范跃新研究员

发布者:孙杰 发布时间:2022-03-05 浏览次数:4648


-------------------------------------------------------------------------------------------------------

基本信息Basic information

姓      名:范跃新

职      称:研究员

硕导博导:硕导、博导

最高学位:博士

单      位:福建师范大学地理科学学院、碳中和未来技术学院

-------------------------------------------------------------------------------------------------------

研究方向 Research Interests

全球变化与森林土壤养分循环;土壤磷周转过程与植被生产力维持

------------------------------------------------------------------------------------------------------

个人履历Resume

教 育

 2016-092019-06,福建师范大学地理科学学院,生态学,博士

 2008-092011-06,福建师范大学地理科学学院,自然地理学,硕士

 2004-092008-06,山西师范大学城市与环境科学学院,地理科学,学士

工 作

 2022-01至今,福建师范大学地理科学学院,研究员

 2014-012021-12,福建师范大学,地理科学学院,讲师

 2011-082013-12,福建师范大学,地理科学学院,助教

-------------------------------------------------------------------------------------------------------

个人简介  Brief

跃新,博士,研究员,博导,山西长治人。主要从事森林土壤养分循环研究,关注全球变化背景下土壤磷素循环与森林生产力维持机制森林土壤氮磷周转过程及调控机理。入选福建省高层次人才(C类),福建师范大学宝琛计划青年英才。主持国家自然科学基金3项、省级课题3,参与国家自然科学基金重大项目、面上项目等5项。担任《应用生态学报》首届青年编委。在Soil Biology and BiochemistryBiology and Fertility of SoilsGeodermaCatenaApplied Soil Ecology、土壤学报、植物生态学报、生态学报等国内外学术期刊发表学术论文30篇。获省部级教学成果奖2项。

-------------------------------------------------------------------------------------------------------

科研项目Research projects

1.国家自然科学基金面上项目,32371674,增温对亚热带固氮和非固氮树种磷获取策略的影响及机制,2024/01-2027/12,主持。

2.国家自然科学基金面上项目,41977090,氮沉降背景下调控亚热带森林土壤磷有效供应的微生物机制,2020/01-2023/12,主持。

3.国家自然科学基金重大项目,32192433,人工林生态系统碳汇形成与维持机制,2022/01-2026/12,参与。

4.国家自然科学基金面上项目,32171587,增温是否会改变亚热带不同菌根树种的磷获取策略? 2022/01-2025/12,参与。

5.国家自然科学基金面上项目,42171102,海平面上升情景下河口湿地土壤磷铁耦合-解耦调控磷迁移的关键机制,2022/01-2025/12,参与。

6.国家自然科学基金青年项目,41401346,全球变暖是否会削弱湿润亚热带森林土壤的保氮能力? 2015/01-2017/12,主持。

7.福建省自然科学基金项目,氮沉降背景下亚热带天然林土壤磷有效性如何维持及其调控机制,2019/04-2022/04,主持。

-------------------------------------------------------------------------------------------------------

部分论文Selected Publications

(1) Zeng QX, Peñuelas J, Sardans J, Zhang QF, Zhou JC, Yue K, Chen YM*, Yang YS, Fan YX*. Keystone bacterial functional module activates P-mineralizing genes to enhance enzymatic hydrolysis of organic P in a subtropical forest soil with 5-year N addition.Soil Biology and Biochemistry, 2024.

(2) Xia Y, Penuelas J, Sardans J, Zhong XJ, Xu LL, Yang ZJ, Yang YS, Yang LM*, Yue K, Fan YX*. Phosphorus addition accelerates soil organic carbon mineralization by desorbing organic carbon and increasing microbial activity in subtropical forest soils. Applied Soil Ecology, 2024, 193,105166.

(3) Li AG#, Fan YX#, Chen SL, Song HW, Lin CF*, Yang YS. Soil warming did not enhance leaf litter decomposition in two subtropical forests. Soil Biology and Biochemistry, 2022, 108716.

(4) Yang LM, Yang ZJ, Zhong XJ, Xu C, Lin YY, Fan YX*, Wang MH, Chen GS, Yang YS*. Decreases in soil P availability are associated with soil organic P declines following forest conversion in subtropical China. Catena, 2021, 205, 105459.

 (5) Fan YX, Lu SX, He M, Yang LM, Hu WF, Yang ZJ, LiuXF,HuiDF, Guo JF*, Yang YS. Long-term throughfall exclusion decreases soil organic phosphorus associated with reduced plant roots and soil microbial biomass in a subtropical forest. Geoderma, 2021, 404, 115309.

(6) Fan YX*#, Yang LM#, Zhong XJ, Yang ZJ, Lin YY, Guo JF, Chen GS, Yang YS*. N addition increased microbial residual carbon by altering soil P availability and microbial composition in a subtropical Castanopsis forest. Geoderma, 2020, 375, 114470.

(7) Fan YX#, Zhong XJ#, Lin TQ, Lyu MK, Wang MH, Hu WF, Yang ZJ, Chen GS, Guo JF*, Yang YS*. Influences of nitrogen deposition on DOM-induced soil priming effects in a subtropical plantation forest and a natural forest. Biology and Fertility of Soils, 2020, 56: 205-216.

(8) Fan YX, Zhong XJ, Lin F, Liu C, Yang LM, Wang MH, Chen GS, Chen YM*, Yang YS*.Responses of soil phosphorus fractions after nitrogen addition in a subtropical forest ecosystem: Insights from decreased Fe and Al oxides and increased plant roots. Geoderma, 2019, 337: 246-255.

(9) Fan YX, Lin F, Yang LM, Wang MH, Zhong XJ, Zhou JC, Chen YM*, Yang YS*. Decreased soil organic P fraction associated with ectomycorrhizal fungal activity to meet increased P demand under N application in a subtropical forest ecosystem. Biology and Fertility of Soils, 2018, 54(1): 149-161.

(10) Zeng QX, Zhang QF*, Fan YX, Gao YL, Yuan XC, Zhou JC, Dai H, Chen YM*. Phosphorus availability regulates nitrogen fixation rate through a key diazotrophic assembly: Evidence from a subtropical Moso bamboo forest subjected to nitrogen application. Science of The Total Environment, 2024, 912, 169740.

(11) Zheng W, Lin WS, Fan YX, Li YQ, Zhou JC, Zheng Y, Chen SD, Liu XF, Xiong DC, Xu C, Yang ZJ*, Yang YS*. Divergent effects of short-term warming on microbial resource limitation between topsoil and subsoil in a young subtropical Chinese fir forest. Biogeochemistry, 2023, 1-15.

(12) Zeng QX, Fan YX, Zhang QF, Yuan XC, Lin KM, Zhou, JC, Lin HY, Xie H, Cui JY, Wu Y, Chen YM*. Differential factors determine the response of soil P fractions to N deposition in wet and dry seasons in a subtropical Moso bamboo forest. Plant and Soil, 2022, 1-19.

(13) Wang QC, Wang WQ, Zheng Y, Vancov T, Fang YY, Xia Y, Liu XY, Fan YX, Wei ZH, Yang LM*. Converting rice paddy to upland fields decreased plant lignin but increased the contribution of microbial residue to SOC. Geoderma, 2022,425, 116079.

(14) 夏允,徐玲琳,杨柳明,杨智杰,范跃新*,杨玉盛. 模拟氮沉降对中亚热带米槠天然林土壤解磷微生物群落和功能潜力的影响,生态学报,2024,04.

(15) 何敏,许秋月,夏允,杨柳明,范跃新*,杨玉盛.植物磷获取机制及其对全球变化的响应,植物生态学报,2023, 47 (3): 291-305.

(16) 梅孔灿,陈岳民,范跃新*,周嘉聪,张秋芳,程蕾,曾泉鑫,徐建国,元晓春,崔琚琰,刘苑苑. 凋落叶和磷添加对马尾松林土壤碳激发效应的影响,土壤学报,2022594):1089-1099.

-------------------------------------------------------------------------------------------------------

联系方式Contact

通讯地址:福建省福州市闽侯县上街镇乌龙江中大道18(350117)

办公电话:0591-83465214

电子邮箱:yxfan@fjnu.edu.cn

------------------------------------------------------------------------------------------------------