapoints, depth, development, exposure, field, field data, i., impact, life model, marine, marine concrete, marine exposure, maximum chloride content, microstructural changes, model, moisture, outermost, panel, petrographic data, portlandite profiles, prediction model, profile, reactive transport model, sea water exposure, service life models, services, submerged concrete, submerged zone, test, time, transport model, water exposure, years, years of exposure, years of marine exposure, zone

Funders

  • Danish Ministry of Higher Education and Science

Data Provider: Digital Science