鐘磊(博士,天津大學副教授,碩士生導師)

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鐘磊,博士,天津大學副教授,碩士生導師。

基本介紹

人物經歷,研究方向,主要成就,所獲榮譽,

人物經歷

2014年- 至今,天津大學環境學院教師
2014-2015年,紐西蘭皇家農業科學院(Agresearch)訪問學者
2012-2013年,紐西蘭皇家農業科學院(Agresearch) 聯合培養博士
2010-2014年,中國科學院大學生態學專業博士
2007-2010年,華中農業大學植物營養專業碩士
2003-2007年,華中農業大學環境科學專業本科

研究方向

全球氣候變化與土壤氮循環,土壤修復,生物炭製備技術。主要從事土壤氮循環的微生物機制研究,生物炭製備及土壤修復技術的開發。

主要成就

主持項目
[1]季節性放牧對內蒙古典型草原N2O排放的影響及其微生物機制,國家自然科學基金青年項目,2016-2018,負責人
[2]生物炭施用對土壤氮素生物有效性的根際調控機制,天津市自然科學基金青年項目,2019-2022,負責人
[3]生物炭施用對土壤氮循環過程的調控機制研究,天津大學北洋學者青年骨幹教師項目,2019-2020,負責人
[4]新型生物炭基控釋肥技術研究與示範,河北省省校聯合項目,2017-2019,負責人
[5] 石油污染土壤物化-生物修復技術集成與套用示範,天津市京津冀協同創新項目,2017-2019,技術骨幹
[6]重點領域氣候變化影響與風險評估技術研究開發,國家科技支撐計畫項目,2012-2015,技術骨幹
代表性論文
1.Zhong L, Zhou XQ et al. Mixed grazing and clipping is beneficial to ecosystem recovery but would increase the potential N2O emission in semi-arid grasslands. [J]. Soil Biology and Biochemistry, 2017, 114: 42-51.
2.Zhong L, Du R, Ding K, et al. Effects of grazing on N2O production potential and abundance of nitrifying and denitrifying microbial communities in meadow-steppe grassland in northern China[J]. Soil Biology and Biochemistry, 2014, 69: 1-10.
3.Tang L1, Zhong L1, Xue K, et al. Warming counteracts grazing effects on the functional structure of the soil microbial community in a Tibetan grassland[J]. Soil Biology and Biochemistry, 2019.
4.Zhong L, Bowatte S, Newton P C D, et al. Soil N cycling processes in a pasture after the cessation of grazing and CO2 enrichment[J]. Geoderma, 2015, 259: 62-70.
5.Zhong L, Bowatte S, Newton P C D, et al. An increased ratio of fungi to bacteria indicates greater potential for N2O production in a grazed grassland exposed to elevated CO2, Agriculture, Ecosystems & Environment, 2018, 254: 111-116.
6.Zhong L, Hoogendoorn C J, Bowatte S, et al. Slope class and grazing intensity effects on microorganisms and nitrogen transformation processes responsible for nitrous oxide emissions from hill pastures[J]. Agriculture, Ecosystems & Environment, 2016, 217: 70-78.
7.Zhong L, Wang SP et al. Fungi regulate the response of the N2O production process to warming and grazing in a Tibetan grassland [J]. Biogeosciences, 2018, 15 (14): 4447-4457.
8.Ma W, Tai L, Qiao Z, Zhong L* et al. Contamination source apportionment and health risk assessment of heavy metals in soil around municipal solid waste incinerator: A case study in North China[J]. Science of The Total Environment, 2018, 631: 348-357.
9.Ma, W., Chen, D., Pan, M., Gu, T., Zhong, L*., Chen, G*., ... & Cheng, Z. (2019). Performance of chemical chelating agent stabilization and cement solidification on heavy metals in MSWI fly ash: A comparative study. Journal of Environmental Management, 247, 169-177.
10.Xiaoming Kang, Liang Yan, Xiaodong Zhang, Yong Li, Dashuan Tian, Changhui Peng, Haidong Wu, Jinzhi Wang* and Lei Zhong*. Modeling gross primary production of a typical coastal wetland in China using MODIS time series and CO2 eddy flux tower data. Remote sensing, 2018.
11.Zhong L, Li FY, Wang Y et al. Mowing and topography effects on microorganisms and nitrogen transformation processes responsible for nitrous oxide emissions in semi-arid grassland of Inner Mongolia [J]. Journal of soils and sediments, 2017, 1-7.
12.Zhong L, Hu C, Tan Q, et al. Effects of sulfur application on sulfur and arsenic absorption by rapeseed in arsenic-contaminated soil [J]. Plant, Soil and Environment, 2011, 57(9): 429-434.
13.鐘磊,王一喆,李鳴。草地硝化、反硝化微生物功能群研究進展。中國農學通報,2018, 34(3): 128-133.

所獲榮譽

獲獎情況
(1) 天津市教學成果獎一等獎,2018年
(2) 天津大學“北洋學者-青年骨幹教師”,2018年
(3) 天津市131創新人才培養工程第三層次,2019年
(4) 紐西蘭政府獎學金,2012年

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