张中彬
发布者:管理员发布时间:2024-12-27作者:来源:研究生教育与国际合作处点击量:
张中彬,男,中国农业科学院农业资源与农业区划研究所, 研究员,博士生导师
招生专业
土壤学
招生方向
土壤结构,土壤水分运动,土壤结构与根系的相互作用,覆盖作物与土壤结构改良
教育背景
2008-09--2013-07 中国科学院大学 博士
2004-09--2008-06 海南大学 学士
工作经历
2024-09~, 中国农业科学院农业资源与农业区划研究所, 研究员
2019-04~2024-09, 中国科学院南京土壤研究所, 副研究员
2014-06~2019-04, 中国科学院南京土壤研究所, 助理研究员
2013-09~2014-04, 美国宾夕法尼亚州立大学, 访问学者
社会兼职
2022-05-26-今,Frontier in Agronomy专题副主编,
2018-01-10-今,Soil and tillage research期刊编委,
代表性成果
1. Wang, Y., Zhang, Z.*, Guo, Z., Chen, Y., Yang, J., Peng, X.*, 2023. In-situ measuring and predicting dynamics of soil bulk density in a non-rigid soil as affected by tillage practices: Effects of soil subsidence and shrinkage. Soil and Tillage Research 234, 105818.
2. Xiong, P., Zhang, Z.*, Peng, X., 2022. Root and root-derived biopore interactions in soils: A review. Journal of Plant Nutrition and Soil Science 185, 643-655.
3. Zhang, Z., Yan, L., Wang, Y., Ruan, R., Xiong, P., Peng, X.*, 2022. Bio-tillage improves soil physical properties and maize growth in a compacted Vertisol by cover crops. Soil Science Society of America Journal 86, 324-337.
4. Wang, Y., Zhang, Z.*, Guo, Z., Xiong, P., Peng, X., 2022. The dynamic changes of soil air-filled porosity associated with soil shrinkage in a Vertisol. European Journal of Soil Science 73, e13313.
5. Xiong, P., Zhang, Z.*, Guo, Z., Peng, X.*, 2022. Macropores in a compacted soil impact maize growth at the seedling stage: Effects of pore diameter and density. Soil and Tillage Research 220, 105370.
6. Ruan, R., Zhang, Z.*, Wang, Y., Guo, Z., Zhou, H., Tu, R., Hua, K., Wang, D., Peng, X., 2022. Long-term straw rather than manure additions improved least limiting water range in a Vertisol. Agricultural Water Management 261, 107356.
7. Xiong, P., Zhang, Z.*, Wang, Y., Peng, X., 2022. Variable responses of maize roots at the seedling stage to artificial biopores in noncompacted and compacted soil. Journal of Soils and Sediments 22, 1155-1164.
8. Zhang, Z., Peng, X.*, 2021. Bio-tillage: A new perspective for sustainable agriculture. Soil and Tillage Research 206, 104844.
9. Ruan, R., Zhang, Z.*, Tu, R., Wang, Y., Xiong, P., Li, W., Chen, H., 2021. Variable responses of soil pore structure to organic and inorganic fertilization in a Vertisol. International Agrophysics 35, 221-225.
10. Xiong, P., Zhang, Z.*, Hallett, P.D., Peng, X., 2020. Variable responses of maize root architecture in elite cultivars due to soil compaction and moisture. Plant and Soil 455, 79-91.
11. Zhang, Z., Liu, K., Zhou, H., Lin, H., Li, D., Peng, X.*, 2019. Linking saturated hydraulic conductivity and air permeability to the characteristics of biopores derived from X-ray computed tomography. Journal of Hydrology 571, 1-10.
12. Zhang, Z., Liu, K., Zhou, H., Lin, H., Li, D., Peng, X.*, 2018. Three dimensional characteristics of biopores and non-biopores in the subsoil respond differently to land use and fertilization. Plant and Soil 428, 453-467.
13. Zhang, Z., Lin, L., Wang, Y., Peng, X.*, 2016. Temporal change in soil macropores measured using tension infiltrometer under different land uses and slope positions in subtropical China. Journal of Soils and Sediments 16, 854-863.
14. Zhang, Z., Zhou, H., Lin, H., Peng, X.*, 2016. Puddling intensity, sesquioxides, and soil organic carbon impacts on crack patterns of two paddy soils. Geoderma 262, 155-164.
15. Zhang, Z., Peng, X.*, Zhou, H., Lin, H., Sun, H., 2015. Characterizing preferential flow in cracked paddy soils using computed tomography and breakthrough curve. Soil and Tillage Research 146, 53-65.
16. Zhang, Z.B., Zhou, H., Zhao, Q.G., Lin, H., Peng, X.*, 2014. Characteristics of cracks in two paddy soils and their impacts on preferential flow. Geoderma 228–229, 114-121.
17. Zhang, Z., Peng, X.*, Wang, L., Zhao, Q., Lin, H., 2013. Temporal changes in shrinkage behavior of two paddy soils under alternative flooding and drying cycles and its consequence on percolation. Geoderma 192, 12-20.
18. 赵馨雅, 刘帅, 徐静怡, 王玥凯, 郭自春, 汤水荣*, 张中彬*, 彭新华, 2023. 覆盖作物种植对砂姜黑土团聚体稳定性及其有机碳组分的影响. 农业资源与环境学报 40, 1377-1387.
19. 严磊, 张中彬*, 丁英志, 王玥凯, 王永玖, 甘磊*, 彭新华, 2021. 覆盖作物根系对砂姜黑土压实的响应. 土壤学报 58, 140-150.
20. 张中彬, 彭新华*, 2015. 土壤裂隙及其优先流研究进展. 土壤学报 3, 11-22.
21. 彭新华; 张中彬; 郭自春 ; 砂姜黑土改良的原理与技术, 科学出版社, 2022 (学术专著)
22. 一种干湿交替作用下土壤呼吸气体采集装置, 发明专利, 2022, 第 4 作者, 专利号: ZL 2022 2 2245995.0
23. 一种便于收集植物根系分泌物的提取装置, 发明专利, 2022, 第 2 作者, 专利号: ZL 202221490733.4
23. 上旋下松定位施肥整地机具, 发明专利, 2021, 第 3 作者, 专利号: CN214545430U
24. 一种旋松一体耕作机具, 发明专利, 2021, 第 3 作者, 专利号: CN213907369U
25. 一种有机肥深施机具, 实用新型, 2019, 第 1 作者, 专利号: CN209659910U
科研项目
1. 玉米-油菜-覆盖作物免耕轮作消减黑土 压实的生物耕作技术, 参与, 国家任务, 2023-11--2028-10
2. 白浆层障碍特征及白浆土改土增产机理研究, 负责人, 国家任务, 2022-11--2027-10
3. 黑土地土壤压实和结构障碍形成过程与消减关键技术, 负责人, 中国科学院计划, 2021-07--2026-06
4. 砂姜黑土结构的演变规律及其对作物根系生长的物理机制, 参与, 国家任务, 2020-01--2024-12
5. 覆盖作物根系生长对土壤压实的缓解机制研究, 负责人, 国家任务, 2018-01--2021-12
6. 砂姜黑土肥沃耕层特征与障碍因子形成及演变规律, 负责人, 国家任务, 2016-01--2020-12