How an iceberg may have stopped emperor penguins from breeding on Coulman Island in 2025

How an iceberg may have stopped emperor penguins from breeding on Coulman Island in 2025
A researcher collecting guano samples at the Coulman Island emperor penguin breeding colony during the 2025 field survey. Credit: Myeongho Seo

The number of chicks in the Coulman Island emperor penguin colony decreased by about 69% in 2025 compared with 2024, according to research published in Communications Earth & Environment. The authors suggest that a large iceberg, which grounded off the island between July 2025 and January 2026, likely restricted the colony's access to important foraging areas, demonstrating that individual iceberg movements may affect breeding success even when overall sea ice conditions appear favorable.

During the breeding season (between June and January), emperor penguins (Aptenodytes forsteri) require both stable sea ice and reliable access to open-water food sources so adults can feed their unfledged chicks. Overall sea ice conditions are known to affect breeding success, but previous observations have suggested that individual large icebergs may also have an effect.

Jeong-Hoon Kim and colleagues conducted two aerial field surveys of the emperor penguin colony on Coulman Island, Antarctica, in November and December 2025. They counted 6,658 live chicks—approximately 69% fewer than both the 2024 count and the 2017–2024 mean count.

During field observations, the authors observed a large iceberg grounded 3–5 km (1.9–3.1 miles) north of the colony. Satellite imagery showed that this iceberg (about 13.9 km long [8.6 miles] and 4.0 km wide [2.5 miles]) had calved in March 2025, approached the colony in July and finally grounded on July 28, during the hatching season.

The authors combined the iceberg's positional data with a detailed model of its shape, derived from aerial imagery collected during the survey. They suggest that the iceberg's steep southern face and grounded position likely increased the distance penguins needed to travel to forage from around 9.3 km (5.8 miles) in 2024 to approximately 14.9 km (9.3 miles) in 2025. They propose that this increased distance contributed to the reduced breeding success in 2025.

The authors note that the study covers only a single season and that the findings are observational. However, they also suggest that while such iceberg events are unpredictable and typically temporary, future research into emperor penguin breeding should consider the role these events can play alongside broader trends.

Publication details

Jinku Park et al, Iceberg-driven constraints on colony–foraging connectivity result in severe decline in chick counts for the Coulman Island emperor penguin colony, Communications Earth & Environment (2026). DOI: 10.1038/s43247-026-03764-w

Provided by Korea Polar Research Institute

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Citation: How an iceberg may have stopped emperor penguins from breeding on Coulman Island in 2025 (2026, July 23) retrieved 24 July 2026 from https://phys.org/news/2026-07-iceberg-emperor-penguins-coulman-island.html

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