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Saravanan, SuriyaprakashORCID iD iconorcid.org/0009-0003-2229-0694
Publications (3 of 3) Show all publications
Saravanan, S., Huang, L. & Babaahmadi, A. (2026). Effect of graphene oxide dispersion on hydration and carbonation performance of low-clinker cement. Construction and Building Materials, 508, Article ID 144950.
Open this publication in new window or tab >>Effect of graphene oxide dispersion on hydration and carbonation performance of low-clinker cement
2026 (English)In: Construction and Building Materials, ISSN 0950-0618, E-ISSN 1879-0526, Vol. 508, article id 144950Article in journal (Refereed) Published
Abstract [en]

This study demonstrates how polycarboxylate ether-based superplasticizers (PCE) enable graphene oxide (GO) to improve the early hydration and mechanical performance of a low-clinker ternary cement, while also revealing an unexpected trade-off in carbonation behaviour. The ternary system consisted of ordinary Portland cement, slag, and limestone powder. The dispersion state of GO was evaluated through visual observation, ultraviolet-visible spectroscopy (UV-Vis) and dynamic light scattering (DLS), which confirmed that a PCE/GO mass ratio of 10 provided optimal stabilization. Isothermal calorimetry showed that 0.2 wt% GO accelerated hydration most effectively, while mortar testing demonstrated that 0.1 wt% GO increased 1-day compressive strength by 26 %. In-situ X-ray diffraction (XRD) further verified the promotion of early hydration phases. Under accelerated carbonation, however, 0.1 wt% GO increased the initial carbonation rate by 83.7 % without a corresponding increase in the total carbon dioxide (CO2) uptake, as determined by thermogravimetric analysis (TGA). This paradox suggests that GO may act as a nucleation agent for rapid surface precipitation of calcium carbonate (CaCO3), producing a dense outer layer that restricts further CO2 ingress. The finding that GO accelerates carbonation kinetics without enhancing total sequestration challenges prevailing assumptions in the literature and provides new guidance for the design of sustainable, nano-engineered, low-clinker binders, requiring a careful balance between early-age performance and long-term durability.

Place, publisher, year, edition, pages
Elsevier BV, 2026
Keywords
Graphene Oxide, Polycarboxylate Ether, Low-Clinker Cement, Hydration Kinetics, Early-Age Strength, Carbonation
National Category
Building materials Composite Science and Engineering Nanotechnology for Material Science
Identifiers
urn:nbn:se:kth:diva-376584 (URN)10.1016/j.conbuildmat.2025.144950 (DOI)001662477000001 ()2-s2.0-105044284688 (Scopus ID)
Note

QC 20260722

Available from: 2026-02-10 Created: 2026-02-10 Last updated: 2026-07-22Bibliographically approved
Saravanan, S., Selander, A., Simonsson, B. & Gram, A. (2025). Exploring the potential of Baltic sea sediments in concrete: A state-of-the-art review. In: XXV Nordic Concrete Research Symposium, Sandefjord, Norway, 2025: . Paper presented at XXV Nordic Concrete Research Symposium, Sandefjord, Norway, 2025.
Open this publication in new window or tab >>Exploring the potential of Baltic sea sediments in concrete: A state-of-the-art review
2025 (English)In: XXV Nordic Concrete Research Symposium, Sandefjord, Norway, 2025, 2025Conference paper, Published paper (Refereed)
National Category
Building materials
Identifiers
urn:nbn:se:kth:diva-369130 (URN)
Conference
XXV Nordic Concrete Research Symposium, Sandefjord, Norway, 2025
Note

QC 20250908

Available from: 2025-08-28 Created: 2025-08-28 Last updated: 2025-09-08Bibliographically approved
Saravanan, S., Selander, A. & Gram, A. (2025). High-performance, low-carbon concrete from Nordic binders: A 365-day comparative study of six supplementary cementitious materials. In: 2nd International Conference on Net-Zero Built Environment, Cape Town, South Africa, 2025: . Paper presented at 2nd International Conference on Net-Zero Built Environment, Cape Town, South Africa, 5-7 November 2025.
Open this publication in new window or tab >>High-performance, low-carbon concrete from Nordic binders: A 365-day comparative study of six supplementary cementitious materials
2025 (English)In: 2nd International Conference on Net-Zero Built Environment, Cape Town, South Africa, 2025, 2025Conference paper, Published paper (Refereed)
Abstract [en]

As the construction industry seeks to reduce its carbon footprint, supplementary cementitious materials (SCMs) play a vital role in reducing the clinker content of concrete. This paper synthesizes and comparatively analyze the 365-day compressive strength development of six locally sourced SCMs to establish their long-term performance for use in the Nordic region. The locally sourced SCMs are calcined clay (CC), fly ash (FA), natural pozzolan (NP), electric arc furnace slag (EAFS), oil shale ash (OSA), and ground granulated blast furnace slag (GGBS). A total of 31 concrete mixes were evaluated, with SCMs replacing cement at levels from 15% to 60%. While all SCM mixes exhibited lower early-age strength than the Portland cement reference, long-term strength was significantly enhanced. The most promising results include 15% FA (102 MPa), 35% NP (99.5 MPa), and 45% GGBS (96.5 MPa) at 365 days. High-volume replacement was also proven viable, with 35% oil shale ash matching the reference strength. The findings demonstrate that these regionally available SCMs offer a viable pathway towards producing high-performance concrete with significantly reduced clinker content, suitable for a wide range of structural applications.

National Category
Building materials
Identifiers
urn:nbn:se:kth:diva-369563 (URN)
Conference
2nd International Conference on Net-Zero Built Environment, Cape Town, South Africa, 5-7 November 2025
Note

QC 20260107

Available from: 2025-09-10 Created: 2025-09-10 Last updated: 2026-01-09Bibliographically approved
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ORCID iD: ORCID iD iconorcid.org/0009-0003-2229-0694

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