Faculty and Staff
WU Xing
Title:
Highest Education: Ph.D
Office: 18 Shuangqing Road, Haidian District, Beijing, China
Phone: 010-62916842
Zip Code: 100085
Fax: 010-62849102
Email: xingwu@rcees.ac.cn
Education and Appointments:

Education:
2000.9—2004.7: Beijing Forestry University, Bachelor of Science
2004.9—2010.7: School of Environment, Beijing Normal University, Doctor of Engineering
2007.9—2010.3: Institute of Meteorology and Climate Research-Atmospheric Environmental Research, Karlsruhe Institute of Technology, Joint Ph.D.
2012.9—2017.1: University of Freiburg, Doctor of Engineering

Career:
2010.7—2014.12: State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-environmental Sciences, Chinese Academy of Sciences, Assistant Professor
2013.10—2014.1: Finnish Environment Institute (SYKE),Visiting Scholar
2014.5—2015.5: Institute of Meteorology and Climate Research-Atmospheric Environmental Research, Karlsruhe Institute of Technology, Post-Doctor
Since 2015.1, State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-environmental Sciences, Chinese Academy of Sciences, Associate Professor

Research Interest:

Impact of human activities and climate change (extreme events) on carbon and nitrogen cycling and GHG gas exchanges

Selected Publications:

1.Wu X, Liu H, Fu B, Wang Q, Xu M, Wang H, Yang F, Liu G. Effects of land-use change and fertilization on N2O and NO fluxes, the abundance of nitrifying and denitrifying microbial communities in a hilly red soil region of southern China. Applied Soil Ecology, 2017, 120, 111-120.
2.Wu X, Liu H, Zheng X, Lu F, Wang S, Li Z, Liu G, Fu B. Responses of CH4 and N2O fluxes to land-use conversion and fertilization in a typical red soil region of southern China. Scientific Reports, 2017, 7: 10571, DOI:10.1038/s41598-017-10806-z.
3.Liu H, Wu X*, Li Z, Wang Q, Liu D, Liu G. Responses of soil methanogens, methanotrophs, and methane fluxes to land-use conversion and fertilization in a hilly red soil region of southern China. Environmental Science and Pollution Research, 2017, 24, 8731-8743.
4.Liu H, Wu X*, Wang Q, Wang S, Liu D, Liu G. Responses of soil ammonia oxidation and ammonia-oxidizing communities to land-use conversion and fertilization in an acidic red soil of southern China. European Journal of Soil Biology, 2017, 80, 110-120.
5.Liu D, Wu X*, Shi S, Liu H, Liu G. A hollow bacterial diversity pattern with elevation in Wolong Nature Reserve, Western Sichuan Plateau. Journal of Soils and Sediments, 2016, doi: 10.1007/s11368-016-1422-5.
6.Liu H, Liu G, Li Y, Wu X*, Liu D, Dai X, Xu M, Yang F. Effects of land use conversion and fertilization on CH4 and N2O fluxes from typical hilly red soil. Environmental Science and Pollution Research, 2016, 23, 20269-20280.
7.Wu X, Akuj?rvi A, Lu N, Liski J, Liu G, Wang Y, Holmberg M, Li F, Zeng Y, Fu B. Dynamics of soil organic carbon stock in a typical catchment of the Loess Plateau: comparison of model simulations with measurements. Landscape Ecology, 2015, 30:381-397.
8.Wu X, Li Z, Fu B, Zhou W, Liu H, Liu G. Restoration of ecosystem carbon and nitrogen storage and microbial biomass after grazing exclusion in semi-arid grasslands of Inner Mongolia. Ecological Engineering, 2014, 73, 395-403.
9.Wu X, Brüggemann N, Butterbach-Bahl K, Fu B, Liu G. Snow cover and soil moisture controls of freeze–thaw-related soil gas fluxes from a typical semi-arid grassland soil: a laboratory experiment. Biology and Fertility of soils, 2014, 50, 295-306.
10.Wu X, Li Z, Fu B, Wang D, Liu H, Liu G. Effects of grazing exclusion on soil carbon and nitrogen storage in semi-arid grassland in Inner Mongolia, China. Chinese Geographical Science, 2014, 24, 479-487.
11.Wu X, Liu G, Butterbach-Bahl K, Fu B, Zheng X, Brüggemann N. Effects of land cover and soil properties on denitrification potential in soils of two semi-arid grasslands in Inner Mongolia, China. Journal of Arid Environments, 2013, 92, 98-101.
12.Wu X, Brüggemann N, Gasche R, Papen H, Willibald G, Butterbach-Bahl K. Long-term effects of clear-cutting and selective cutting on soil methane fluxes in a temperate spruce forest in southern Germany. Environmental Pollution, 2011, 159: 2467-2475.
13.Wu X, Brüggemann N, Gasche R, Shen Z, Wolf B, Butterbach-Bahl K. Environmental controls over soil-atmosphere exchange of N2O, NO and CO2 in a temperate Norway spruce forest. Global Biogeochemical Cycles, 2010, doi:10.1029/2009GB003616.
14.Wu X, Yao Z, Brüggemann N, Shen Z, Wolf B, Dannenmann M, Zheng X, Butterbach-Bahl K. Effect of soil moisture and temperature on CO2 and CH4 soil-atmosphere exchange of various land use/cover types in a semi-arid grassland in Inner Mongolia, China. Soil Biology & Biochemistry, 2010, 42: 773-787.
15.Wu X, Shen Z, Liu R, Ding X. Land use/cover dynamics in response to changes in environmental and socio-political forces in the upper reaches of Yangtze River, China. Sensors, 2008, 8, 8104-8122.
16.Yao Z, Wu X, Wolf B, Dannenmann M, Butterbach-Bahl K, Brüggemann N, Chen W, Zheng X. Soil-atmosphere exchange potential of NO and N2O in different land use types of Inner Mongolia, as affected by soil temperature, soil moisture, freeze-thaw and drying-wetting events. Journal of Geophysical Research, 2010, doi:10.1029/2009JD013528.
17.Liu GH, Wu X. Carbon storage and sequestration of national key ecological restoration programs in China: an introduction to special issue. Chinese Geographical Science, 2014, 24, 393-396.
18.Lu N, Akujarvi A, Wu X, Liski J, Wen Z, Holmberg M, Feng X, Zeng Y, Fu B. Changes in soil carbon stock predicted by a process-based soil carbon model (Yasso07) in the Yanhe watershed of the Loess Plateau. Landscape Ecology, 2015, 30, 399-413.
19.Li Z, Liu G, Wu X, Wang X. Tree-ring-based temperature reconstruction for the Wolong Nautre Reserve, western Sichuan Plateau of China. International Journal of Climatology, 2015, 35, 3296-3307.
20. An W, Li Z, Wang S, Wu X, Lu Y, Liu G, Fu B. Exploring the effects of the “Grain for Green” program on the differences in soil water in the semi-arid Loess Plateau of China. Ecological Engineering, 2017, 107, 144-151.
21. Wang C, Wang S, Fu B, Li Z, Wu X, Tang Q. Precipitation gradient determines the tradeoff between soil moisture and soil organic carbon, total nitrogen, and species richness in the Loess Plateau, China. Science of the Total Environment, 2017, 575, 1538-1545.
22. Liang H, Xue Y, Li Z, Wang S, Wu X, Gao G, Liu G, Fu B. Soil moisture decline following the plantation of Robinia pseudoacacia forest: Evidence from the Loess Plateau. Forest Ecology and Management, 2018, 412, 62-69.
23. Liu J, Gao G, Wang S, Jiao L, Wu X, Fu B. The effects of vegetation on runoff and soil loss: Multidimensional structure analysis and scale characteristics. Journal of Geographic Science, 2018, 28, 59-78.
24.Liu M, Liu G, Wu X, Wang H, Chen L. Vegetation traits and soil properties in response to utilization patterns of grassland in Hulun Buir city, Inner Mongolia, China. Chinese Geographical Science, 2014, 24, 471-478.
25.Shi S, Li Z, Wang H, Wu X, Wang S, Wang X, Liu G, Fu B. Comparative analysis of annual rings of perennial forbs in the Loess Plateau, China. Dendrochronologia, 2016, 38, 82-89.
26. Lu F, Hu H, Sun W, Zhu J, Liu G, Zhou W, Zhang Q, Shi P, Liu X, Wu X, et al. Effects of national ecological restoration projects on carbon sequestration in China from 2001 to 2010. PNAS, 2018, 115, 4039-4044.
27.伍星, 刘慧峰, 张令能, 傅伯杰, 李宗善, 汪庆兵, 刘国华. 雪被和土壤水分对典型半干旱草原土壤冻融过程中CO2和N2O排放的影响. 生态学报, 2014, 34(19): 5484-5493.
28.伍星, 沈珍瑶. 冻融作用对土壤温室气体产生与排放的影响. 生态学杂志, 2010, 29(7):1432-1439.
29.伍星, 沈珍瑶, 刘瑞民, 宫永伟. 土地利用变化对长江上游生态系统服务价值的影响. 农业工程学报, 2009, 25(8):236-241.
30.伍星, 沈珍瑶, 刘瑞民. 长江上游土地利用/覆被变化及区域分异研究. 应用基础与工程科学学报, 2008, 16(6): 819-829.
31.伍星, 沈珍瑶. 长江上游地区土地利用/覆被和景观格局变化分析. 农业工程学报, 2007, 23(10): 86-92.
32.伍星, 沈珍瑶, 刘瑞民. 长江上游土地利用/覆被变化特征及其驱动力分析. 北京师范大学学报(自然科学版), 2007, 43 (4): 461-465.

Supported Projects:

1. National Natural Science Foundation of China: Interaction effects of soil freeze-thaw pattern and grazing on the key processes of soil nitrogen cycling and the underlining mechanisms in a semi-arid grassland. 2018-2021
2. National Natural Science Foundation of China: Effects of typical land use conversion on the soil-atmosphere exchange of greenhouse gases in the hilly red soil region of Southern China. 2015-2018
3. The Science and Technology Service Network Initiative Project of Chinese Academy of Science, 2018-2019
4. National Key Research and Development Program of China (2016YFC0502102), 2016-2020
5. National Natural Science Foundation of China: Effects of freeze-thaw and snow cover on the soil-atmosphere exchange of greenhouse gases in a semi-arid grassland. 2012-2014
6. National Program on Key Basic Research Project (973 Program), 2012-2016
7. Strategic Priority Programme of the Chinese Academy of Sciences: Effects of national ecological restoration projects on carbon sequestration in China. 2011-2015

Honors:

Member of Youth Innovation Promotion Association of CAS

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