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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Environmental Sources Human Health Effects Marine & Wildlife Sign in to save

Composite engineering structures in seawater − Review of durability and environmental performance

Composite Structures 2025 4 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 58 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Thomas Keller, Shahin Maghsoudi Zand, Tara Habibi

Summary

This review assesses the long-term durability and environmental performance of fiber-reinforced composite structures used in seawater for shoreline protection. Researchers found that while composites offer advantages over steel and concrete for coastal infrastructure, they can release microplastics and other pollutants as they degrade over time. The study emphasizes the need for better understanding of how these materials age in marine environments to avoid trading one environmental problem for another.

Study Type Environmental

Shoreline protection systems composed of fibre-polymer composite structures immersed in seawater may efficiently contribute to mitigate impacts of climate change, such as more frequent and severe coastal flooding and storm surges, and significant rises of sea levels, both threatening ecosystems, human life, and economies worldwide. To make a more widespread application of composites in seawater possible, on the waterfront and offshore, submersed and in the splash zone, several aspects must be studied in depth, such as (i) the durability of the materials over several decades regarding physical and mechanical properties, and including abrasive erosion through waterborne particles, as well as (ii) aquatic toxicity and associated microplastic pollution. These aspects are thoroughly reviewed and needs for future research are derived, after having summarised the state of the art of composite applications for current waterfront infrastructure. Furthermore, new opportunities for composite structures to mitigate impacts of climate change are introduced, such as hybrid seawall and armour shoreline protection systems against sea level rise and to dissipate wave energy, and floating structures for breakwaters and floating cities.

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