温室气体
环境科学
空气污染
自然资源经济学
气候变化
期限(时间)
全球变暖
大都市区
污染
二氧化碳
环境保护
地理
经济
生态学
量子力学
生物
物理
考古
作者
Drew Shindell,G. Faluvegi,Karl M. Seltzer,Cary Shindell
标识
DOI:10.1038/s41558-018-0108-y
摘要
Societal risks increase as Earth warms, and increase further for emissions trajectories accepting relatively high levels of near-term emissions while assuming future negative emissions will compensate, even if they lead to identical warming as trajectories with reduced near-term emissions 1 . Accelerating carbon dioxide (CO2) emissions reductions, including as a substitute for negative emissions, hence reduces long-term risks but requires dramatic near-term societal transformations 2 . A major barrier to emissions reductions is the difficulty of reconciling immediate, localized costs with global, long-term benefits3,4. However, 2 °C trajectories not relying on negative emissions or 1.5 °C trajectories require elimination of most fossil-fuel-related emissions. This generally reduces co-emissions that cause ambient air pollution, resulting in near-term, localized health benefits. We therefore examine the human health benefits of increasing 21st-century CO2 reductions by 180 GtC, an amount that would shift a ‘standard’ 2 °C scenario to 1.5 °C or could achieve 2 °C without negative emissions. The decreased air pollution leads to 153 ± 43 million fewer premature deaths worldwide, with ~40% occurring during the next 40 years, and minimal climate disbenefits. More than a million premature deaths would be prevented in many metropolitan areas in Asia and Africa, and >200,000 in individual urban areas on every inhabited continent except Australia. Emission mitigation is required to achieve global climate ambitions but can also offer local benefits. Reduction in air pollution because of low-carbon emission trajectories is shown to result in approximately 150 million fewer premature deaths worldwide.
科研通智能强力驱动
Strongly Powered by AbleSci AI