Kang Shichang, Zhang Qianggong, Qian Yun, Ji Zhenming, Li Chaoliu, Cong Zhiyuan, Zhang Yulan, Guo Junming, Du Wentao, Huang Jie, You Qinglong, Panday Arnico K, Rupakheti Maheswar, Chen Deliang, Gustafsson Örjan, Thiemens Mark H, Qin Dahe
State Key Laboratory of Cryosphere Science, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences (CAS), Lanzhou 730000, China.
CAS Center for Excellence in Tibetan Plateau Earth Sciences, Beijing 100101, China.
Natl Sci Rev. 2019 Jul;6(4):796-809. doi: 10.1093/nsr/nwz031. Epub 2019 Mar 6.
The Tibetan Plateau and its surroundings are known as the Third Pole (TP). This region is noted for its high rates of glacier melt and the associated hydrological shifts that affect water supplies in Asia. Atmospheric pollutants contribute to climatic and cryospheric changes through their effects on solar radiation and the albedos of snow and ice surfaces; moreover, the behavior and fates within the cryosphere and environmental impacts of environmental pollutants are topics of increasing concern. In this review, we introduce a coordinated monitoring and research framework and network to link atmospheric pollution and cryospheric changes (APCC) within the TP region. We then provide an up-to-date summary of progress and achievements related to the APCC research framework, including aspects of atmospheric pollution's composition and concentration, spatial and temporal variations, trans-boundary transport pathways and mechanisms, and effects on the warming of atmosphere and changing in Indian monsoon, as well as melting of glacier and snow cover. We highlight that exogenous air pollutants can enter into the TP's environments and cause great impacts on regional climatic and environmental changes. At last, we propose future research priorities and map out an extended program at the global scale. The ongoing monitoring activities and research facilitate comprehensive studies of atmosphere-cryosphere interactions, represent one of China's key research expeditions to the TP and the polar regions and contribute to the global perspective of earth system science.
青藏高原及其周边地区被称为“第三极”(TP)。该地区以冰川融化速度高以及相关的水文变化而闻名,这些变化影响着亚洲的水资源供应。大气污染物通过对太阳辐射以及冰雪表面反照率的影响,导致气候和冰冻圈变化;此外,环境污染物在冰冻圈内的行为、归宿及其环境影响也日益受到关注。在本综述中,我们介绍了一个协调的监测和研究框架及网络,以将青藏高原地区的大气污染与冰冻圈变化(APCC)联系起来。然后,我们提供了与APCC研究框架相关的最新进展和成果总结,包括大气污染的成分和浓度、时空变化、跨界传输途径和机制,以及对大气变暖、印度季风变化、冰川融化和积雪覆盖的影响。我们强调,外来空气污染物能够进入青藏高原的环境,并对区域气候和环境变化产生重大影响。最后,我们提出了未来的研究重点,并规划了一个全球尺度的扩展计划。正在进行的监测活动和研究有助于对大气-冰冻圈相互作用进行全面研究,是中国对青藏高原和极地地区的重点研究考察之一,也为地球系统科学的全球视角做出了贡献。