An ShaoShan

Sourse:   Date:2019-01-17

  

Personal information

Current position

Professor

University

Northwest A&F University

Email

shan@ms.iswc.ac.cn

Mobile

Tel: +86-29-87012871; Fax: +86-29-87012210

Educational background

From

To

University/Institution

Degree and Major

2008

2009

Visiting scholar

Plant and soil Lab. University of natural resources and life sciences, Vienna

2000

2004

Northwestern A&F University, College of Resources and Environment

Ph.D.

Major in soil and ecology science

1997

2000

Northwestern A&F University, College of Resources and Environment

M.F.S.

Major in soil science

1990

1994

Northwestern Agriculture University, Department of Resources and Environment

B.S.

Major in soil science

Research projects

From

To

Title of Project

Position

Project Description

2019

2023

Pan-Third Pole Environment Study for a Green Silk Road (Pan-TPE)

Main preside

Strategic science and technology project of the Chinese academy of sciences.

2019-2023. PI. ¥1460,000

2017

2020

Root productivity and its contribution to soil organic carbon sequestration during the revegetation on the hilly-gully region in Southern Ningxia

Main preside

Natural Science Foundation of China (NSFC)

2017-2020. PI. ¥660,000

2016

2020

Evaluation and regulation of soil service function in Loess Plateau

Main preside

Special-Funds of Scientific Research Programs of State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau.

2016-2020. PI. ¥1900,000

2016

2020

Analysis of soil organic carbon sequestration and its sources due to vegetation restoration in Loess Plateau

Main preside

Strategic Priority Research Program of Chinese Academy of Sciences.

2016-2020. PI. ¥1000,000

2015

2019

Integration and demonstration in fragile ecosystem restoration in ningnan mountain, China

Main preside

Key Projects in the National Science & Technology Pillar Program during the Twelfth Five-year Plan Period.

2015-2019. PI. ¥300,000

2012

2016

Effects of litters on soil microbial diversity and carbon sequestration in loess hilly regions of China

Main preside

Natural Science Foundation of China (NSFC)

2012-2016. PI. ¥700,000

Publications

Year

Publication

2018

Liu Dong, Huang Yimei, AnShaohan, Sun Haiying, Bhople Parag, Chen Zhiwei. (2018). Soil physicochemical and microbial characteristics of contrasting land-use types along soil depth gradients. Catena, 162,345-353.

2018

Liu Dong, Huang Yimei, AnShaohan. (2018). The restoration age of robiniapseudoacacia, plantation impacts soil microbial biomass and microbial community structure in the loess plateau. Catena, 165, 192–200.

2018

Liu Dong, Yang Yang, An Shaoshan, Wang Hong l, Wang Ying. (2018). The biogeographical distribution of soil bacterial communities in the Loess Plateau as revealed by high-throughput sequencing. Frontiers in Microbiology, doi: 10.3389/fmicb.2018.02456.

2018

Yang Yang, Dou Yanxing, AnShaoshan. (2018). Testing association between soil bacterial diversity and soil carbon storage on the loess plateau. Science of the Total Environment, 626, 48.

2018

Yang Yang, Dou Yanxing, AnShaoshan, Zhu Zhaolong. (2018). Abiotic and biotic factors modulate plant biomass and root/shoot (r/s) ratios in grassland on the loess plateau, china. Science of the Total Environment, 636, 621-631.

2018

Bai Xuejuan, Zeng Quanchao, Abbas Fakher, Dong Yanghong, AnShaoshan. (2018): Characteristics of soil enzyme activities and microbial biomass carbon and nitrogen under different vegetation zones on the Loess Plateau, China, Arid Land Research and Management, DOI: 10.1080/15324982.2018.1501621.

2017

Yang Y, Dou Y X, An S S. Environmental driving factors affecting plant biomass in natural grassland in the Loess Plateau, China. Ecological Indicators. 2017, 82: 250–259.

2017

Yang Y, Dou Y X, An S S. Environmental driving factors affecting plant biomass in natural grassland in the Loess Plateau, China. Ecological Indicators. 2017, 82: 250–259.

2017

Yang Y, Dou Y X, Huang Y M, An S S. Links between Soil Fungal Diversity and Plant and Soil Properties on the Loess Plateau. Frontiers in Microbiology. 2017, 07: 1-13.

2017

Zeng Q C, An S, Liu Y. Soil bacterial community response to vegetation succession after fencing in the grassland of China. Science of the Total Environment, 2017, 609: 2-10.

2016

Quanchao Zeng, Xin Li ,Yanghong Dong, Shaoshan An, Frédéric Darboux. Soil and plant components ecological stoichiometry in four steppe communities in the Loess Plateau of China. Catena 147 (2016) 481–488.

2015

Cheng M, Xiang Y, Xue Z, et al. Soil aggregation and intra-aggregate carbon fractions in relation to vegetation succession on the Loess Plateau, China. Catena, 2015, 125: 135-145

2015

Cheng M, Xue Z, An S. Response of soil chemical and microbial properties to vegetation restoration on the Loess Plateau, China. Nature Environment and Pollution Technology, 2015, 14(1):1-8

2015

Cheng M, Xue Z, Xiang Y, et al. Soil organic carbon sequestration in relation to revegetation on the Loess Plateau, China. Plant and Soil, 2015, 397(1):31-42.

2014

Xue Z, Fang X, Wang W, et al. Soil organic carbon distribution under different land uses and landscape positions in two typical watersheds of the Loess Plateau, China. Nature Environment & Pollution Technology, 2014, 13(4):396-700

2014

Xue Z J, An S S, Cheng M, et al. Plant functional traits and soil microbial biomass in different vegetation zones on the Loess Plateau. Journal of Plant Interactions, 2014, 9(1): 889-900

2013

An Shao-Shan, Frédéric Darboux, Man Cheng. Revegetation as an efficient means of increasing soil aggregate stability on the Loess Plateau (China). Geoderma, 2013, 209–210: 75–85.

2013

An Shao-Shan, Cheng Yi, Huang Yi-Mei, Liu Dong, Acosta-Martínez Veronica. Effects of revegetation on soil microbial biomass and activities of nutrient cycling enzymes on the Loess Plateau in China. Restoration Ecology, 2013, 21: 600–607.

2013

XueZhijing, Cheng Man, AnShaoshan *. Soil nitrogen distributions for different land uses and landscape positions in a small watershed on Loess Plateau, China. Ecological Engineering, 2013, 60:204– 213.