祁剑英

发布者:nxy发布时间:2024-08-19浏览次数:778

         姓        名:祁剑英
         技术职称:首聘副教授
         学位学历:博士研究生
         导师类别:
         联系电话:
         邮        箱:qi@scau.edu.cn; jianying6390@gmail.com

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研究领域:   

       保护性农业与农田生态、 水稻栽培与耕作


教育经历:

        2014年 - 2017年  山西农业大学作物栽培学与耕作学 硕士

        2020年 - 2021年  丹麦奥胡斯大学土壤物理学联合培养博士

        2017年 - 2021年  中国农业大学作物栽培学与耕作学 博士


工作经历:

        2021年 - 至今      华南农业大学农学院 首聘副教授 


学术兼职:  

期刊审稿人:Agriculture ecosystem and environment; Catena; Science of the total environment; European journal of soil science; Journal of soil science and plant nutrition;华南农业大学学报青年编委;耕作学会理事。


论文著作:

(一)耕作与土壤生态:

1. He, Y., Wang, Z., Zhu, J., Lin, X., & Qi, J. (2025). Soil Carbon Sequestration: Role of Fe Oxides and Polyphenol Oxidase Across Temperature and Cultivation Systems. Plants, 14(6), 927. https://doi.org/10.3390/plants14060927 (通讯作者)

2.  Huang, X. W., Lin, J. J., Li, D. J., Huang, X. Q., Xie, Q. H., Pan, S. G., ... & Qi, J. Y. (2024). Bacterial functions are main driving factors on paddy soil organic carbon in both surface soil and subsoil. Agriculture, Ecosystems & Environment, 373, 109123. (通讯作者)

3.  Ruan, S. Y., Luo, H. W., Tang, X. R., & Qi, J. Y. (2024). Soil antibiotic resistant genes and virulence factors affected by 3-year organic farming management of double rice cropping system. Science of The Total Environment, 173722. (通讯作者)

4. Huang, X., Lin, J., Xie, Q., Shi, J., Du, X., Pan, S., ... & Qi, J. (2024). Soil Microbial Functions Linked Fragrant Rice 2-Acetyl-1-Pyrroline with Soil Active Carbon Pool: Evidence from Soil Metagenomic Sequencing of Tillage Practices. Agronomy, 14(6), 1308. (通讯作者)

5.  Qi, J. Y., Yao, X. B., Zhang, X. C., Fan, M. Y., Xue, J. F., Cao, J. L., ... & Tang, X. R. (2024). Effects of tillage practices on soil organic carbon, microbial community and necromass in a double rice cropping system. Applied Soil Ecology, 194, 105190.

6.  Qi, J. Y., Yao, X. B., Duan, M. Y., Huang, X. W., Fan, M. Y., Yang, Y., ... & Tang, X. R. (2023). Effects of contrasting tillage managements on the vertical distribution of plant-and microbial-derived carbon in rice paddy. Science of the Total Environment, 892, 164348.

7.  Qi, J. Y., Yao, X. B., Lu, J., He, L. X., Cao, J. L., Kan, Z. R., ... & Tang, X. R. (2023). A 40% paddy surface soil organic carbon increase after 5-year no-tillage is linked with shifts in soil bacterial composition and functions. Science of The Total Environment, 859, 160206.

8. Qi, J. Y., Zhao, X., He, C., Virk, A. L., Jing, Z. H., Liu, Q. Y., ... & Zhang, H. L. (2021). Effects of long-term tillage regimes on the vertical distribution of soil iron/aluminum oxides and carbon decomposition in rice paddies. Science of The Total Environment, 145797.

9.  Qi, J. Y., Jing, Z. H., He, C., Liu, Q. Y., Wang, X., Kan, Z. R., ... & Zhang, H. L. (2020). Effects of tillage management on soil carbon decomposition and its relationship with soil chemistry properties in rice paddy fields. Journal of Environmental Management, 111595.

10. Qi, J. Y., Zhang, X. Z., Li, S. S., Virk, A. L., Wang, X., Kan, Z. R., ... & Zhang, H. L. (2020). Effects of different tillage practices on the distribution of soil total nitrogen and carbon/nitrogen ratio at different soil depths in a double rice cropping system. Archives of Agronomy and Soil Science, 1-12.

11. Qi, J. Y., Wang, X., Zhao, X., Pu, C., Kan, Z. R., Li, C., ... & Zhang, H. L. (2019). Temporal variability of soil organic carbon in paddies during 13‐year conservation tillage. Land Degradation & Development, 30(15), 1840-1850.

12. 祁剑英马守田刘冰洋阚正荣刘鹏王兴刘洋张海林.保护性耕作对土壤有机碳稳定化影响的研究进展[J].中国农业大学学报, 2020, 25(01):1-9.

13.祁剑英王兴濮超马守田赵鑫薛建福张海林.保护性耕作对土壤氮组分影响研究进展[J].农业工程学报, 2018, 34(S1):222-229.

(二)农田管理与土壤物理:

14. Qi, J. Y., Jensen, J. L., Christensen, B. T., Munkholm, L. J. (2022). Soil structural stability following decades of straw incorporation and use of ryegrass cover crops. Geoderma, 406, 115463. 

15. Qi, J. Y., Han, S. W., Lin, B. J., Xiao, X. P., Jensen, J. L., Munkholm, L. J., & Zhang, H. L. (2021). Improved soil structural stability under no-tillage is related to increased soil carbon in rice paddies: Evidence from literature review and field experiment. Environmental Technology & Innovation, 102248.

(三)粮食作物碳足迹

16. Qi, J. Y., Yang S. T., Xue J. F., 2018. Response of carbon footprint of spring maize production to cultivation patterns in the Loess Plateau, China. Journal of Cleaner Production, 187: 525-536 

(四)参与发表论文:

17. Wang, X., Qi, J. Y., Liu, B. Y., Kan, Z. R., Zhao, X., Xiao, X. P., & Zhang, H. L. (2020). Strategic tillage effects on soil properties and agricultural productivity in the paddies of Southern China. Land Degradation & Development, 31(10), 1277-1286.

18. Wang, X., Qi, J. Y., Zhang, X. Z., Li, S. S., Virk, A. L., Zhao, X., ... & Zhang, H. L. (2019). Effects of tillage and residue management on soil aggregates and associated carbon storage in a double paddy cropping system. Soil and Tillage Research, 194, 104339.

19. Kan, Z. R., Qi, J. Y., Liu, Q. Y., He, C., Virk, A. L., Lal, R., & Zhang, H. L. (2020). Effects of conservation tillage on wheat growth duration and grain yield in the North China Plain. Archives of Agronomy and Soil Science, 1-15. 

20. Kan, Z. R., Qi, J. Y., Zhao, X., Zhang, X. Q., Lu, Z. Y., Cheng, Y. C., & Zhang, H. L. (2020). No-Till Farming Systems in Rain-Fed Areas of China. In No-till Farming Systems for Sustainable Agriculture (pp. 477-492). Springer, Cham. 

承担项目情况:

1. 广东省自然科学基金面上项目,不同耕作措施下稻田环境变化对土壤有机碳损失的影响机制,2024-2026,主持

2. 国家自然科学基金青年项目,香稻“增香增产”种植模式对土壤有机碳的影响及机理,2023-2025,主持

3. 广东省自然科学基金面上项目,保护性耕作影响水稻秸秆向稻田有机碳转移的机制研究,2023-2025,主持

4. 广州市基础与应用基础研究专题,保护性耕作对稻田土壤微生物残体碳的影响及机理,2023-2025,主持

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