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1. Mao , R ui.* , Yuanyuan Xu, Xuezhen Zhang, et al. (2024) Projected changes in wind erosion climatic erosivity over high mountain Asia: results from dynamical downscaling outputs. Asia-Pacific Journal of Atmospheric Sciences, https://doi.org/10.1007/s13143-024-00367-3
2. Shi, Cuicui, Rui. Mao* , and co-authors (2023) Increased dust transport from Patagonia to eastern Antarctica during 2000-2020. Global and Planetary Change, 104186.
3. Xingya Feng, Rui. Mao* , Dao-Yi Gong, et al. (2023) Two Typical Synoptic‑Scale Weather Patterns of Dust Events over the Tibetan Plateau. Asia-Pacifc Journal of Atmospheric Sciences, https://doi.org/10.1007/s13143-023-00325-5
4. 马小燕, 毛睿* , 冯星雅 (2022) 青藏高原高空的沙尘气溶胶. 地理教育, 2022, 1, 13-17
5. Mao, R ui * ., Daoyi Gong, Seong-Joong Kim, and co-authors (2021) Increasing spring dust storms in the future over the Taklimakan Desert, Northwest China: implications from changes in circulation pattern frequency in CMIP6, Environmental Research Communications, 3, 11, DOI10.1088/2515-7620/ac37ee
6. Zong, Qi, Rui Mao *, Dao-Yi Gong, et al. (2021) Changes in Dust Activity in Spring over East Asia under a Global Warming Scenario, Asia-Pacific Journal of Atmospheric Sciences, Jan 2021, DOI10.1007/s13143-021-00224-7
7. Sun, Yijie, Rui Mao *, Dao-Yi Gong, et al. (2021) Decadal Shift of the Influence of Arctic Oscillation on Dust Weather Frequency in Spring over the Middle East during 1974-2019. International Journal of Climatology, 42(4), 2440-2454.
8. Zhang, Feng., Jing’ai Wang*, Xueyong Zou, Rui. Mao* , et al. (2021) Changes in wind erosion climatic erosivity in northern China from 1981-2016: a comparison of two climate/weather factors of wind erosion models. Climate Research, 2021, 83, 133-146
9. Zhang, Feng, Jing’ai Wang, Xueyong Zou, Rui Mao* , et al. (2020) Wind Erosion Climate Change in Northern China During 1981–2016. International Journal of Disaster Risk Science, 11, 484–496
10. Feng, Xinya, Rui. Mao * , Dao-Yi Gong, and co-authors (2020) Increased dust aerosols in the high troposphere over the Tibetan Plateau from 1990s to 2000s, Journal of Geophysical Research-Atmospheres, https://doi.org/10.1029/2020JD032807.
11. Zhang, Feng, Jing’ai Wang, Xueyong Zou, Rui Mao * , and co-authors (2020), Wind erosion climate change in northern China during1981-2016, International Journal of Disaster Risk Science, 11, 4, 484-496.
12. Mao, Rui , Zhiyuan Hu, Chun Zhao, and co-authors (2019) The source contributions to the dust over the Tibetan Plateau: A modelling analysis, Atmospheric Environment, 214, 116859.
13. Mao, Rui , Chang-Hoi. Ho, Song Feng, and co-authors (2013) The influence of vegetation variation on Northeast Asian dust activity. Asia-Pacific Journal of Atmospheric Sciences, 49(1), 87-94.
14. Mao, Rui , Dao-Yi Gong, Yaping Shao, and Guangjian Wu (2013) Numerical Analysis for the contribution of the Tibetan Plateau to the dust aerosol in the atmosphere over the East Asia. Science in China Series D, 56, 301-310.
15. Mao, Rui , Chang-Hoi Ho, Yaping Shao, and co-authors (2011) Possible influence of the Arctic Oscillation on Northeast Asian Dust. Atmospheric Environment, doi:10.1016/j.atmosenv.2010.10.020.
16. Mao, Rui , Dao-Yi Gong, Jingdong Bao, and Yida Fan (2011) Possible influence of Arctic Oscillation on dust storm frequency in North China. Journal of Geographical Sciences, 21, 207-218.
1. Wang, Yufei, Rui Mao , co-authors. (2024) Increasing contribution of surface thermal forcing to near-surface small wind frequency in Northern China during 1984-2016. In Preparation.
2. 马绎皓, 毛睿*, 杨阳, 等(2023) ERA5 再分析资料对甘肃省近地面风速气候特征及变化趋势再现能力的评估. 高原气象, 42(1):210-220
3. Ma, Ying, R. Mao *, Sheng-hui Feng, Dao-Yi Gong, Seong-Joong Kim (2017)Does the recent warming hiatus exist over Northern Asia for winter wind chill temperature? International Journal of Climatology, 37(7), 3138-3144
4. Mao, R ui * , Dao-Yi Gong, Tianbao Zhao, and co-authors (2015) Trends in the Frequency of High Relative Humidity over China: 1979-2012, Journal of Climate, 28(24), 9816-9837.
5. Mao, Rui , Dao-Yi Gong, Jing Yang, and Jingdong Bao (2011) Linkage between the Arctic Oscillation and extreme precipitation over central-southern China. Climate Research, doi: 10.3354/cr01041.
1. Cheng, X., T. Lan, R. Mao * , D.-Y. Gong, H. Han, and X. Liu (2020), Reducing Air Pollution Increases Local Diurnal Temperature Range: A Case Study of Lanzhou, China, Meteorological Applications, DOI: 10.1002/met.1939
2. Hu, Yang, Xue-Zhen. Zhang, Rui Mao* , and co-authors (2015) Modeled responses of summer climate to realistic land use/cover changes from the 1980s to the 2000s over eastern China, Journal of Geophysical Research-Atmospheres, 120(1), 167-179.
1. Yuanyuan Xu, Rui Mao * , Seong-Joong Kim*, Minghu Ding*, Dao-Yi Gong (2024) Impact of Katabatic Wind Event Variability on Sea Ice Dynamics in Terra Nova Bay Polynya, Antarctica. Under Review.
2. Mao, R ui, Seong-Joong Kim, Dao-Yi Gong, et al.(2021) Increasing Difference in Interannual Summertime Surface Air Temperature Between Interior East Antarctica and the Antarctic Peninsula Under Future Climate Scenarios, Geophysical Research Letters, 2021, DOI10.1029/2020GL092031
3. Mao, Rui , Dao-Yi Gong, Jing Yang, and co-authors (2013) Is there a linkage between the tropical cyclone activity in the southern Indian Ocean and the Antarctic Oscillation?, Journal of Geophysical Research: Atmospheres, 118, doi:10.1002/jgrd.50666