
基本信息
姓名:刘兴
性别:男
职称:青年教授/讲师
学位:博士
个人简历
2021.09-2025.07 华南农业大学 生态学专业 博士
2017.09-2020.07 中国科学院大学 土壤学专业 硕士
2012.09-2016.07 曲阜师范大学 资源环境与城乡规划管理专业 学士
联系方式
E-mail:xingliu@jxau.edu.cn
研究方向
土壤地力提升、氮磷周转及微生物调控
课题项目
[1] 国家自然科学基金青年科学基金项目: 氮沉降背景下有机碳源驱动杉木林土壤磷活化的微生物作用机制,2027.01-2029.12,主持。
[2] 江西省自然科学基金青年科学基金项目: 解磷微生物调控磷添加下杉木林土壤磷活化对增温的深度响应研究,2027.01-2029.12,主持。
论文情况
[1] Liu X, Sun D L, Jia Q, Wei S B, Zhang J E, Zheng H J, Huang H Q, 2026. Rice-fish coculture contributes to improve nutrients availability, carbon sequestration and maintain rice yield under minimal tillage condition in double-season rice farming of South China. Journal of Integrative Agriculture.
[2] Liu X, Han M, Zhang M, Wu C, Wang Z, Zhang Y, Chen Z, 2025, Chen L. Fertilization managements mitigate microbial carbon and nitrogen limitations while preserving soil organic carbon in croplands compared to grasslands: A meta-analysis. Journal of Environmental Management.
[3] Liu X, Zhang Y, Jiang D, Wu C, Wang S, Tian M, Yao Z, Jiang N, Chen Z, Chen L. 2025. The role of oxidases and hydrolases in enhancing carbon sequestration through soil management practices: a global meta-analysis across diverse ecosystems. European Journal of Agronomy.
[4] Liu X, Wu C, Wang Z, Zhang M, Zhang Y, Chen Z. 2024. A global synthesis on the rational management practices for enhancing phosphorus use efficiency in agricultural systems. Agriculture Ecosystems & Environment.
[5] Liu X, Zhang Y, Wang Z, Chen Z. 2024. The contribution of organic and chemical fertilizers on the pools and availability of phosphorus in agricultural soils based on a meta-analysis. European Journal of Agronomy.
[6] Liu X, Sun D, Huang H, Zhang J, Zheng H, Jia Q, Zhao M. 2024. Rice-fish coculture without phosphorus addition improves paddy soil nitrogen availability by shaping ammonia-oxidizing archaea and bacteria in subtropical regions of South China. Science of The Total Environment.
[7] Liu X, Chen Y, Zheng H, Sun D, Zhang J, Jia Q, Chen Q. 2024. Rice-fish coculture without phosphorus addition improves phosphorus availability in paddy soil by regulating phosphorus fractions partitioning and alkaline phosphomonoesterase encoding bacterial community, Pedosphere.
[8] Liu X, Wu C, Jiang D, Zhang Y, Chen Z. 2024. Biochar application regulates organic phosphorus fractions and the release of available phosphorus in farmland soil. Journal of the Science of Food and Agriculture.
[9] Liu X, Jia Q, Sun D, Zhang J, Zheng H, Chen Y. 2024. Influence of nitrogen substitution at an equivalent total nitrogen level on bacterial and fungal communities, as well as enzyme activities of the ditch bottom soil in a rice–fish coculture system. Journal of the Science of Food and Agriculture.
[10] Liu X, Shi Z, Bai H, Zhang J, Sun D, Chen Y. 2023. Soil carbon sequestration in paddy field and its simultaneous mineralization to supply available nutrients for the crops are affected by no-tillage with straw management: A meta-analysis. Applied Soil Ecology.
[11] Liu X, Jiang N, Jing G, Wang S, Chen Z, Zhang Y. 2023. Amending biochar affected enzyme activities and nitrogen turnover in Phaeozem and Luvisol. Global Change Bioenergy bioenergy.
[12] Liu X, Chen Q, Zhang H, Zhang J, Chen Y, Yao F, Chen Y. 2023. Effects of exogenous organic matter addition on agricultural soil microbial communities and relevant enzyme activities in southern China. Scientific Reports.
[13] Liu X, Shi Z J, Zhang J E, Sun D L, Wei H. 2022. Effects of integrated rice-animals co-culture on paddy soil and water properties and rice yield: a meta-analysis. Archives of Agronomy and Soil Science.