Chloride ions tend to ingress rapidly in damaged areas of marine concrete structures, such as cracks and spalling zones. Without timely intervention, embedded steel reinforcement in these regions undergoes accelerated corrosion, ultimately compromising structural integrity. To reduce chloride ingress pathways, prompt repair of these localised damage sites is required, which necessitates repair materials that exhibit rapid reactivity and robust interfacial compatibility with the deteriorated substrate. In this study, a novel magnesium phosphate cement (MPC) mortar was designed to form a tightly bonded interface with long-term marine-exposed concrete, thereby minimising chloride penetration and ensuring durable protection. The repair performance was systematically evaluated through experimental investigations covering three aspects: the material properties of the MPC repair system, the long-term durability characteristics of the 38-year marine-exposed concrete substrate and their interfacial compatibility. The results showed that the developed MPC mortar exhibited excellent early-age mechanical properties and formed a tightly bonded interface with the substrate, effectively curtailing chloride ingress pathways. By ensuring interfacial compatibility, the MPC mortar repair layer significantly mitigated chloride penetration, thus achieving long-term protection. By integrating material characterisation, field exposure data and electrochemical assessment, this study provides a systematic experimental basis for the application of the developed MPC mortar in the repair of marine concrete structures.
Article navigation
8 September 2026
Editors
Research Article|
August 18 2026
Experimental investigation of magnesium phosphate cement mortar for the repair of long-term marine-exposed concrete
Ren-Jie Wu;
Ren-Jie Wu
Guangdong-HK Joint Laboratory for Marine Infrastructure, Department of Civil and Environmental Engineering,
The Hong Kong Polytechnic University
, Hong Kong, China
Search for other works by this author on:
Jun-Wei Ren;
College of Urban Construction,
Zhejiang Shuren University
, Hangzhou, China
Corresponding author Jun-Wei Ren (junweiren@zjsru.edu.cn)
Search for other works by this author on:
Zhihong Fan;
Zhihong Fan
Guangdong-HK Joint Laboratory for Marine Infrastructure,
CCCC Fourth Harbor Engineering Institute Co., Ltd
, Guangzhou, China
Search for other works by this author on:
Yong Xia;
Yong Xia
Guangdong-HK Joint Laboratory for Marine Infrastructure, Department of Civil and Environmental Engineering,
The Hong Kong Polytechnic University
, Hong Kong, China
Search for other works by this author on:
Keyu Chen;
Keyu Chen
College of Civil Engineering and Architecture,
Zhejiang University
, Hangzhou, China
Search for other works by this author on:
Jin Xia
Jin Xia
College of Civil Engineering and Architecture,
Zhejiang University
, Hangzhou, China
Search for other works by this author on:
Corresponding author Jun-Wei Ren (junweiren@zjsru.edu.cn)
Publisher: Emerald Publishing
Received:
March 12 2026
Accepted:
June 05 2026
Online ISSN: 1751-763X
Print ISSN: 0024-9831
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Magazine of Concrete Research (2026) 78 (13-14): 869–880.
Article history
Received:
March 12 2026
Accepted:
June 05 2026
Citation
Wu R, Ren J, Fan Z, Xia Y, Chen K, Xia J (2026), "Experimental investigation of magnesium phosphate cement mortar for the repair of long-term marine-exposed concrete". Magazine of Concrete Research, Vol. 78 No. 13-14 pp. 869–880, doi: https://doi.org/10.1680/jmacr.26.00096
Download citation file:
146
Views
New and popular articles
Suggested Reading
Application of electro-injection method in improving cement mortar durability
Magazine of Concrete Research (September,2023)
Effect of attachment of barnacles and oysters on concrete properties
Magazine of Concrete Research (February,2025)
Comparison of fundamental properties and durability of mortar mixed with antibacterial functional materials
Magazine of Concrete Research (September,2023)
Effect of biomass ashes on the strength, durability and microstructure of cement mortars
Advances in Cement Research (June,2025)
Comparative study of the effect of crushed dune sand and limestone fillers on mortar properties in aggressive environment
World Journal of Engineering (August,2021)
Related Chapters
MARINE AND UNDERWATER CONCRETE – BUILDABILITY AND DURABILITY
Challenges of Concrete Construction: Volume 6, Concrete for Extreme Conditions: Proceedings of the International Conference held at the University of Dundee, Scotland, UK on 9–11 September 2002
MARINE CONCRETE INFRASTRUCTURE: MORE THAN READY FOR 100 YEARS SERVICE LIFE
Concrete for Transportation Infrastructure: Proceedings of the International Conference held at the University of Dundee, Scotland, UK on 5–7 July 2005
HOW POLYMERS IMPROVE CONCRETE FLOORS - POSSIBILITIES TODAY AND PROSPECTS FOR THE FUTURE
Concrete Floors And Slabs: Proceedings of the International Seminar held at the University of Dundee, Scotland, UK on 5–6 September 2002
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
