个人简介
徐小亚,山东济宁人,毕业于浙江大学环境与资源学院,土壤学博士,博士期间所在实验室为徐建明教授和新西兰皇家科学院院士邸洪杰教授的全球变化与温室气体减排实验室,合作导师为何艳教授。期间参与完成了国家基金面上项目“气候变化对氨氧化菌的影响”,开展了气候变化对土壤温室气体排放和相关微生物影响的研究。2017年参加工作以来,继续关注气候变化与温室气体减排等相关问题,并陆续开展了关于黄河三角洲湿地保护以及湿地二氧化碳(CO2)、甲烷(CH4)和氧化亚氮(N2O)排放的相关工作。目前主持和负责国家基金青年项目、山东省自然科学基金项目和山东省第三次土壤普查专项调查等项目,发表SCI论文10余篇(其中一篇当年被ESI收录为高被引论文)。相关研究内容可通过课题组公众号“Soil小宇宙”进行详细了解。
近年来主持和参与的科研项目:
1.国家自然科学基金青年项目:菜地土壤硝化微生物对气候变暖的适应性及其硝化功能的响应研究(30万)。起止日期:2022-2024,主持。
2.山东省自然科学基金项目:气候变暖背景下菜地土壤中氧化亚氮排放的主导途径及其微生物机理研究(15万)。起止日期:2022-2024,主持。
3.山东省第三次土壤普查土壤生物学特征专题调查(30万)。起止日期:2023.1-2023.12,副负责人。
4.人类活动对黄河三角洲滨海湿地AOM微生物基因流迁移转化过程的生物学影响机制(57万)。起止日期:2021-2023,参与。
5.青藏高原东南缘山地土壤重金属污染遗存、迁移转化及全球变暖影响研究(56万)。起止日期:2022-2024,参与。
6.国家自然科学基金面上项目:气候变化对氨氧化微生物的影响(75万,41271272)。起止日期:2013/1-2016/12,承担该项目中的试验设计、操作以及数据分析整理等工作,是该项目的主要完成人之一。
7.国家973项目课题:放牧对草原土壤关键要素的影响(400万,2014CB138801)。起止日期:2014-2018,参与。
近期论文
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1.Wang, Z., Li, K., Shen, X., Yan, F., Zhao, X., Xin,Y., Ji, L., Xiang, Q., Xu, X., Li, D., Ran, J.,Xiaoya Xu(共同通讯)and Chen, Q. (2023). Soil nitrogen substances and denitrifying communities regulate the anaerobic oxidation of methane in wetlands of Yellow River Delta, China. Sci Total Environ 857, 159439.2.Wang, Z., Li, J., Xiaoya Xu, Li, K. and Chen, Q. (2022). Denitrifying anaerobic methane oxidation and mechanisms influencing it in Yellow River Delta coastal wetland soil, China. Chemosphere, 134345.3.Xin, Y., Ji, L., Wang, Z., Li, K.,Xiaoya Xu(共同通讯)and Guo, D. (2022). Functional Diversity and CO(2) Emission Characteristics of Soil Bacteria during the Succession of Halophyte Vegetation in the Yellow River Delta. Int J Environ Res Public Health 19.4.Wu, X., Lu, J., Du, M., Xiaoya Xu,Beiyuan, J., Sarkar, B., Bolan, N., Xu, W., Xu, S., Chen, X., Wu, F. and Wang, H. (2021). Particulate plastics-plant interaction in soil and its implications: A review. Sci Total Environ 792, 148337.5.Xiaoya Xu, Zhidan Xia, Yaowei Liu, Enfeng Liu, Karin Müller, Hailong Wang, Jiafa Luo, Xiaolian Wu, Jingzi Beiyuan, Zheng Fang, Jianming Xu, Hongjie Di, Yong Li*.(2021) Interactions between methanotrophs and ammonia oxidizers modulate the response of in situ methane emissions to simulated climate change and its legacy in an acidic soil. Science of the Total Environment, 752 1422145-142225. (ESI高被引)6.Xiaoya Xu, Yaowei Liu, Bhupinder Pal Singh, Yong Li*.(2020)NosZ clade II rather than clade I determine in situN2O emissions with different fertilizer types under the simulated climate change and its legacy. Soil Biology & Biochemistry, 150107974.7.Xu Xiaoya, Xiaorui Liu, Yong Li Yu Ran, Yapeng Liu, Qichun Zhang, Zheng Li, Yan He, JianmingXu, Hongjie Di.(2017)High temperatures inhibited the growth of soil bacteria and archaea but not that of fungi and altered nitrous oxide production mechanisms from different nitrogen sources in an acidic soil. Soil Biology and Biochemistry,107: 168-179.8.Xu Xiaoya, Yu Ran, Yong Li, Qichu Zhang*, Yapeng Liu, Hong Pan, Xiongming Guan, Jiangye Li, Jiachun Shi, Li Dong, Zheng Li, Hongjie Di, Jianming Xu.(2016)Warmer and drier conditions alter the nitrifier and denitrifierand reduce N2O emissions in fertilized vegetable soils. Agriculture, Ecosystems & Environment, 231: 133-142.9.Xu Xiaoya, Xiaorui Liu, Yong Li, Yu Ran, Yapeng Liu, Qichun Zhang, Zheng Li, Yan He, JianmingXu, Hongjie Di.(2017)Legacy effects of simulated short-term climate change on ammonia oxidisers, denitrifiers, and nitrous oxide emissions in an acid soil.Environmental Science and Pollution Research, 24(12): 11639-11649.