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In Alaska, soil in permafrost regions is warming the fastest

In Alaska, soil in permafrost regions is warming the fastest

phys.org 01.10.2026 19:00 3 views
Soils are warming quickly and at considerable depth across Alaska, with temperatures rising fastest in the state's permafrost region, a trend that could accelerate climate change and undermine the stability of roads, bui

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: Soils are warming quickly and at considerable depth across Alaska, with temperatures rising fastest in the state's permafrost region, a trend that could accelerate climate change and undermine the stability of roads, buildings and other infrastructure built on the continuously frozen ground. That's a central finding of new research from Washington State University that provides a comprehensive look at soil temperatures from 1997 to 2023 in a state where the effects of climate change are pronounced.

The warming permafrost is of particular concern because when that ground thaws, it releases carbon dioxide and methane, driving even faster warming. Alaska's air temperatures are rising at twice the pace of the Lower 48, a key sign of the "polar amplification" of climate change at Arctic latitudes. The new research details how and where the ground is warming, compares that to air temperatures and shows that snow cover plays a key role in regional differences.

"In the Lower 48 or farther south, you would expect that soil temperatures and air temperatures would change at the same rate," said lead author Erin Oliver, a postdoctoral research associate for WSU's Department of Crop and Soil Science who is based in Alaska. "Those warmer air temperatures warm the soil. But in Alaska, over half the year, our soils are covered in snow.

So how would that affect things?" In short, her study found that soil warming is almost keeping pace with air warming, particularly in the central and maritime parts of the state. In high-latitude permafrost regions, soil warming is lagging behind air warming, but even so, she saw "polar amplification" in soil temperatures, too. Over the 27 years of the study, air and soil temperatures increased across the state, but the increases were most pronounced in the permafrost regions, where air temperatures rose at a rate of 1.15 degrees Celsius per decade and soil temperatures rose at 0.64 degrees Celsius per decade.

The research, published in the journal Frontiers in Climate, offers one of the most comprehensive studies of the relationship between air and soil temperatures in Alaska. Collecting such data is challenging in the state due to its vast size and difficult geography. "It's hard to get around in Alaska," Oliver said.

"Most of the state is very remote, it's very expensive to put in these weather stations, and they really only started putting them in the late 1990s. So comparatively, we don't have as much of a record as other places." For the study, the researchers synthesized air and soil temperature data from 43 weather stations across Alaska and tracked soil temperatures at several different depths over 27 years. To evaluate the effects of snow cover, they divided the state into three regions: one with continuous permafrost, one with some areas of permafrost and one without permafrost.

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