Study shows small nuclear war could damage ozone layer

New research indicates that a limited nuclear conflict between India and Pakistan could harm the ozone layer as severely as a larger war between the United States and Russia.

Climate models presented last month at the European Geosciences Union General Assembly in Vienna examined the effects of soot and other pollutants from hypothetical nuclear wars. Researchers modeled an India-Pakistan exchange releasing 5 million tonnes of soot and compared it to a US-Russia scenario releasing 16 million tonnes. Zhihong Zhuo of the University of Quebec in Montreal stated that even a small-scale nuclear war can produce far-reaching global side effects beyond the conflict regions. The study found that tropical air circulation would carry pollutants higher and spread them more widely, leading to greater ozone damage despite lower soot volumes. Ozone loss would be most pronounced over the poles, with ultraviolet radiation potentially rising by up to 30 percent in tropical regions. This would compound the cooling from a nuclear winter and delay recovery by harming plants and reducing agricultural yields worldwide. The findings build on earlier estimates that a billion people could face starvation from nuclear winter effects alone.

相关文章

A new study finds that heatwaves raise surface ozone levels across India, adding to cardiac deaths. It links about 830 extra deaths from heart disease and COPD to the 2024 heatwaves.

由 AI 报道

Israeli airstrikes on oil facilities in Tehran on 7 March released nearly 30,000 tonnes of sulphur dioxide, matching emissions from a small volcanic eruption. The plume spread across 300,000 square kilometres, reaching several Asian countries.

A new analysis projects that climate-driven heat could deprive people of significant sleep by century's end, with cascading effects on cognitive development and global earnings.

由 AI 报道

New research shows that two specific jet stream configurations are responsible for heatwaves lasting two weeks or more across western Europe. The findings come from analysis of climate model simulations and could improve forecasting of extended hot spells.

此网站使用 cookie

我们使用 cookie 进行分析以改进我们的网站。阅读我们的 隐私政策 以获取更多信息。
拒绝