团结|勤奋|求实|创新

肖超

发布时间:2017-09-20 浏览次数:

姓名:肖超 职称:青年教授

E-mail:xiaochao@jxau.edu.cn

研究方向:

1. 土壤温室气体排放

2. 水分养分高效利用

3. 农业环境足迹计算



个人简介

2024年毕业于西北农林科技大学,28岁,研究方向为农田气体排放及碳氮足迹。在《Agricultural Water Management》《Science of the Total Environment》《Computers and Electronics in Agriculture》《Field Crops Research》《Agriculture, Ecosystems and Environment》等期刊发表论文7篇,其中1篇为ESI高被引论文。



工作经历:

2024/07-至今,江西农业大学国土资源与环境学院,校聘青年教授

教育经历:
2014.09—2018.07 山西农业大学,工学学士
2018.09—2024.07 西北农林科技大学,工学博士(硕博连读)

2022.11—2024.04 芬兰 赫尔辛基大学,联合培养

学术兼职:
担任Agricultural Water Management》《Field Crops Research》《water》期刊审稿人



科学研究

出席国际会议

1. 参与Maataloustieteen Päivät 2024(2024 年农业科学日-芬兰)学术研讨会,并展示2张海报.

2. 参与编撰农业农村部“十四五”规划教材、普通高等教育“十四五”系列教材《农业水文学》



第一作者和通讯作者论文

[1] Xiao C, Ji Q, Zhang F, Li Y, Fan J, Hou X, Yan F, Liu X, Gong K. 2023. Effects of various soil water potential thresholds for drip irrigation on soil salinity, seed cotton yield and water productivity of cotton in northwest China. Agricultural Water Management, 279: 108172. (中科院 1Top, IF=6.7ESI高被引

[2] Xu X, Xiao C, Dong Y, Zhan L, Bi R, Song M, Pan J, Xiong Z. 2024. Machine learning algorithms realized soil stoichiometry prediction and its driver identification in intensive agroecosystems across a north-south transect of eastern China. Science of The Total Environment, 906: 167488.共同一作, 中科院 1Top, IF=9.8

[3] Xiao C, Ji Q, Chen J, Zhang F, Li Y, Fan J, Hou X, Yan F, Wang H. 2023. Prediction of soil salinity parameters using machine learning models in an arid region of northwest China. Computers and Electronics in Agriculture, 204: 107512.(中科院 1Top, IF=8.3

[4] Xiao C, Zou H, Fan J, Zhang F, Li Y, Sun S, Pulatov A. 2021. Optimizing irrigation amount and fertilization rate of drip-fertigated spring maize in northwest China based on multi-level fuzzy comprehensive evaluation model. Agricultural Water Management, 257: 107157.(中科院 1Top, IF=6.7

[5] Xiao C, Zhang F, Li Y, Fan J, Ji Q, Jiang F, He Z. 2024. Optimizing drip irrigation and nitrogen fertilization regimes to reduce greenhouse gas emissions, increase net ecosystem carbon budget and reduce carbon footprint in saline cotton fields. Agriculture, Ecosystems & Environment, 366: 108912. (中科院 1Top, IF=6.6

[6] Xiao C, Li M, Fan J L, Zhang F C, Li Y, Cheng H L, Li Y P, Hou X H, Chen J Q. 2021. Salt Leaching with Brackish Water during Growing Season Improves Cotton Growth and Productivity, Water Use Efficiency and Soil Sustainability in Southern Xinjiang. Water, 13 (18): 2602. (中科院 3, IF=3.4

[7] Xiao C, Zhang F, Li Y, Fan J, Xu X, Liu X. 2024. Optimal drip irrigation leaching amount and times enhance seed cotton yield and its stability by improving soil chemical environment and source-sink relationship. Field Crops Research 317, 109531

(中科院 1, IF=5.6



著作教材

研究生教材《农业水文学

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