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Måleinstrumenter i aluminium og plast foran observatoriet på Svalbard
Even in remote areas, such as here at the Zeppelin Observatory in Svalbard, researchers find microplastics in the air. It may have come all the way from cities in southern Europe. Photo: Anne-Cathrine Nilsen, NILU

Microplastics from European cities fly quickly up to the Arctic

When car tire particles and other microplastics are absorbed into the air, it can travel hundreds of miles in a few days. Norway is the only country in the world that has permanent monitoring of microplastics in the air.

In air everywhere, there are microplastics. It spreads far and fast. A new research article from NILU, Airborne microplastics on the move: Urban Europe as a source to remote regions, refers to measurements of microplastics in air over almost five years.

“There has been little knowledge about microplastics in the air. More attention has been paid to plastic particles in water and sediment,” says senior researcher at NILU, Dorte Herzke.

The measurements started as a pilot project in 2021 with six measurements over three months in Svalbard and Birkenes in Agder. The surveys were then a small part of the Norwegian Environment Agency’s first Micronor project which is led by NIVA (Norwegian Institute for Water Research).

Since then, NILU has expanded to more measurements and more places, including Oslo and Trondheim. Now it is measured 12 months a year. In addition to funding from the Norwegian Environment Agency, NILU has financed some of the measurements by itself. The researchers have also received some funding from NAMC (North Atlantic Microplastic Centre).

“Through our investigations and analyses, we can follow the situation around microplastics in the air more broadly. It’s good to be able to measure continuously over a long period of time and at different times of the year,” says Herzke.

Car tires dominate

Almost all the air samples NILU analyses through Mikronor contain microplastics.

In urban areas, the air is dominated by local emissions from human activity. Over 80% of the total plastic mass in the air in cities consists of car tire particles. The researchers also see a clear increase during the transition to winter tires.

The findings at the more remote monitoring stations confirm that microplastics are transported over long distances through the atmosphere. The study concludes that atmospheric transport is a major way to spread environmental toxins to areas in nature.

“Everything that is transported by air is very fast. It moves much faster than particles in the ocean, for example. We are sometimes only talking about days before the particles have been transported many hundreds of miles,” says Herzke.

“The air knows no borders,” she adds.

At the Zeppelin Observatory in Svalbard, analyses of air masses have shown that high concentrations of microplastics originate from urban areas in Europe. This is confirmed by advanced dispersion models that show that Central and Southern Europe are the main sources of microplastics in the Arctic.

Monitored only in Norway

“Norway is the only country in the world that has permanent monitoring of microplastics in the air,” says Senior Scientist Natascha Schmidt. She is the project manager at NILU for the fourth Micronor project.

NILU uses two different methods to measure microplastic particles in the air:

  • Active air collectors suck air through a filter and measure microplastics floating in the air (suspended).
  • Passive collectors measure how much falls to the ground, including in precipitation (deposition).

You can read more about the samplers and methods in this article from 2023.

This dual dataset has allowed for a robust cross-validation of atmospheric load estimates.

“There was no such data from Scandinavia before. There are only a few places in the world where such double studies have been done,” says Herzke.

En rekke måleinstrumenter på et grønn bygning med blå himmel i bakgrunnen
NILU measures air quality and microplastics in the air at several locations in Norway. Here are the instruments at the measuring station in Sofienbergparken in Oslo. Norway is the only country in the world that has permanent monitoring of microplastics in the air.

Expanding existing models

Researchers at NILU have long been experts in modelling particle transport in air. For microplastics, both the equipment and the models must be developed and adapted. This is an ongoing work.

“All of the measuring equipment was made of plastic. We had to copy all the measuring equipment in materials that do not themselves emit microplastics to the air samples, such as steel and aluminium,” the researchers say.

It was important to make the new measuring equipment as similar as possible. Then the measurements of microplastics can be compared with other measurements NILU makes of pollution in air.

“Then this data can also be collected in the databases NILU has for air pollution,” Herzke explains.

How are microplastics transported from Europe to the Arctic?

The transport of microplastics from Europe to the Arctic takes place primarily through atmospheric air currents. They serve as a highly efficient transport route for solid particles.

Here are the main mechanisms of this transportation:

Long-distance transport (LRT): Microplastics are spread by what is known as atmospheric long-distance transport. Particles are transported here thousands of miles by weather and wind before they are deposited. Modelling shows that episodes with high concentrations of microplastics at the Zeppelin Observatory in Svalbard are directly linked to air masses originating from Central and Southern Europe.

Physical properties of the particles: Small plastic particles, often less than 20 μm, are more likely to maintain buoyancy in the air. The low density and aerodynamic shape of the particles means that they can remain in the atmosphere for days or weeks. Studies also show that fragments and fibers have a longer atmospheric lifetime than spherical particles.

Meteorological conditions: The transport is particularly efficient in the autumn and winter months. During this period, surface cooling in the Arctic and Norway leads to the formation of temperature inversions that suppress vertical mixing of the air masses. This extends the life of the particles in the air because they are exposed to less precipitation and photochemical degradation along the way.

Deposition mechanisms: Once the microplastics have reached the Arctic, they are removed from the atmosphere through two main processes:

  • Wet deposition, in which the particles are brought to the ground by rain or snow.
  • Dry deposition, which occurs via gravity, turbulence or Brownian motions.

(Brownian motions are irregular and incessant movements of very small particles in a solid, liquid, or gas, because the molecules in the substance bump into the particles.)

Important sources: Analyses show that road dust and tire wear particles (TWP) are among the polymers transported to the Arctic from European road and traffic networks. Other polymers found in the Arctic often come from the construction industry and packaging.

Overall, the study confirms that atmospheric transport is a critical source of microplastic pollution in the Arctic. The particles also act as carriers of pollutants to the region.