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张文君

Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
Name (Simplified Chinese):张文君
Name (Pinyin):Zhang Wenjun
Professional Title:Associate professor
Status:Employed
Education Level:With Certificate of Graduation for Doctorate Study
Degree:Doctoral Degree in Agriculture
Business Address:资环楼128
E-Mail:
Alma Mater:华中农业大学
Teacher College:College of Resources & Environment
School/Department:资源与环境学院
Other Contact Information:

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姓名:张文君    职称:副教授/博士生导师    

E-mail:wenjunzhang@mail.hzau.edu.cn


研究方向

稻田养分高效利用;水稻营养生理;水旱轮作体系养分循环与转化

  

工作经历

2018.1-至今 华中农业大学资源与环境学院 副教授

2012.7-2017.12 华中农业大学资源与环境学院 讲师


教学情况

本科生:《设施栽培技术》《土壤肥料学》《植物营养类实习》《专业综合实习》

研究生:《植物营养学专题》


科研项目

国家自然科学基金:油/麦-稻轮作体系中土壤铁磷协同转化的根际机制,主持,2026-2029

国家农业重大科技项目:长江中游秸秆高效还田技术与应用,子课题主持,2022-2026

国家重点研发计划项目:长江中下游水旱轮作区中低产田障碍消减与产能提升综合模式与应用,子课题主持,2018-2021

国家重点研发计划项目:油-稻-再三熟区稻林直播油菜化肥减施技术模式建立与示范,子课题主持,2018-2020

企业合作项目:有机废弃物发酵及植物高效基质研制,主持,2022-2025

校自主科技创新基金项目, 主持,2017-2019

国家自然科学基金, 主持, 2014-2016

教育部博士点基金项目, 主持, 2014-2016

大学生科技创新基金, 主持,2014-2015


教改类项目

2023 主持《植物营养类实习》数字化课程建设

2023 主持《设施栽培技术》MOOC建设

2023 主持湖北省大学生创新创业训练计划项目:鱼菜共生系统养分循环利用特性及种植模式优化研究

2023 参加全国农业硕士在线示范课程《农化产品高效利用与管理》建设

2023 参加《基础生物化学》课程思政示范建设

2023 参编研究生教材《土壤环境界面分析方法》

2022 参加华中农业大学BOPPPS 教学设计研修班

2021 参加创新创业培训:基于专业理论的“创—生涯”创业教学与指导模式

2021 主持华中农业大学第二批专创融合示范课程:《设施栽培技术》

2020 参与《现代施肥技术理论与实践》MOOC建设

2018 主持国家级大学生创新训练计划:荷兰城市温室设计

2018 参与《土壤肥料学》MOOC建设

2018 参与《植物营养学》MOOC建设

2015-2016 主持校级教改项目:关于《无土栽培学》教学课件PPT的美化与应用


各类奖项

2024年,获得华中农业大学优秀班主任

2023年,第十三届全国大学生电子商务“创新、创意及创业”挑战赛(指导老师)二等奖

2023年,第九届“互联网+”大学生创新创业大赛,植宝宝—高端种植玩具领航者(指导老师),铜奖

2023年,获得教学质量优秀三等奖

2017年, 第十三届青年教师讲课竞赛中荣获二等奖

2016年, 植物营养类课程“研究性教学”和“多元化考核”改革与实践,获得华中农业大学教学成果一等奖(排名第二)

2015年, 华中农业大学教学质量优秀三等奖

2015 年,获得校级“优秀班主任”

2013年, 华中农业大学第十一届青年教师讲课竞赛优胜奖


人才培养

2025 中国植物营养与肥料学会:硕士学位论文优秀指导教师

2024 中国植物营养与肥料学会:博士学位论文优秀指导教师

2024 华中农业大学优秀优秀硕士学位论文指导教师

2023 华中农业大学优秀优秀博士学位论文指导教师

2022 华中农业大学优秀优秀博士学位论文指导教师

2023 硕士贾崇昊获得研究生国家奖学金

2022 博士葛新飞获得研究生国家奖学金


主要学术成果:

   已在Environmental Science & Technology、Water Research、Plant Physiology、new phytologist等国内外刊物上

发表多篇学术论文。

1.Pu JB, Ma J, Zhai H, Wu SS, Wang YM, Putnis C V, Wang LJ, Zhang WJ*. Atomic force microscopy imaging of plant cell walls. Plant Physiology, 2025, 197, kiae655.

2.Jia CH, Fan YK, Wei QQ, Wang LJ, Zhang WJ*. Soil organic matter enhances urease-mediated microbially induced carbonate precipitation: Dual benefits for inorganic carbon sequestration and cadmium immobilization. Journal of Hazardous Materials, 2025, 496: 139342.                          

3.Ge XF, Fan YK, Zhai H, Chi JL, Putnis C V, Wang LJ, Zhang WJ*. Direct observations of nanoscale brushite dissolution by the concentration-dependent adsorption of phosphate or phytate. Water Research, 2024, 248: 120851.

4.Pu JB, Ma J, Li JG, Wang SL, Zhang WJ*. Organosilicon and inorganic silica inhibit polystyrene nanoparticles uptake in rice. Journal of Hazardous Materials 2023,442:130012.

5.Jia CH, Chi JL., Fan, YK., Qin LH, Ren T, Putnis CV, Zhang WJ*.Competitive adsorption mechanisms of phosphorus species on montmorillonite-iron oxyhydroxide complexes. Chemical Geology, 2025, 672: 122510.

6.Fan YK , Wang LJ , Putnis C V, Zhang WJ*. Direct Nanoscale Imaging Reveals the Mechanism by Which Organic Acids Dissolve Vivianite through Proton and Ligand Effects. Inorg. Chem. 2024, 63, 6909−6921 

7.Fan YK, Chi JL,Wang LJ, Jia CH, Zhang WJ.*Aluminum substitution stabilizes organic matter in ferrihydrite transforming into hematite: A molecular analysis.Science of the Total Environment,2024, 945,174035.

8.Li JG, Zhang Y, Zhang WJ*.Biochemical mechanisms underlying iron plaque-mediated phosphorus accumulation and uptake in rice roots .Science of the Total Environment. 2024, 929 :172331 

9.Zhang WJ*, Fan YK, Chi JL*.The synergistic effect of multiple organic macromolecules on the formation of calcium oxalate raphides of Musa spp. Journal of Experimental Botany.  2024. 75(8):2470–2480

10.Dong Y, Chi J, Ren Z, Xiong B, Liu Z, Zhang W*, Wang L, Fujii S*, Armes S P*, Ning Y*. Controlled Deformation of Soft Nanogel Particles Generates Artificial Biominerals with Ordered Internal Structure. Angew. Chem. Int. Ed. 2023, 62, e202300031.

11.Jia C, Fan Y, Chi J*, Putnis C V, Huang C, Zhang W*. Molecular mechanisms of phosphorus immobilization by nano-clay mediated by dissolved organic matter. Chem Geol, 2023, 641: 121786. 

12.Chi JL , Fan YK ,Wang LJ, Putnis CV , Zhang WJ*. Retention of soil organic matter by occlusion within soil minerals. Reviews in Environmental Science and Bio/Technology. 2022, 21:727–746. IF 8.6, 

13. Ge XF , Wang LJ , Yang X, Qiu GH, Zhang WJ*. Alginate promotes soil phosphorus solubilization synergistically with redox-active antibiotics through Fe(III) reduction. Environ. Sci.: Nano, 2022,9, 1699-17119.4. 

14. Ge XF , Wang LJ ,Zhang WJ*. Direct Observation of Alginate-Promoted Soil Phosphorus Availability. ACS Sustainable Chem. Eng. 2022, 10, 8011−8021.

15.Ge XF , Wang LJ ,Zhang WJ*. Molecular-scale determination of facet- and adsorbent-dependent phosphate adsorption by metal-based adsorbents. Environ. Sci.: Nano, 2022,9, 3372-3384.

16. Ge XF , Zhang WJ*, Putnis C V., Wang LJ. Direct observation of humic acid-promoted hydrolysis of phytate through stabilizing a conserved catalytic domain in phytase. Environ. Sci.: Processes Impacts, 2022,24, 1082-1093. 

17. Ge XF , Zhang WJ*, Putnis C V., Wang LJ. Molecular mechanisms for the humic acid-enhanced formation of the ordered secondary structure of a conserved catalytic domain in phytase. Phys. Chem. Chem. Phys. 2022, 24, 4493–4503. 

18. Zhang J, Zhang WJ*, Wang LJ*. In Situ Observation of Dicalcium Phosphate Monohydrate Formation and Phase Transformation. J. Phys. Chem. B 2022, 126, 4881−4888. 

19.Pu JB, Wang LJ*, Zhang WJ*, Ma J, Zhang XQ, Putnis CV. Organically-bound silicon enhances resistance to enzymatic degradation and nanomechanical properties of rice plant cell walls. Carbohydrate Polymers. 2021,266 ,118057. 

20. Ge XF, Wang LJ*, Zhang WJ*, Putnis CV. Molecular understanding of humic acid-Limited phosphate precipitation and transformation. Environ Sci Technol. 2020, 54, 207-215. 

21.Chi JL, Zhang WJ*, Wang LJ*, Putnis CV. Direct observations of the occlusion of soil organic matter within calcite. Environ Sci Technol. 2019. 53, 8097-8104. 

22.Zhai H, Qin LH, Zhang WJ*, Putnis CV, Wang LJ*. Dynamics and molecular mechanism of phosphate binding to a biomimetic hexapeptide. Environ Sci Technol. 2018, 52,10472-10479. 

23.Zhang WJ, Chi JL, Ma LJ, Wang LJ*. Occluded organic nanofibers template the hierarchical organization of nanosized particles in calcium oxalate raphides of Musa spp. Crystal Growth & Design 2018, 18, 1155−1161. 

24.Zhai H, Wang LJ*,Qin LH, Zhang WJ*, Putnis CV, Putnis A. Direct observation of simultaneous immobilization of cadmium and arsenate at the brushite-fluid interface. Environmental Science & Technology 2018, 52, 3493-3502. 

25.李建国, 张怡, 张文君*. 水稻根系铁膜形成及对磷素吸收的影响. 植物学报,2025, 60, 1-1.

26.张怡,李建国,张文君*.水稻根系分泌物研究进展.植物营养与肥料学报. 2024, 30(10): 1987-1999.

27.迟家霖,贾崇昊,张文君*. 纳米尺度观察糖-黏土微团聚体对磷素吸附的影响. 土壤学报. 2024, 61(1):110-117 . 

28.葛新飞,张文君*. 原子力显微镜原位探测铵态氮对沉淀态钙磷的溶解动力学. 土壤学报,2025,62(1):92-101.


班级工作

  2021级 环科01 班级主任

  2012级 农资02班级主任


研究生培养情况

   每年招收博士生/硕士生2-3人

   欢迎热爱科研,勇于创新,积极进取,具有农业资源与环境、环境科学、生物学及相关专业背景的同学们报考!






Educational Experience

[1] 2006.9——2012.6
华中农业大学 > Doctoral Degree in Agriculture > 农学博士学位
[2] 2002.9——2006.6
华中农业大学 > 学士 > 学士

Work Experience

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Research Focus

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