人才队伍
助理研究员及其他
朱凯
职称:助理研究员
邮箱:zhukai@cigit.ac.cn
个人简介:热爱科研、百折不挠、绝不服输的“挖土工”。
Stay hungry, Stay foolish!
教育经历:
2017.9-2020.7 中国科学院大学(CIGIT) 环境工程 博士
2014.9-2017.7 中国科学院大学(XTBG) 生物工程 硕士
2010.9-2014.6 湖北师范大学 地理科学 学士
研究方向:土壤结构与土壤碳动态微生物调控机制、土壤水分运移
主要科研成果:
主持项目:
1、重庆市自然科学基金面上项目,水位波动与生态修复策略对消落带土壤呼吸的耦合影响,2022.08-2024.07。
2、重庆市博士直通车项目,水位波动下生态修复策略对消落带土壤呼吸的影响及调控机制,2022.08-2023.12。
参与项目:
1、三峡库区后续规划科研项目, 5000002021BF40001, 三峡库区消落区(重庆段)生态环境调查及生态恢复技术示范, 2021.01 – 2024.12.
2、国家自然科学基金面上项目,水位波动下三峡水库消落带土壤 N2O 排放及其对团聚体演变的响应机制,2018.01 - 2021.12.
3、土壤与农业可持续发展国家重点实验室,不同生态恢复模式下三峡水库消落带土壤结构演变及其主导机制, 2018.06 -2021.05.
4、国家自然科学基金面上项目,种间配置对胶农(林)复合系统水土保持功能的影响, 2013.01-2016.12.
论文:
[1] Zhu K, Ran Y, Ma M, et al. Ameliorating soil structure for the reservoir riparian: The influences of land use and dam-triggered flooding on soil aggregates[J]. Soil and Tillage Research, 2022, 216: 105263. (中科院1区top)
[2] Zhu K, Ma M, Ran Y, et al. In mitigating CO2 emission in the reservoir riparian: The influences of land use and the dam-triggered flooding on soil respiration[J]. Soil and Tillage Research, 2020, 197: 104522. (中科院1区 top)
[3] Zhu K, Li W, Yang S, et al. Intense wet-dry cycles weakened the carbon sequestration of soil aggregates in the riparian zone[J]. Catena, 2022, 212: 106117.(中科院1区top)
[4] 朱凯,马茂华,李文娟,冉义国,冉娇娇,吴胜军,黄平.三峡水库消落带不同土地利用对土壤团聚体稳定性及其碳氮分布的影响[J].长江流域资源与环境,2022(07)1-16. (中文环境生态类第 2)
[5] 朱凯,马茂华,李文娟,冉义国,冉娇娇,吴胜军.三峡水库消落带典型主动与被动修复策略对土壤饱和导水率的影响[J].三峡生态环境监测,2021,6(01):1-7.
[6] 朱凯,刘文杰,刘佳庆.西双版纳地区胶农复合系统的土壤斥水特性[J].云南大学学报(自然科学版),2017,39(01):137-146.
[7] 朱凯,刘文杰,刘佳庆,朱习爱,陈春峰.西双版纳地区不同胶农复合林对土壤理化性质的影响[J].亚热带植物科学,2016,45(04):337-342.
[8] Ran Y, Zhu K, Wu S, et al. Conservative agriculture facilitates soil carbon, nitrogen accumulation, and aggregate stabilization under periodic flooding regimes[J]. Catena, 2022, 209: 105783. [9] Liu J, Liu W, Zhu K. Throughfall kinetic energy and its spatial characteristics under rubber-based agroforestry systems[J]. Catena, 2018, 161: 113-121.
[10] Ran Y, Wu S, Zhu K, et al. Soil types differentiated their responses of aggregate stability to hydrological stresses at the riparian zones of the Three Gorges Reservoir[J]. Journal of Soils and Sediments, 2020, 20(2):951-962.
[11] Ran Y, Liu Y, Wu S, Zhu K, et al. A higher river sinuosity increased riparian soil structural stability on the downstream of a dammed river[J]. Science of The Total Environment, 2022, 802:149886.
[12] Ran Y, Ma M, Liu Y, Zhu K, et al. Physicochemical determinants in stabilizing soil aggregates along a hydrological stress gradient on reservoir riparian habitats: Implications to soil restoration[J]. Ecological Engineering, 2020, 143:105664.
[13] Mir Y, Wu S, Ma M, Zhu K, et al. Mercury contamination in the riparian ecosystem during the reservoir discharging regulated by a mega dam[J]. Environmental Geochemistry and Health, 2022:1-18.
[14] Zhu X, Liu W, Yuan X, Chen C, Zhu K et al.Aggregate stability and size distribution regulate rainsplash erosion: Evidence from a humid tropical soil under different land-use regimes[J]. Geoderma,2022,420(2):115880.
[15]李文娟,朱凯,冉义国,冉娇娇,黄平.土地利用与反季节水位波动影响下土壤活性有机碳的组分特征[J].水土保持学报,2021,35(02):178-183+192
奖励和荣誉:
中国科学院大学三好学生,中国科学院大学优秀毕业生
附件
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