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Atlantic weather pattern shaped southern Greenland's rain and snow for millennia, sediments reveal

Atlantic weather pattern shaped southern Greenland's rain and snow for millennia, sediments reveal

phys.org 08.10.2026 23:40 4 views
In high-latitude coastal areas, Arctic amplification means that temperatures are rising faster than the global average. This combination of rising temperatures and changing precipitation patterns driven by the North Atla

This article has been reviewed according to Science X's editorial process and policies. Editors have highlighted the following attributes while ensuring the content's credibility: In high-latitude coastal areas, Arctic amplification means that temperatures are rising faster than the global average. This combination of rising temperatures and changing precipitation patterns driven by the North Atlantic Oscillation has major impacts on regions with a "cryosphere"—areas that host ice sheets and glaciers, such as southern Greenland.

Present-day measurements demonstrate a clear relationship between positive NAO phases, increasing precipitation and cooler temperatures in southern Greenland. However, the impact of large-scale atmospheric circulation patterns on the Greenland Ice Sheet before measurements began remains poorly understood. The aim of a new study led by MARUM scientists, recently published in the journal Nature Communications, was to create a precipitation record extending back through the Holocene, our planet's current warm epoch that spans approximately the past 12,000 years.

The international research team used a sediment core collected in 2022 from Narsaq Sound in southwestern Greenland. The core was collected during the research expedition MSM 111 BAFFDEEP. Measuring rainfall or snowfall over millennia in marine mud may sound challenging, but the researchers found a clue in the distinct geology surrounding Narsaq Sound.

The rocks that surround Narsaq Sound are unusual in that they are rich in niobium, a transition metal. Niobium concentrations are generally low in the ocean, and the element remains stable in the environment. Using X-ray fluorescence scanning (XRF), the researchers searched for changes in niobium concentrations in the sediments as a fingerprint, or tracer, of past precipitation.

Elevated niobium concentrations found in the core sediments result from increased transport of niobium-bearing sediment to the fjord by local glaciers or by the river draining the surrounding region. This is the first time niobium sources, usually commercially exploited for the steel and electronics industries, have been used as a tracer for past precipitation. A clear climate-driven pattern in niobium concentrations was found throughout the Narsaq Sound sediment record.

Concentrations were high following the retreat of the Greenland Ice Sheet in the early Holocene (around 11,600 years ago). After comparing the Narsaq Sound record with other records containing a signal of the NAO, the authors found the only explanation for this was that, over southwestern Greenland, precipitation was higher but temperatures were lower when the NAO was in a positive phase. "What surprised us most," says lead author Dr.

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