教育经历
2000年9月至2003年6月 中国农业大学资源与环境学院 植物营养学专业 博士
1989年9月至1992年6月 吉林农业大学土壤农化系 作物营养与施肥专业 硕士
1985年9月至1989年6月 吉林农业大学土壤农化系 土壤农化专业 本科
社会职务
1.第四届、第五届全国农业专业学位研究生教育指导委员会委员
2.农业农村部科学施肥专家指导组专家
3.中国土壤学会常务理事、教育委员会副主任委员
4.中国植物营养与肥料学会常务理事、新型肥料专业委员会副主任委员、化学肥料专业委员会副主任委员
5.中国自然资源学会农业资源利用专业委员会副主任委员
6.中国农学会农业资源与环境分会委员
7.吉林省土壤学会副理事长
8.吉林省黑土地保护专家委员会成员
9.中国植物营养与肥料学会常务理事
荣誉奖励
1.玉米养分高效利用机理与高产高效技术模式创新及应用,吉林省科技进步二等奖,2021,第一完成人。
2.植物源油脂包膜肥控释关键技术创建与应用,国家科技进步二等奖,2019,第四完成人。
3.不同生产工艺复混(合)肥施用效果及工艺优化技术研究与应用,吉林省科技进步二等奖,2015,第一完成人。
4.吉林省春玉米最佳养分管理技术研究与应用,吉林省自然科学学术成果奖(二等奖),2013,第一完成人。
教学项目
1.本科:国家级一流本科课程《作物施肥原理与技术》负责人
主讲《土壤农化分析》和《肥料加工工艺学》
2.硕士:《养分资源综合管理》、《新型肥料的研制与应用》、《农化产品高效利用与管理(案例)》
3.博士:《高级植物营养学》、《农业资源与环境科学进展》
科研项目
(一)纵向项目
1.国家重点研发计划项目课题,风沙土区风蚀防控和高效用水型的梨树模式研发与示范2022YFD1500703 2022-2027 ,370万元,主持
2.吉林省重大科技专项,吉林省旱区玉米绿色丰产水肥药精准调控技术研发与应用(20230302001NC)2023-2025,90万元,主持
3.农业部重大专项,高产高效肥水管理技术创新与示范NK2022180804,2022-2023,24万元,主持
4.中国科学院 A 类战略性先导科技专项,秸秆覆/混还田模式下的玉米高效施肥技术示范(XDA28080203),2021-2026,75万元,主持
5.吉林省省自然科学基金(主题引导项目), 吉林省农田土壤动物多样性分布格局及驱动机制研究. 2020-2022,19万元,主持
6.国家自然科学基金委区域创新发展联合基金,吉林黑土区主要种植模式下玉米养分水分高效利用机制(U19A2035)2020-2023,117.5万元,主持
7.吉林省重点科技研发项目,新型液体肥料施用技术与设备研发(20180201035NY),2018-2020,100万,主持
8.国家重点研发计划项目课题,配方掺混肥研制与应用模式创新(2016YFD0200403),2016-2020,1100万,主持
9.国家自然科学基金面上项目,玉米/紫花苜蓿间作系统中根系周转与水氮利用机制的研究(31471945),2015-2018,85万,主持
10.国家公益性行业(农业)科研专项课题,东北春玉米最佳养分管理技术模式与示范(201103003),2011-2015,255万,主持
11.农业重大协同推广项目,秸秆还田下的玉米高产与养分高效技术模式推广(2024XT0109),2024-2024,25万,主持
12.农业重大协同推广项目,玉米秸秆还田绿色丰产机械化生产技术模式推广,2023-2023,25万,主持
13.工程研究中心(工程实验室)条件建设,吉林省黑土地保护与利用工程研究中心自主创新能力建设,(2023C017),2023-2024,50万,主持
(二)横向项目
1. 测土配方施肥基础数据统计分析,(横20240207),2024-2024,10万,主持
2. 吉林省主要农作物含镁配方肥料技术开发项目,(横20250009),2024-2025,35万,主持
3. 东北地区单质硫肥在主要作物上的应用效果研究,(横20250003),2025-2026,5万,主持
4. 吉林省第三次全国土壤普查工作平台内业检测数据审核,(横20240140),2024-2025,76.88万,主持
5. 一种塑料地膜的降解效果评价,(横20240127),2024-2026,20万,主持
6. 新型功能型水溶肥料研发与推广应用技术开发,(横20240060),2024-2029,50万,主持
7. 吉林省第三次全国土壤普查东辽试点县剖面样点调查与采样,(横20230036),2022-2023,25万,主持
8. 黑土地保护技术指导服务,(横20230008),2022-2023,5万,主持
9. 秸秆生物质炭废弃物肥料化及应用效果研究,(横20210079),2021,50万,主持
10. 吉农沃亿佳科技研发中心,(横20210014),2021-2026,250万,主持
11. 黑土地保护利用试点项目,(横20200002),2018,20万,主持
12. 东北玉米水稻增效专用肥研发和安徽六国化工产品应用,(横20190052),2019,30万,主持
主要论文
1.Zhenling Cui, Hongyan Zhang, Xinping Chen, Chaochun Zhang, Wenqi Ma, Chengdong Huang, Weifeng Zhang, Guohua Mi, Yuxin Miao, Xiaolin Li,Gao Q, et al. Pursuing sustainable productivity with millions of smallholder farmers. Nature, 2018, 555(7696): 363-366.
2.Chen X; Cui Z; Fan M; Vitousek Peter; Zhao M; Ma W; Wang Z; Zhang W; Yan Xi; Yang J; Deng X; Gao Q; et al. Producing more grain with lower environmental costs. Nature 2014;514:486-89.
3. Li Y, Zhi-Dan Z, Jin-Jing Z, Qiang G*, Guo-Zhong F, M AA, et al. Effects of improving nitrogen management on nitrogen utilization, nitrogen balance, and reactive nitrogen losses in a Mollisol with maize monoculture in Northeast China. Environmental science and pollution research international 2016;23:4576-84.
4.Jinjing Z, Zhiyuan C, Guozhong F, Mengyao LI, Cuilan LI, Qiang G*, et al. Effects of Integrated Soil-Crop System Management on Soil Organic Carbon Characteristics in a Primosol in Northeast China. Pedosphere 2017;27:957-67.
5.Liu Y, Wang B, Wang Y, Gao Q*, Yao F, Wu H, and Sun X. 2025. Intercropping outweighs straw incorporation driving community and functional diversity of microarthropods after 5 years of tillage practices. Agriculture, Ecosystems and Environment 377:109251.
6.Pan S, Zhang Z, Liu Z, Wu L, Gao Q*, and Cai H. 2025. The combination of hydrothermal humification and biological fermentation converts straw lignocellulose into artificial fulvic acid. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES 314:144359.
7.Pan S, Zhang B, Zhao S, Gao Q*, and Zhang Z. 2025. The use of solid-state fermentation to address the treatment of papermaking black liquor and improve the quality of fermented products. Industrial Crops & Products 232:121328.
8.Shi X, Wang L, Wei Z, Zhang L, and Gao Q*. 2025. Comparative Effects of Fertilizer Efficiency Enhancers on Nitrogen Use Efficiency and Greenhouse Gas Emissions in Agriculture. Agronomy 15 (2):459.
9.Dong S, Zhang B, Wang Z, Zhou X, Gao Q*. 2024. Responses of soil bacterial communities and maize yields to sulfur application across four soil types.FRONT MICROBIOL 15:1329938
10.Yingjie Su, Yanran Wang, Guoqing Liu, Zhongqing Zhang, Xiaoyu Li, Guang Chen, Zechang Gou*, Qiang Gao*,Nitrogen (N) “supplementation, slow release, and retention” strategy improves N use efficiency via the synergistic effect of biochar, nitrogen-fixing bacteria, and dicyandiamide,Science of The Total Environment,Volume 908,2024,168518,
11.Dong S, Zhang B, Wang Z, Zhou X*, Gao Q*. Responses of soil bacterial communities and maize yields to sulfur application across four soil types. Front. Microbiol, 15:1329938.
12.Xiaoyu Li, Yin Wang*, Guozhong Feng, Zhuo Xu, Fanchao Meng, Qiang Gao*. Differential fertilizer nitrogen fates in maize cropping system among three soil textures based on 15N. Field Crops Research, 2023, 291.
13.Chunyu Zheng, Chunlin Li, Longbing Tian, Zhaoyin Shen, Guozhong Feng, Wenfeng Hou, Fulai Liu, Qiang Gao, Yin Wang*. Mixture of controlled-release and normal urea to improve maize root development, post-silking plant growth, and grain filling. European Journal of Agronomy, 2023, 9.
14.Gaoxu Wang, Zechang Gou, Geng Tian, Wenyue Sima, Jiafeng Zhou, Zhenghao Bo, Zhongqing Zhang*, Qiang Gao*. Study on the effectiveness and mechanism of a sustainable dual slow-release model to improve N utilization efficiency and reduce N pollution in black soil. Science of the Total Environment. 2023.10. 168033
15.Fang Yang, Yudie Zhang, Hongyi Zhang, Jingwen Hu, Wenjing Zhu, Lei Liu, Haitao Liu, Shah Fahad, Qiang Gao*. Comparative physiological and transcriptome analysis of leaf nitrogen luxes in stay-green maize during the vegetative stage. Plant Physiology and Biochemistry.2023, 10.
16.Yingjie Su, Yanran Wang, Guoqing Liu, Zhongqing Zhang, Xiaoyu Li, Guang Chen, Zechang Gou*, Qiang Gao*. Nitrogen (N) “supplementation, slow release, and retention” strategy improves N use efficiency via the synergistic effect of biochar, nitrogen-fixing bacteria, and dicyandiamide. Science of the Total Environment. 2023.168518
17.Xiaoyu Li, Xiaoyan Zhang, Shaojie Wang, Wenfeng Hou and Li Yan *. The Combined Use of Liquid Fertilizer and Urease/Nitrification Inhibitors on Maize Yield, Nitrogen Loss and Utilization in the Mollisol Region. Plants-Basel, 2023, 12, 1486.
18.Lingchun Zhang, Xinyue Zhang, Qiang Gao*, Li Yan*. Nitrogen Application Effect on Maize Yield, NH3, and N2O Emissions in Northeast China by Meta-Analysis. Agronomy-Basel, 2023, 13, 1479.
19.Zenghui Jia, Songyuan Zhao, Qianyue Zhang, Chenzhen Xia, Xingyu Zhang, Yue Zhang*, Qiang Gao*. Multi-stage fertilizer recommendation for spring maize at the field scale based on narrowband vegetation indices. Computers and Electronics in Agriculture, 2023, 213, 108236.
20.Zhongqing Zhang, Xiaofeng Zhao, Qiang Gao *, Hongshuo Zhao, Gaoxu Wang, Geng Tian, Jinhua Liu, Jingmin Yang. Study on the mechanism of nitrapyrin microcapsule suspension effectively improving nitrification inhibition rate in black soil. Ecotoxicology and Environmental Safety. 2023. 265. 115539
21.Fanchao Meng, Kelin Hu, Puyu Feng, Guozhong Feng, Qiang Gao*.Simulating the Effects of Different Textural Soils and N Management on Maize Yield, N Fates, and Water and N Use Efficiencies in Northeast China. Plants-Basel, 2022, 11.
22.Yue Zhang, Chenzhen Xia, Xingyu Zhang, Ye Sha, Guozhong Feng, Qiang Gao*. Quantifying the relationships of soil properties and crop growth with yield in a NPK fertilizer application maize field. Computers and Electronics in Agriculture. 2022, 198.
23.Yue Zhang, Yanyan Jiang, Zenghui Jia, Ruowen Qiang, Qiang Gao*. Identifying the scale-controlling factors of soil organic carbon in the cropland of Jilin Province, China. Ecological Indicators, 2022, 139.
24.Xiaofei Li, Shengnan Wang, Chelse Prather, Ho Yi Wan, Hui Zhu, Petri Nummi, Moshe Inbar, Qiang Gao*, Deli Wang, Zhiwei Zhong.Large herbivores facilitate an insect herbivore by modifying plant community composition in a temperate grassland. Ecology and Evolution, 2021, 11.
25.Yue Zhang, Chenzhen Xia, Xingyu Zhang, Xianhe Cheng, Guozhong Feng, Yin Wang, Qiang Gao*. Estimating the maize biomass by crop height and narrowband vegetation indices derived from UAV-based hyperspectral images. Ecological Indicators, 2021, 129.
26.Zeqiang Shao, Congcong Zheng, Johannes A Postma, Wenlong Lu, Qiang Gao*,Yingzhi Gao, Jinjing Zhang. Nitrogen acquisition, fixation and transfer in maize/alfalfa intercrops are increased through root contact and morphological responses to interspecies competition. Journal of Integrative Agriculture, 2021, 20.
27.Xiaofei Li, Anita C Risch, Dirk Sanders, Guofang Liu, Chelse Prather, Zhongnan Wang, Nazim Hassan, Qiang Gao*, Deli Wang, Zhiwei Zhong. A facilitation between large herbivores and ants accelerates litter decomposition by modifying soil microenvironmental conditions. Functional Ecology, 2021, 35.
28.Shuoran Liu, Shuai Cui, Feiyu Ying, Jamal Nasar, Yin Wang, Qiang Gao*. Simultaneous improvement of protein concentration and amino acid balance in maize grains by coordination application of nitrogen and sulfur. Journal of Cereal Science, 2021, 99.
29.Shuo ran Liu, Shuai Cui, Xue Zhang, Yin Wang, Guo hua Mi and Qiang Gao*. Synergistic Regulation of Nitrogen and Sulfur on Redox Balance of Maize Leaves and Amino Acids Balance of Grains. Frontiers in Plant Science, 04. 12 .2020 doi: 10.3389/fpls.2020.576718
30.Yin Wang, Yaqi Cao, Guozhong Feng, Xiaoyu Li, Qiang Gao*. Integrated soil–crop system management with organic fertilizer achieves sustainable high maize yield and nitrogen use efficiency in northeast china based on an 11-year field study. Agronomy, 2020, 10, 1078
31.Yin Wang, Chunlin Li, Yuxi Li, Lin Zhu, Shuoran Liu, Li Yan, Guozhong Feng & Qiang Gao*. Agronomic and environmental benefits of nutrient expert on maize and rice in Northeast China. Environmental Science and Pollution Research. 2020.8
32.Jamal Nasar, Zeqiang Shao, Qiang Gao*, Xue Zhou, Shah Fahad,ShuoranLiu, Chunlin Li, John Banda S.K, Lehlogonolo Evans Kgorutla&KhadimMuhammad Dawar. Maize-alfalfa intercropping induced changes in plant and soil nutrient status under nitrogen application. Archives of Agronomy and Soil Science, 2020, 10.
33.Zhongqing Zhang, Qiang Gao*, Jingmin Yang, Yue Li,Jinhua Liu, Yujun Wang, Hongge Su,Yin Wang, Shaojie Wang, Guozhong Feng. The adsorption and mechanism of the nitrification inhibitor nitrapyrin in different types of soils. Royal Society Open Science, 2020 7: 200259
34.Yue Zhang, Haiou Shen, Qiang Gao*, Lanpo Zhao. Estimating soil organic carbon and pH in Jilin Province using Landsat and ancillary data. Soil Science Society of America Journal. 2020; 1-12.
35.Zhongqing Zhang, Qiang Gao*, Jingmin Yang, Lujun Li, YueLic,JinhuaLiua, Yujun Wang,Hongge Su,Yin Wang, Shaojie Wang, Guozhong Feng. Effect of Soil Organic Matter on Adsorption of Nitrification Inhibitor Nitrapyrin in Black Soil. Communications in Soil Science and Plant Analysis. 2020, vol. 51, No. 7, 883–895.
36.Zeqiang Shao, Xinyu Wang, Qiang Gao*, Hua liang Zhang, Hailing Yu,Yin Wang,Jinjing Zhang, Jamal Nasar,Yingzhi Gao, Root Contact between Maize and Alfalfa Facilitates Nitrogen Transfer and Uptake Using Techniques of Foliar 15N-Labeling. Agronomy, 2020, 10, 360.
37.Zhongqing Zhang, Qiang Gao*, Jingmin Yang, Yan Wang, Jingyi Yang, Xue Zhang, Guozhong Feng, Zhiqiang Cheng, Shaojie Wang, Hongge Su. Fabrication and release behavior of nitrapyrin Microcapsules: Using modified melamine-formaldehyde resin as shell material . Science of the Total Environment, 2020, (704)135394.
38.Guozhong Feng, Xiaolong He, Coulter Jeffrey A, Yanling Chen, Qiang Gao*, Guohua Mi. Effect of limiting vertical root growth on maize yield and nitrate migration in clay and sandy soils in northeast China. Soil & Tillage Research, 2019, 195: 104407.
39.Hailing Yu, Tingting Wang, Chen Zhu, Yin Wang, Shaojie Wang, Qiang Gao*. Responses of soil biological traits and bacterial communities to nitrogen fertilization mediate maize yields across three soil types. Soil & Tillage Research, 2019, 185: 61-69.
40.Shaojie Wang, Shasha Luo, Xue Zhou, Chunling Chang, Lei Tian, Xiujun Li, Hailing Yu, Qiang Gao*, Chunjie Tian. Soil ameliorants alter physicochemical properties and fungal communities in saline-sodic soils of northeast China. Archives of Agronomy and Soil Science, 2019, 65(8): 1147-1159.
41.Yin Wang, Xinyue Zhang, Jian Chen, Anji Chen, Liying Wang, Xiaoying Guo, Yali Niu, Shuoran Liu, Guohua Mi, Qiang Gao*. Reducing basal nitrogen rate to improve maize seedling growth, water and nitrogen use efficiencies under drought stress by optimizing root morphology and distribution. Agricultural Water Management, 2019, 212: 328-337.
42.Peng Zhang, Cuilan Li, Xiuhong Xie, Qiang Gao*, Jinjing Zhang, Lichun Wang. Integrated soil-crop system management increases phosphorus concentrations and bioavailability in a primosol. Journal of Soil Science and Plant Nutrition, 2019, 19(2): 357-367
43.Li Yan, Yuanyuan Wang, Tumbalam Pavani, Tengli Zhang, Qiang Gao*, Wenjing Zhang, Daming Wei, Opoku-Kwanowaa Yaa. Spatiotemporal distribution of chemical fertilizer application and manure application potential in China. Environmental Engineering Science, 2019, 36(10): 1-12.
44.Zhenling Cui, Hongyan Zhang, Xinping Chen, Chaochun Zhang, Wenqi Ma, Chengdong Huang, Weifeng Zhang, Guohua Mi, Yuxin Miao, Xiaolin Li, Qiang Gao, et al. Pursuing sustainable productivity with millions of smallholder farmers. Nature, 2018, 555(7696): 363-366.
45.侯文峰, 高强*, 李翠兰, 王寅, 冯国忠. 新农科背景下基于VR技术的新型农学类实验教学模式设计与探索. 大学教育. 2023,66-70.
46.冯建骋, 邵贞茱, 王斌, 马权铭, 王寅, 侯文峰, 高强*. 氮钾配施对水稻冠层结构、光能分配与利用和产量形成的影响. 吉林农业大学学报,1-13.
47.崔帅, 刘烁然, 王寅, 夏晨真, 焉莉, 冯国忠, 高强*. 吉林省旱地土壤有效硫含量及其与土壤有机质和全氮的关系. 中国农业科学, 2022, 55(12): 2372-2383.
48.王寅, 高强*, 李翠兰, 焉莉, 冯国忠, 王少杰, 刘振刚, 宋立新, 房杰. 吉林省玉米施钾增产效应及区域差异. 植物营养与肥料学报, 2019, 25(8): 1335-1344.
49.曹书境, 王少杰, 王寅, 冯国忠, 焉莉, 袁月明, 杜爽, 高强*. 掺混肥常用基础肥料的物理性状及其适配性. 植物营养与肥料学报, 2019, 25(4): 647-653.
50.王寅, 徐卓, 李博凝, 高强*, 冯国忠, 李翠兰, 焉莉, 王少杰. 尿素硝铵溶液对黑土区春玉米产量和氮素吸收利用的影响. 中国农业科学, 2018, 51(4): 718-727.
51.王寅, 高强*, 冯国忠, 焉莉, 李翠兰, 宋立新, 刘振刚, 房杰. 吉林春玉米氮磷钾养分需求与利用效率研究. 植物营养与肥料学报, 2018, 24(2): 306-315.
52.张晓萌, 王寅, 焉莉, 冯国忠, 高强*. 东北地区农牧系统氮、磷养分流动特征. 中国农业科学, 2018, 51(3): 417-429.
53.冯国忠, 王寅, 焉莉, 米国华, 高强*. 土壤类型和施氮量对连作春玉米产量及氮素平衡的影响. 土壤学报, 2017(2): 444-455.
54.王寅, 张馨月, 高强*, 李翠兰, 焉莉, 冯国忠. 吉林省农田耕层土壤pH的时空变化特征. 土壤通报, 2017, 48(2): 387-391.
55.焉莉, 冯国忠, 兰唱, 高强*. 基于GIS的吉林省水稻种植区施氮效果及减排潜力分析. 中国农业科学, 2017, 50(17): 3365-3374.
56.张晓萌, 王寅, 焉莉, 高强*. 长春地区食物链氮素养分流动趋势与特征分析. 自然资源学报, 2017, 32(2): 255-265.
57.王寅, 郭聃, 高强*, 焉莉, 宋立新, 刘振刚. 吉林省不同生态区玉米施氮效果与氮肥利用效率差异. 土壤学报, 2016, 53(6): 1464-1475.
58.王寅, 冯国忠, 焉莉, 高强*, 宋立新, 刘振刚, 房杰. 吉林省玉米施肥效果与肥料利用效率现状研究. 植物营养与肥料学报, 2016, 22(6): 1441-1448.
59.王寅, 冯国忠, 张天山, 茹铁军, 袁勇, 高强*. 控释氮肥与尿素混施对连作春玉米产量、氮素吸收和氮素平衡的影响. 中国农业科学, 2016, 49(3): 518-528.
60.焉莉, 王寅, 冯国忠, 杜晓晴, 刘烁然, 操梦颖, 高强*. 不同施肥管理对东北黑土区氮损失的影响. 农业环境科学学报, 2016, 35(9): 1816-1823.
研究著作
1.《我国肥料的环境效应及减排潜力分析》,吉林科学技术出版社,2020年,主编
2.《东北粮食主产区农业适应气候变化理论与技术》,科学出版社,2017年,参编
3.《农业资源与环境专业实验技术指导》,吉林大学出版社,2016年,参编
4.《高产高效养分管理技术创新与应用》,中国农业大学出版社,2016,参编
《高产高效现在农业之路探索》,中国农业大学出版社,2012,参编
出版教材
1.《测土配方施肥土壤基础养分数据集》,中国农业大学出版社,2015年,参编
2.《中国肥料发展研究报告2012》,中国农业大学出版社,2013年,参编
3.《高产高效现代农业之路探索》,中国农业大学出版社,2012年,主编
4.《主要作物高产高效技术规程》,中国农业大学出版社,2010年,参编
5.《中国主要作物施肥指南》,中国农业大学出版社,2009年,参编
6.《“科技小院”助力通榆县脱贫攻坚模式探索与实践》吉林科学技术出版社 2020 主编
7.《中国农业绿色发展理论与实践》, 中国农业大学出版社,2022年, 参编
授权专利
1.一种水稻秸秆沟埋还田大垄双行整地一体设备:202411063606.X[P].2025-01-21.
2.一种可实现两侧平衡的作物分根土培装置及试验方法:202311646184.4[P].2024-11-22.
3.寒地水稻秸秆秋季沟埋还田大垄双行整地一体机及方法:202410309164.6[P].2024-08-09.
4.一种水稻高速插秧同步施肥一体机:202310865493.4[P].2024-03-12.
5.一种便携式田间区域划定辅助器及其划定方法:202110732203.X[P].2023-10-24.
6.一种多功能稻田取土器:202323141234.1[P].2024-07-12.
7.一种便携式取土器:202322571707.5[P].2024-04-26.
8.一种具有幼苗移动功能的水稻育苗棚:202223561884.7[P].2023-07-04.
9.一种精确深度取土的取土器:202222191089.7[P].2023-01-03.
10.一种新型水稻收割设备:202222097850.0[P].2022-11-18.
11.一种便携式小型立式多功能玉米脱粒机:202123159978.7[P].2022-06-14.
12.一种智能液体肥料施用装置:202120933475.1[P].2021-11-16.
软件著作
1.水稻插秧机自适应根区精量施肥系统V1.0 , 2025年
2.东北春玉米连作体系精准施肥决策系统 , 2024年
3.农业施肥灌溉管控系统 V1.0 , 2024年
4.农业施肥方法应用效果评价系统 V1.0 , 2024年
5.一种水稻插秧机肥料精良控制系统V1.0 V1.0 , 2024年
6.农作物和土壤放射性同位素示踪实验虚拟仿真平台V1.0 , 2023年
7.农作物和土壤放射性同位素示踪实验虚拟仿真平台V1.0 , 2021年
8.液体肥料施用系统控制平台V1.0 , 2021年