毛洁菲,女,出生于1988年,浙江开化人,主要从事干旱区土壤改良与修复研究。2016年6月获得荷兰乌特勒支大学理学博士学位,在浙江大学、德国图宾根大学、德国亥姆霍兹环境研究中心等单位从事相关学习和研究工作。入选中国科学院人才计划、新疆维吾尔自治区“天山英才”和高层次人才计划。
教育经历:
2005.09-2009.06,浙江大学,环境科学专业,理学学士
2009.10-2011.10,德国图宾根大学,应用环境地球科学专业,理学硕士
2012.02-2016.06,荷兰乌特勒支大学,环境科学专业/有机地球化学专业,理学博士
工作经历:
2009.12-2011.09,德国图宾根大学,科研助理,环境矿物化学方向
2010.08,德国亥姆霍兹环境研究中心,科研助理,有机污染修复方向
2016.10-2018.12,浙江大学,博士后(国际交流计划引进项目),生物炭环境过程研究方向
2019.01-至今,中国科学院新疆生态与地理研究所,副研究员,环境地球化学方向
2022.12-至今,新疆自然资源学会,理事
2021.05-至今,新疆草原学会,理事
土壤疏水性机制及演变;干旱区盐碱土改良;土壤微塑料污染过程与修复;生物标志物溯源及应用
(1)国家自然科学基金面上项目,土壤中植物来源的特异生物标志物与草地退化的关联性,2021/01-2024/12,58万元,主持
(2)科技部第三次新疆综合科学考察项目,2020/11-2023/10,354万元,课题主持
(3)新疆维吾尔自治区重点研发任务专项,盐碱耕地土壤物理化学调控关键技术及产品研发,2023/12-2026/12,85万元,子课题主持
(4)中国科学院人才计划,2021/01-2023/12,280万元,主持
(5)新疆维吾尔自治区“天山英才”科技创新青年拔尖人才项目,2024/02-2027/03,120万元主持
(6)新疆维吾尔自治区高层次人才计划,2020/01-2022/12,40万元,主持
(7)国家自然科学基金青年基金项目,土壤疏水性演变对有机污染物界面行为的影响及耦合机制,2018/01-2020/12,24万元,主持
(8)中国科学院王宽诚率先人才计划卢嘉锡国际团队,2021/01-2023/12,300万元,参与
(9)国家重点研发计划“纳米科技”重点专项,2017/07-2022/06,2839万,参与
(1)Mao, J., Li, Y., Zhang, J., Zhang, K., Ma, X., Wang, G., Fan, L*. Organic carbon and silt determining subcritical water repellency and field capacity of soils in arid and semi-arid region. Frontiers in Environmental Science, 2022, 10:1031237.
(2)Mao, J., Zhang, K., Chen, B. Linking hydrophobicity of biochar to the water repellency and water holding capacity of biochar-amended soil. Environmental Pollution, 2019, 253, 779-789.
(3)Mao, J., Chen, B.*, Nierop, K.G.J., Dekker, S.C., Dekker, L.W. Understanding the mechanisms of soil water repellency from nanoscale to ecosystem scale: A review. Journal of Soil and Sediments, 2019, 19, 171-185
(4)Mao, J.*, Nierop, K. G. J., Rietkerk, M., Sinninghe Damsté, J.S., Dekker, S.C. The influence of vegetation on soil water repellency-markers and soil hydrophobicity. Science of The Total Environment, 2016, 566-567, 608-620.
(5)Mao, J.*, Nierop, K. G. J., Rietkerk, M., Dekker, S. C. Predicting soil water repellency using hydrophobic organic compounds and their vegetation origin. SOIL, 2015, 1, 411-425.
(6)Mao, J.*, Nierop, K. G. J., Sinninghe Damsté, J. S., Dekker, S. C. Roots induce stronger soil water repellency than leaf waxes. Geoderma, 2014, 232-234, 328-340
(7)Siteur, K.#, Mao, J.#, Nierop, K.G.J., Dekker, S.C., Rietkerk, M., Eppinga, M.B. Soil water repellency: a potential driver of vegetation dynamics in coastal dunes. Ecosystems, 2016, 19, 1210-1224.
(8)Fan, L., Mekrovar, O., Li, Y., Li, K., Ma, X., Mao, J.*. Effect of nutrient addition on the productivity and species richness of grassland along with an elevational gradient in Tajikistan. Frontiers in Plant Science. 2021, 12, 1–9.
(9)Wang, G., Li, Y.* Fan, L., Ma, X., Mao, J*. The response of soil organic carbon content of grasslands in Northern Xinjiang to future climate change. Physics and Chemistry of the Earth, 2024, 134, 10357.
(10)Kang, L., Jia, Y., Wu, Y., Liu, H., Zhao, D., Ju, Y., Pan, C.* Mao, J* Selenium nanoparticle and melatonin treatments improve melon seedling growth by regulating carbohydrate and polyamin022e. International Journal of Molecular Science, 2024, 25, 7830.
(11)Yang K., Jing W., Wang J., Zhang K., Li Y., Xia M., Zhang K.*, Mao J.*. Structure–activity mechanism of sodium ion adsorption and release behaviors in biochar. Agriculture. 2024, 14, 1246.