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Environmental effects of ozone depletion UV radiation and interactions with climate change: UNEP Environmental Effects Assessment Panel update 2017.

机译:臭氧消耗紫外线辐射以及与气候变化的相互作用对环境的影响:环境署环境影响评估小组2017年更新。

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摘要

The Environmental Effects Assessment Panel (EEAP) is one of three Panels of experts that inform the Parties to the Montreal Protocol. The EEAP focuses on the effects of UV radiation on human health, terrestrial and aquatic ecosystems, air quality, and materials, as well as on the interactive effects of UV radiation and global climate change. When considering the effects of climate change, it has become clear that processes resulting in changes in stratospheric ozone are more complex than previously held. Because of the Montreal Protocol, there are now indications of the beginnings of a recovery of stratospheric ozone, although the time required to reach levels like those before the 1960s is still uncertain, particularly as the effects of stratospheric ozone on climate change and vice versa, are not yet fully understood. Some regions will likely receive enhanced levels of UV radiation, while other areas will likely experience a reduction in UV radiation as ozone- and climate-driven changes affect the amounts of UV radiation reaching the Earth’s surface. Like the other Panels, the EEAP produces detailed Quadrennial Reports every four years; the most recent was published as a series of seven papers in 2015 (Photochem. Photobiol. Sci., 2015, 14, 1–184). In the years in between, the EEAP produces less detailed and shorter Update Reports of recent and relevant scientific findings. The most recent of these was for 2016 (Photochem. Photobiol. Sci., 2017, 16, 107–145). The present 2017 Update Report assesses some of the highlights and new insights about the interactive nature of the direct and indirect effects of UV radiation, atmospheric processes, and climate change. A full 2018 Quadrennial Assessment, will be made available in 2018/2019.
机译:环境影响评估小组(EEAP)是向《蒙特利尔议定书》各缔约方通报情况的三个专家小组之一。 EEAP的重点是紫外线辐射对人类健康,陆地和水生生态系统,空气质量和材料的影响,以及紫外线辐射与全球气候变化的相互作用。当考虑到气候变化的影响时,很明显导致平流层臭氧变化的过程比以前的过程更为复杂。根据《蒙特利尔议定书》,现在有迹象表明平流层臭氧开始恢复,尽管达到1960年代之前的水平所需的时间仍不确定,尤其是平流层臭氧对气候变化的影响,反之亦然,尚未完全了解。由于臭氧和气候驱动的变化会影响到达地球表面的紫外线量,因此某些地区的紫外线辐射量可能会增加,而其他地区的紫外线辐射量可能会减少。与其他小组一样,EEAP每四年制作一次详细的四年期报告。 2015年最新出版的系列论文共七篇(Photochem。Photobiol。Sci。,2015,14,1-184)。在这几年之间,EEAP会针对最新的和相关的科学发现生成较不详细和较短的更新报告。其中最近的是2016年(Photochem。Photobiol。Sci。,2017,16,107–145)。当前的《 2017年更新报告》评估了有关紫外线辐射,大气过程和气候变化的直接和间接影响的互动性质的一些亮点和新见解。将于2018/2019年提供完整的2018年四年期评估。

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