连加攀

2024年11月25日 09:05  点击:[]

连加攀,助理教授,博士硕士生导师

邮箱:Ljiapan@gxu.edu.cn

研究方向

植物营养智能化递释系统与精准施肥; 植物逆境生理和作物养分高效吸收利用;污染土壤修复及作物安全生产

已所属区级或者校级平台名称:

广西甘蔗生物学重点实验室、广西农业环境与农产品安全重点实验室

个人简介:

2017和2020年在湖北大学和南开大学环境工程专业分别获学士和硕士学位,2024年在浙江大学环境与资源学院获得农学博士学位。2024年7月至今,正式加入广西大学亚热带农业生物资源保护与利用国家重点实验室。

科研成果:

主要从事植物营养智能化递释系统与精准施肥领域的研究,聚焦于纳米材料在农作物中的应用及其环境影响。近年来,在叶面纳米肥料的开发与优化、植物微量元素营养强化及污染土壤修复方面取得了一系列创新性成果。特别是,通过研究叶面喷施铁、锌基纳米肥料对作物镉/锰污染阻控和营养强化的作用机制,揭示了纳米材料在植物叶面沉积、吸收及转运中的独特功能;并开发了绿色合成技术优化纳米氧化锌铁肥料性能,实现了作物产量与品质的同步提升。博士期间,作为第一或通讯作者在包括Journal of Hazardous Materials、Environmental Science: Nano、ACS Sustainable Chemistry & Engineering等国际权威期刊发表SCI论文11篇(中科院一区7篇),其中3篇为ESI(前1%)高被引论文,总引用2400余次,H指数为18。其研究成果为农作物营养与环境友好型智慧农业发展提供了重要的理论指导和实践参考。

科研项目:

1. 浙江省科技厅“尖兵”计划项目,浙西南地区“非粮化”“非农化”整治中粮油作物高效复合种植技术研发与集成示范,2023/01-2025/12,1600万元,参与。

2. 广西大学高层次人才启动经费,2024/07-2027/07, 40万元,主持

3. 广西大学24示范性产业学院项目,纳米铁肥防治甘蔗苗期黄化应用与示范,2024/10-2025/10, 10万元,主持

代表性论文:

(1) Lian, J., et al., Yang, X*, Jason White. Foliar application of iron-based nanofertilizers on wheat grown in Cd-contaminated field: Implication for food safety and biofortification. Environmental Science: Nano, 2024. 11:2577-2590.

(2). Lian, J., et al., Yang, X*, Jason White. Bespoke ZnO NPs Synthesis Platform to Optimize Their Performance for Improving Grain Yield, Zinc Biofortification and Cd Mitigation in Wheat. ACS Sustainable Chemistry & Engineering, 2024.12:716-727.

(3). Lian, J., et al., Yang, X*. Zinc glycerolate (Glyzinc): A novel foliar fertilizer for zinc biofortification and cadmium reduction in wheat (Triticum aestivum L.). Food Chemistry, 2023. 402, 134290.

(4). Lian, J., et al., Yang, X*.  Foliar spray of combined metal-oxide nanoparticles alters the accumulation, translocation and health risk of Cd in wheat (Triticum aestivum L.). Journal of Hazardous Materials, 2022. 440: 129857.

(5). Lian, J., et al., Liu W.*, Zhou, Q. *.  Nanotoxicological effects and transcriptome mechanisms of wheat (Triticum aestivum L.) under stress of polystyrene nanoplastics. Journal of Hazardous Materials, 2022. 423: 127241.

(6). Lian J., et al., Liu W*. Impact of polystyrene nanoplastics (PSNPs) on seed germination and seedling growth of wheat (Triticum aestivum L.). Journal of Hazardous Materials, 2020. 385: 121620.

(7). Lian, J., et al., Liu W.*. Effects of microplastics derived from polymer-coated fertilizer on maize growth, rhizosphere, and soil properties. Journal of Cleaner Production, 2021.318: 128571.

(8). Wang, X. Zhai, X., Lian, J*., Yang, X*. Varietal responses to a soil amendment: Balancing cadmium mitigation and mineral biofortification in wheat production. Science of the Total Environment, 2024. 926:171772.

(9). Lian, J., et al., Liu W.*, Sun Y*.  Foliar-applied polystyrene nanoplastics (PSNPs) reduce the growth and nutritional quality of lettuce (Lactuca sativa L.). Environmental Pollution, 2021.280: 116978.

(10). Lian J., et al., Liu W*.  Do polystyrene nanoplastics affect the toxicity of cadmium to wheat (Triticum aestivum L.)?  Environmental Pollution, 2020.263: 114498.

(11). Lian J., et al., Liu W*. Foliar spray of TiO2 nanoparticles prevails over root application in reducing Cd accumulation and mitigating Cd-induced phytotoxicity in maize (Zea mays L.). Chemosphere, 2020.239: 124794.




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