Early in the morning of April 26, 1986, the fourth reactor exploded at the Chernobyl nuclear power plant in Ukraine. 34 years later, Chernobyl radioactivity is still circulating. The long-lived radionuclides released by the accident mean the disaster continues decades on.
The wildfires started on April 3rd, due to abnormally hot, dry and windy weather. They are now the biggest fires ever recorded in the Chernobyl exclusion zone. What is one of the largest wildlife areas in Europe will take years to recover.

As I am writing this, three weeks after the start of the fires, at least three of the largest fires continue burning. One of them is located close to the site of the old nuclear power plant, only 4 kilometers away from the sarcophagus. Hundreds of ill-equipped firefighters and foresters are currently trying to get the fires in Northern Ukraine under control.
The wind has carried some of the smoke over more populated areas. On the 16th of April, plumes of smoke caused smog in Kyiv, 250 kilometers away and although they did not exceed norms, higher levels of radioactivity than usual were detected. The smoke and ash have also crossed borders: the Norwegian Radiation and Nuclear Safety Authority
registered a small increase of caesium-137 concentrations in the air in Norway.
Increased activity of Caesium-137 and other radionuclides in the air can lead to a rise in levels of cancer
. Whoever can smell the fire could also inhale these radioactive substances.
So yes, potentially dangerous radionuclides are travelling with the fire haze. This is due to the fact that since 1986, the forests have accumulated radioactivity, mostly concentrated in the wood and upper soil layers. This is why, in the contaminated areas, the village dwellers living nearby are deprived of their right to use the forest for the next 300 years. The “exclusion zone” surrounding the Chernobyl nuclear power plant is still – 34 years later – heavily contaminated with caesium-137, strontium-90, americium-241, plutonium-238 and plutonium-239. Plutonium particles are the most toxic ones: they are estimated to be around 250 times more harmful than caesium-137.

We know from previous (smaller) fires that happened in the area in 2015 that scientists found
a release of 10.9 TBq caesium-137, 1.5 TBq of strontium-90, 7.8 GBq of plutonium-238 , 6.3 GBq of plutonium-239, 9.4 GBq of plutonium-239 and 29.7 GBq americium-241. It is clear that the numbers will be higher this year.
Close to the fires, firefighters and local people are exposed to risks from both smoke inhalation and radiation. Cities like Kyiv are exposed to the health impact of inhaling smoke in the short term and in the longer term, risk internal irradiation through contaminated berries, mushrooms and milk bought on the local markets. No-one is immune from radioactive products getting into their homes.
The consequences of Chernobyl are still here. People are still at risk; exposed and fighting on the frontlines
. Forest fires in contaminated areas are a big problem for Ukraine, Belarus, and Russia where 5 million people still live in contaminated areas according to official data. These fires happen almost every year.

These forest fires are burdening an emergency ministry already in the midst of a health crisis. This goes to show that other emergencies can be exacerbated by nuclear-related incidents – a situation that we have little or no control over.
Nuclear-related risks themselves are exacerbated by a lack of transparency: at the beginning of the fires, the first official accounts minimized the areas on fire by about 600 times. Secrecy was one of the reasons why the Chernobyl disaster was so severe in 1986: it was later confirmed in court that even the director of the Chernobyl power plant was not made aware of a disaster at the Leningrad nuclear power plant in 1975
that would have given clues to what happened in reactor 4.
Chernobyl will continue to pose a threat for many generations to come.
Rashid Alimov, is a nuclear campaigner at Greenpeace Russia.
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