Glaciers Vanishing at Record Rate in Alps Following Heatwaves

Hikers walk on the ice of the Pers Glacier near the Alpine resort of Pontresina, Switzerland July 21, 2022. (Reuters)
Hikers walk on the ice of the Pers Glacier near the Alpine resort of Pontresina, Switzerland July 21, 2022. (Reuters)
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Glaciers Vanishing at Record Rate in Alps Following Heatwaves

Hikers walk on the ice of the Pers Glacier near the Alpine resort of Pontresina, Switzerland July 21, 2022. (Reuters)
Hikers walk on the ice of the Pers Glacier near the Alpine resort of Pontresina, Switzerland July 21, 2022. (Reuters)

From the way 45-year-old Swiss glaciologist Andreas Linsbauer bounds over icy crevasses, you would never guess he was carrying 10 kg of steel equipment needed to chart the decline of Switzerland's glaciers.

Normally, he heads down this path on the massive Morteratsch Glacier in late September, the end of the summer melt season in the Alps. But exceptionally high ice loss this year has brought him to this 15-square-kilometer (5.8-square-mile) amphitheater of ice two months early for emergency maintenance work.

The measuring poles he uses to track changes in the depth of the pack are at risk of dislodging entirely as the ice melts away and he needs to drill new holes.

The Alps' glaciers are on track for their highest mass losses in at least 60 years of record keeping, data shared exclusively with Reuters shows. By looking at the difference in how much snow fell in winter, and how much ice melts in the summer, scientists can measure how much a glacier has shrunk in any given year.

Since last winter, which brought relatively little snowfall, the Alps have sweltered through two big early summer heatwaves – including one in July marked by temperatures near 30 Celsius (86 Fahrenheit) in the Swiss mountain village of Zermatt.

During this heatwave, the elevation at which water froze was measured at a record high of 5,184 meters (17,000 feet) – at an altitude higher than Mont Blanc's -- compared with the normal summer level of between 3,000-3,500 meters (9,800-11,500 feet).

"It's really obvious that this is an extreme season," Linsbauer said, shouting over the roar of rushing meltwater as he checked the height of a pole jutting out of the ice.

Mountain meltdown

Most of the world's mountain glaciers — remnants of the last ice age — are retreating due to climate change. But those in the European Alps are especially vulnerable because they are smaller with relatively little ice cover. Meanwhile, temperatures in the Alps are warming at around 0.3C per decade — around twice as fast as the global average.

If greenhouse gas emissions continue to rise, the Alps glaciers are expected to lose more than 80% of their current mass by 2100. Many will disappear regardless of whatever emissions action is taken now, thanks to global warming baked in by past emissions, according to a 2019 report by the UN Intergovernmental Panel on Climate Change.

Already, Morteratsch is much changed from the glacier depicted on the region's tourist maps. The long tongue that once reached deep into the valley below has shrunk back by nearly 3 kilometers (2 miles), while the depth of the snow and ice pack has thinned by up to 200 meters (656 feet). A parallel glacier Pers flowed into it until 2017 but has now receded so much that an expanding strip of grit lies between them.

The dire situation this year raises concern that the Alps' glaciers might vanish sooner than expected. With more years like 2022, that could happen, said Matthias Huss, who leads Glacier Monitoring Switzerland.

"We are seeing model results expected a few decades in the future are happening now," Huss said. "I did not expect to see such an extreme year so early in the century."

No snow, high heat

Reuters spoke with glaciologists in Austria, France, and Italy who confirmed that glaciers there were on track for record losses. In Austria, "the glaciers are snow-free up to the summits," said Andrea Fischer, a glaciologist at the Austrian Academy of Sciences.

Seasonal snowfall, apart from replenishing ice lost during summer, protects glaciers from further melt by providing a white cover that reflects sunlight back out to atmosphere better than darker ice – sullied by dust or pollution - can do.

But at the Grand Etret glacier in northwest Italy, only 1.3 meters (4.2 feet) of snow had accumulated during this past winter – 2 meters (6.6 feet) less than the annual average for the 20 years up to 2020.

This year's Alpine ice losses, registered even before the biggest melt month of August, surprised scientists to some extent, as many of the glaciers had already lost their lower-lying snouts. Because they had retreated up the mountain, where temperatures are cooler, scientists thought they should have been better protected.

"You can easily imagine the final results after summer will be … extensive loss of glacier coverage in the Italian Alps," said Marco Giardino, vice president of the Italian Glaciological Committee.

Data shared exclusively with Reuters shows that Morteratsch is now shedding about 5 centimeters (2 inches) a day and is already in a worse state than it would normally be at the end of an average summer, according to data from GLAMOS and the Universite libre de Bruxelles.

The nearby Silvretta Glacier has lost about 1 meter (3.3 feet) more than at the same point in 1947 - the worst year in its database stretching back to 1915.

Himalayan thaw

Himalayan glaciers are also on track for a record ice loss year, scientists told Reuters. When the summer monsoon season arrived in the Kashmir region, for example, many glaciers had already been shrunk drastically, with their snowlines starting high up the mountain, after a March-May heatwave marked by temperatures above 48C (118F) in northern India.

An early June expedition in India’s Himachal Pradesh found that the Chhota Shigri Glacier had lost much of its snow cover. “The highest temperature in over a century in March through May clearly had its impacts,” said glaciologist Mohd Farooq Azam at the Indian Institute of Technology Indore.

Losing ‘national heritage’

Vanishing glaciers are already endangering lives and livelihoods. Earlier this month, a glacier collapse on the Marmolada in Italy killed 11 people. Days later, a collapsing glacier in the Tian Shan mountains of eastern Kyrgyzstan triggered a massive avalanche, sending ice and rocks hurdling toward passing tourists.

Above the Swiss village of Saas Fee, a path leading to a mountain hut once passed through a summer snowfield on top of the Chessjen Glacier.

"It's too dangerous now," due to the risk of falling rocks, once held together by hard-frozen ice, said hutkeeper Dario Andenmatten while gazing out over a barren landscape dotted with glacial lakes. Nearby, the rumble of stones tumbling from the mountain could be heard.

Swiss residents worry that the glacier losses will hurt their economy. Some area ski resorts of the Alps, which rely on these glaciers, now cover them with white sheets to reflect sunlight and reduce melting.

Swiss glaciers feature in many of the country’s fairy tales, and the Aletsch Glacier is considered a UNESCO World Heritage Site. Losing the glaciers "means losing our national heritage, our identity," said hiker Bernardin Chavaillaz. "It's sad."



Scientists Drill Nearly 2 Miles Down to Pull 1.2 Million-year-old Ice Core from Antarctic

An international team of scientists announced successfully drilled one of the oldest ice cores yet - The AP
An international team of scientists announced successfully drilled one of the oldest ice cores yet - The AP
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Scientists Drill Nearly 2 Miles Down to Pull 1.2 Million-year-old Ice Core from Antarctic

An international team of scientists announced successfully drilled one of the oldest ice cores yet - The AP
An international team of scientists announced successfully drilled one of the oldest ice cores yet - The AP

An international team of scientists announced Thursday they’ve successfully drilled one of the oldest ice cores yet, penetrating nearly 2 miles (2.8 kilometers) to Antarctic bedrock to reach ice they say is at least 1.2 million years old.

Analysis of the ancient ice is expected to show how Earth's atmosphere and climate have evolved. That should provide insight into how Ice Age cycles have changed, and may help in understanding how atmospheric carbon changed climate, they said, The AP reported.

“Thanks to the ice core we will understand what has changed in terms of greenhouse gases, chemicals and dusts in the atmosphere,” said Carlo Barbante, an Italian glaciologist and coordinator of Beyond EPICA, the project to obtain the core. Barbante also directs the Polar Science Institute at Italy's National Research Council.

The same team previously drilled a core about 800,000 years old. The latest drilling went 2.8 kilometers (about 1.7 miles) deep, with a team of 16 scientists and support personnel drilling each summer over four years in average temperatures of about minus-35 Celsius (minus-25.6 Fahrenheit).

Italian researcher Federico Scoto was among the glaciologists and technicians who completed the drilling at the beginning of January at a location called Little Dome C, near Concordia Research Station.

“It was a great a moment for us when we reached the bedrock,” Scoto said. Isotope analysis gave the ice's age as at least 1.2 million years old, he said.

Both Barbante and Scoto said that thanks to the analysis of the ice core of the previous Epica campaign they have assessed that concentrations of greenhouse gases, such as carbon dioxide and methane, even during the warmest periods of the last 800,000 years, have never exceeded the levels seen since the Industrial Revolution began.

“Today we are seeing carbon dioxide levels that are 50% above the highest levels we’ve had over the last 800,000 years," Barbante said.

The European Union funded Beyond EPICA (European Project for Ice Coring in Antarctica) with support from nations across the continent. Italy is coordinating the project.

The announcement was exciting to Richard Alley, a climate scientist at Penn State who was not involved with the project and who was recently awarded the National Medal of Science for his career studying ice sheets.

Alley said advancements in studying ice cores are important because they help scientists better understand the climate conditions of the past and inform their understanding of humans’ contributions to climate change in the present. He added that reaching the bedrock holds added promise because scientists may learn more about Earth’s history not directly related to the ice record itself.

“This is truly, truly, amazingly fantastic,” Alley said. “They will learn wonderful things.”