Nitrogen in Permafrost Soils May Exert Great Feedbacks on Climate Changes

Permafrost soil.
The researchers are taking high-resolution soil and gas samples down to the upper layers of the permafrost across multiple sites with differing landscape characteristics, from upland forests to lowland bogs. (Image: Hannes Grobe via Wikimedia Commons)

What nitrogen is getting up to in permafrost soils may exert great feedback on climate change, which overturns what researchers have long believed, according to a Sino-German joint study. Nitrogen is a constituent part of nitrous oxide (N2O) — an often overlooked greenhouse gas — and there is a vast amount of nitrogen stored in permafrost soils. But little is known about N2O emissions from these soils and, until recently, it was assumed that releases had to be fairly minimal due to the cold climate.

There is a gap in our understanding of permafrost soils

The decomposition of organic matter is slow in low temperatures. Exacerbating this, there would have to be high competition among organisms for what little nitrogen there was in a form that they can use. So there couldn’t be much nitrogen left over to contribute to N2O releases. In recent years, however, a growing number of papers have started to hint that there might be very high N2O emissions from such soils, perhaps as much as those from tropical forests or croplands, which suggests that there’s a clear gap in our understanding of what happens to nitrogen in permafrost soils.

Mohe County in northeast China is the study site of the 'NIFROCLIM' project.
Mohe County in northeast China is the study site of the ‘NIFROCLIM’ project. (Image: via Chunyan Liu)

To get to the bottom of the issue, Dr. Michael DANNENMANN from the Karlsruhe Institute of Technology and Dr. Liu Chunyan from the Institute of Atmospheric Physics (IAP) of the Chinese Academy of Sciences, in collaboration with their colleagues, have established the “NIFROCLIM” project in a high-latitude permafrost region in northeast China, which is part of the Eurasian permafrost complex — the world’s largest area of its kind. The profile of “NIFROCLIM” was published as a News & Views report in Advances in Atmospheric Sciences. Elisabeth Ramm, the first author of the article, said:

The layers of permafrost.
The layers of permafrost. (Image: Benjamin Jones via USGS.)

The researchers are taking high-resolution soil and gas samples down to the upper layers of the permafrost across multiple sites with differing landscape characteristics, from upland forests to lowland bogs. They are also engaging in experiments that simulate varying levels of warming. Building a scientific outpost on the southern edge of this region is ideal for studying the impact of climate change on permafrost as the arctic, and the subarctic, in particular, is being hit hard already by global warming. Temperature increases occur here at more than double the pace of the global average, accelerating degradation and N transformations. Dr. Liu Chunyan said:

Provided by: Chinese Academy of Sciences [Note: Materials may be edited for content and length.]

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  • Troy Oakes

    Troy was born and raised in Australia and has always wanted to know why and how things work, which led him to his love for science. He is a professional photographer and enjoys taking pictures of Australia's beautiful landscapes. He is also a professional storm chaser where he currently lives in Hervey Bay, Australia.

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