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金峰

日期:2025-10-20 点击数: 来源:

联系方式

电话: 0431-87836260

E-mail: jinfeng2025@jlu.edu.cn

通讯地址:长春市西安大路5333号,PA集团官网


教育经历

2010-09至2013-06 沈阳农业大学 博士

2005-09至2008-06 沈阳农业大学 硕士

2001-09至2005-06 沈阳农业大学 学士

2022-12 2023-12 京都大学(日本)访问学者


工作经历

2025-09至今 PA集团官网 教授

2023-012025-09 吉林农业大学 教授

2016-092022-12 吉林农业大学 副教授

2013-09至2016-09 吉林农业大学 讲师


主要学术兼职

国家重点科技研发项目评审专家;国家自然科学基金网评专家;全国研究生教育评估监测专家;中国作物学会会员(2022-2027);中国植物营养与肥料学会第十届(2022-2027)委员;吉林省水稻品种审定委员会委员;吉林省科技项目评审专家;吉林省科技特派员;《Biochar》期刊青年编委(2024-2029);《北方水稻》期刊编委(2025-2030);吉林省乡村振兴专家服务团成员


教学情况

本科生课程:作物栽培学总论;作物栽培学各论;农学概论;农业生产实践

研究生课程:作物科学研究进展;作物栽培研究法

国际留学生(研究生)课程:Research Methods in Crop Science


主要研究方向

作物产量与效率差异形成机理及缩差增效技术

盐碱地作物逆境生理基础与关键调控技术


代表性课题

国家自然科学基金面上项目生物炭对苏打盐碱稻田水稻离子积累与养分吸收的调控机制,主持;

国家自然科学基金联合基金—东北粳稻基因组籼粳组分对产量和品质影响机理,主持;

国家重点研发计划项目课题—黑土稻区抗逆丰产增效关键技术研究与模式构建,主持;

国家重点研发计划项目子课题—东北粳稻产量与效率层次差异形成机制与丰产增效途径,主持;

国家重点研发计划项目子课题—水肥热耦合技术和抗逆丰产增效关键技术模式构建及规程制订,主持;

吉林省自然科学基金面上项目—生物炭调控苏打盐碱地水稻离子积累及养分吸收的土壤微生物学驱动机制,主持;

吉林省教育厅重点项目—生物炭与化学肥料互作对苏打盐碱稻田土壤理化性质及水稻肥料利用效率的影响及其机制,主持;

吉林省重点科技攻关项目—施用生物炭提升松嫩平原苏打盐碱稻田土壤生产能力关键技术研究与示范,主持;

吉林省青年科研基金项目—生物炭对苏打盐碱地水稻生长发育特性的影响及其效应机制,主持;

吉林教育厅“十三五”科学技术项目(重点项目)—生物炭对苏打盐碱地稻田土壤理化性质及水稻生长发育的影响,主持


代表性论文(第一作者或通讯作者)

Optimal agronomic measures combined with biochar increased rice yield through enhancing nitrogen use efficiency in soda saline-alkali fields. European Journal of Agronomy 2024, 161: 127365.

Long-term effects of biochar one-off application on soil physicochemical properties, salt concentration, nutrient availability, enzyme activity, and rice yield of highly saline-alkali paddy soils: based on a 6-year field experiment. Biochar 2024, 6:4. https://doi.org/10.1007/s42773-024-00332-3.

Biochar Improves Yield by Reducing Saline–Alkaline Stress, Enhancing Filling Rate of Rice in Soda Saline–Alkaline Paddy Fields. Plants 2024, 13,2237.

Biochar Increases Rice Yield in Soda Saline-Alkali Paddy Fields by Improving Saline-Alkali Stress and Phosphorus Use Efficiency. Agronomy 2024, 14,2159.

Biochar Application Reduces Saline–Alkali Stress by Improving Soil Functions and Regulating the Diversity and Abundance of Soil Bacterial Community in Highly Saline–Alkali Paddy Field. Sustainability 2024, 16, 1001. https://doi.org/10.3390/su16031001.

Response of soil physicochemical properties, soil nutrients, enzyme activity and rice yield to rice straw returning in highly saline-alkali paddy soils. Journal of Soil Science and Plant Nutrition, 2023, https://doi.org/10.1007/s42729-023-01358-5.

Application of peanut shell biochar increases rice yield in saline-alkali paddy fields by regulating leaf ion concentrations and photosynthesis rate. Plant and Soil, 2022, https://doi.org/10.1007/s11104-022-05767-w.

Effects of Peanut Shell Biochar on Soil Nutrients, Soil Enzyme Activity, and Rice Yield in Heavily Saline-Sodic Paddy Field. Journal of Soil Science and Plant Nutrition, 2021, https: // doi.org /10.1007/s42729-020-00390-z.

Effects of Short-Term Rice Straw Return on the Soil Microbial Community. Agriculture -BASEL, 2021, 11, 561.

Benefits of Biochar for Improving Ion Contents, Cell Membrane Permeability, Leaf Water Status and Yield of Rice Under Saline-Sodic Paddy Field Condition. Journal of Plant Growth Regulation, 2020, https://doi.org /10.1007/ s00344 -019- 09988 -9.

Soil organic carbon characteristics affected by peanut shell biochar in saline-sodic paddy field. Plant Soil Environ., 2022, 2: 108-114.

Effects of biochar on sodium ion accumulation, yield and quality of rice in saline-sodic soil of the west of Songnen plain, northeast China. Plant Soil Environ., 2018, 64: 612-618.

Biochar increases rice yield by improving root morphological and root physiological functions in heavily saline-sodic paddy soil of northeast China. BioResources, 2022, 17(1), 1421-1456.

Peanut Shell Biochar’s Effect on Soil Physicochemical Properties and Salt Concentration in Highly Saline-Sodic Paddy Fields in Northeast China. BioResources, 2022, 17(4): 5936-5957

Effect of Environment and Genetic Recombination on Subspecies and Economic Traits Differentiation in a Continuous Filial Generation of Indica-Japonica Hybridization, Journal of Integrative Agriculture, 2014, 13(1): 60345-7.

Comparisons of Plant-type Characteristics and Yield Components in Filial Generations of Indica × Japonica Crosses Grown in Different Regions in China. Field Crops Research, 2013, 154: 110-118.

水稻超高产株型模式的生理生态基础及籼粳亚种分化环境响应机制, 中国农业科学技术出版社, 2020, ISBN: 978-7-5116-4861-7.

苏打盐渍土水稻水分调控的生理生态机制, 中国农业出版社, 2020, ISBN: 978-7-109-27308-5.

粮食作物产量与效率层次差缩差增效理论与技术,科学出版社,2023,ISBN: 978-7-03-072691-9.

 

学术荣誉

吉林省高校优秀青年科研创新人才;

吉林省省域拔尖人才(D类);

吉林省科技进步二等奖,“水稻机械覆膜装备及配套绿色生产技术研发与应用”,2021(2)

吉林省科技进步二等奖,“苏打盐渍化水田节水培肥高效生产技术集成与示范”,2018(3)

吉林省科技进步一等奖,“赤眼蜂高效利用与生产关键技术研究及其大面积推广应用”,2014(13)

吉林省自然科学学术成果二等奖,“生态环境对籼粳稻杂交后代株型性状分化的影响及其机制”,2014(1)

 

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