个人简介
工作简历:姜存仓(Prof. Dr.Jiang Cuncang):男,籍贯山东,博士,教授,博士生导师,华中农业大学资源与环境学院工作。于2006年获博士学位,毕业后留校任教。于2020年9月至2023年7月作为中组部第十批援疆干部在石河子大学农学院任职副院长,曾任资源环境学院土壤与植物营养系主任(2015-2020),是院教学指导委员会委员和学位评定分委员会委员;于2012年4月到2013年4月在英国洛桑研究所(Rothamsted Research Institute )做访问学者,曾到美国、丹麦、土耳其和加拿大等地进行学习和交流。
学术兼职:是农业部长江中下游耕地保育重点实验室、湖北省自然科学基金创新群体、新型肥料湖北省工程实验室、微量元素研究中心固定研究人员;是中国中微肥创新联盟理事长,中国植物营养与肥料学会“养分循环专业委员会”副主任委员、“新型肥料专业委员会”委员,湖北省土壤肥料学会第十一届理事会理事;是湖北省标准化与质量研究院标准评审、教育部学位中心论文评审、国家自然科学基金评审等专家;是Front Plant Sci、Sci Rep、J Plant Sci、《植物营养与肥料学报》、《肥料与健康》编委, 是New Phytol、J Hazard Mater、Plant Soil、中国农业科学、植物营养与肥料学报等审稿专家。
科研领域:研究方向为养分调控及资源高效利用,致力于解决作物生长势弱、叶片黄化以及土壤障碍等瓶颈问题,通过图谱分析和多组学联用,在作物微量元素营养诊断、新型肥料研制和土壤地力提升等方面取得系列创新成果。主持3项国家自然科学基金, 1项国家重点研发项目子课题, 1项国家科技支撑计划子课题, 2项国家公益性行业农业科研专项子课题, 2项国际合作, 1项国家农业产业技术体系岗位科学家项目, 3项中央高校基本科研专项, 多项公司合作研发课题。
研究成果:以第一或通讯作者发表论文170余篇,其中在 Crit Rev Environ Sci Technol、J Hazard Mater、Environ Exp Bot、Plant Soil等发表SCI 80多篇,其中一区和二区50余篇,TOP期刊近40篇,IF>10的 13篇,相关研究结果在New Phytol、J Exp Bot、Environ Sci Technol等上被引用2600余次,H指数30。主编专著2部, 参编著作4部, 授权国家发明专利7项, 制定省级技术标准1项。已培养博士后2人,博士17人,硕士29人。荣获湖北省优秀博士学位论文指导教师、中国植物营养与肥料学会优秀博士学位论文指导教师、校优秀教学成果奖一等奖、校“教书育人”优秀导师奖;指导“挑战杯”湖北省大学生创新创业大赛获金奖,校“神农杯”、“互联网+”等大学生创新创业竞赛获特等奖和金奖等。
一、教学情况
教授课程:
•研究生课程:农业资源利用技术;植物营养研究专题;资源环境研究进展
•本科生课程:新型肥料研制及应用;土壤肥料学;无土栽培学 ;农业废弃物综合利用
教研情况:
•华中农业大学“双百案例课程”建设,《新型肥料的研制及应用》,2020,主持
• 华中农业大学教育教学改革与质量提升计划项目(Z201102):农业资源与环境教学实践基地运行模式与管理机制创新研究,2011,主持
•教育部高校自然保护与环境生态类专业教学指导委员会全国“植物营养学”课程骨干教师培训,结业,2015
•高校师资“一流本科课程建设应用与申报实战工作坊”学堂在线培训班,结业,2020
•国家首批一流本科课程,《植物营养学》,2020,成员
•湖北省精品资源共享课,《无土栽培学》,2016,成员
•湖北高校省级优秀基层教学组织,植物营养与肥料学教研室,2021,成员
•湖北省高等学校教研项目,农资专业生产实践能力培养类课程“多元化”考核方式建立与实践, 2013, 成员
•华中农业大学新农科和新工科研究与改革实践项目(xnk2020037):校企合作协同培养农业资源与环境和生态学创新人才的模式与实践,2021,成员
•华中农业大学教育教学改革与实践计划(2007D48):农业资源与环境专业3门相关课程研究型教学方法及考核方法改革与实践,2007, 成员
•华中农业大学2020年度“名师工作室”,2020,成员
•华中农业大学《根系生物学》研究生专业类精品示范课课程建设项目,2019,成员
•华中农业大学第四批慕课《植物营养学》(MOOC)课程立项建设,2017,成员
•华中农业大学《土壤肥料学》优秀教学团队建设(2007C27),2007,成员
•华中农业大学教学成果一等奖,农业院校环境大类本科人才培养模式创新与实践,2020,成员
•全国大学生创业大赛第九届“挑战杯”大学生创业计划赛,铜奖,2014,指导教师
•湖北省大学生创业大赛创业计划赛 金奖,2014,指导教师
•湖北省2013年暑期“三下乡”社会实践活动优秀团队,2013,指导教师
•华中农业大学第五届“互联网+”大学生创新创业大赛 金奖,2019,指导教师
• 华中农业大学第四届“互联网+”大学生创新创业大赛 银奖,2018,指导教师
•华中农业大学第三届“互联网+”大学生创新创业大赛 铜奖,2017,指导教师
•华中农业大学第九届“神农杯”大学生创新大赛计划赛 特等奖,2018,指导教师
•华中农业大学第16届研究生指导教师 “教书育人奖”,2019
•华中农业大学“社会服务工作先进个人”,2016
•华中农业大学“教学质量优秀二等奖”,2009
• 华中农业大学资源与环境学院2018年度“就业创业工作先进个人”,2018
• 华中农业大学资源与环境学院2016年度“就业创业工作先进个人”,2016
二、科学研究 :在研项目及已结题项目
•国家自然科学基金(42167042):生物炭调控新疆棉田土壤钾素有效性及其微生物学机制, 主持, 2022.01-2025.12
•国家重点研发计划课题(2023YFD1900904):“土壤-植物-食品-人体”健康共同体中微量元素提质增效的生态强化技术, 主持, 2023.12-2027.12
•国家重点研发计划课题(2023YFD1700204): 增值中微量元素肥料产品创制与产业化, 参加, 2023.04-2027.12
•国家自然科学基金(41271320) : 不同砧木纽荷尔脐橙叶片黄化差异的硼调控及代谢机制研究, 主持, (2013.01-2016.12)
•国家自然科学基金(40801112) : 不同钾效率棉花基因型对土壤钾库和外源钾吸收利用差异的内在机制,主持,(2009.01-2011.12)
•国家自然科学基金(40571090): 水旱轮作下根土互作对土壤钾素形态转化及其有效性影响,参加(2006-2008)
•国家自然科学基金(30871687): 柑橘砧木耐缺硼胁迫能力差异的分子机理研究,参加(2009-2011)
•国家自然科学基金(40701076): 水肥耦合对不同磷效率水稻根-土界面磷生物有效性的影响,参加(2008-2010)
•国家重点研发计划(2017YFD0200803): “生物炭基肥料及微生物肥料研制”子课题: 生物炭基肥料果树化肥减施技术集成与模式构建, 主持,(2017.07-2020.12)
•国家公益性行业(农业)科研专项(201303095): “秸秆生物炭农业应用关键技术研究与示范” 子课题:“生物质炭改良南方酸性土壤与柑橘品质提升的关键技术示范”, 主持, (2013-2017)
•国家科技支撑计划(2007BAD61B01)子课题:赣南脐橙非病原性生理病害的成因研究与防治示范, 主持,( 2007-2010)
•国家脐橙工程技术研究中心协同创新(2014QC03): 果园酸性土壤修复技术研究与脐橙专用有机肥研制, 主持,(2014.10-2017.12)
•国家产业技术体系岗位科学家团队成员: 柑橘微肥施用与缺素矫正应用,参加 (2011-2015)
•国家公益性行业农业科研专项(201203013):钾肥高效利用与钾素替代技术研究,参加 (2012-2016)
•中央高校基本科研业务费专项(2662017PY055): 基于有机活性物质的多功能微肥研发, 主持, (2017.01-2019.12)
•中央高校基本科研业务费专项资金(2011PY048): 不同砧木脐橙叶片黄化效应的硼营养差异机理研究,主持,(2011.05-2012.12)
•中央高校基本科研业务费专项资金(2013PY093): 不同硼敏感型柑橘砧木根系对低硼胁迫的微观响应及耐受机制,主持,(2013.01-2015.12)
•华中农业大学自主科技创新基金(2012YB18): 枳橙砧木与枳壳砧木‘纽荷尔’脐橙硼营养差异及其调控机理, 主持,(2012.05-2014.05)
•国际技术合作(IPNI-Hubei-37): 主持, (2010.01-2012.12)
•国际技术合作(IPNI-Hubei-29): 主持, (2007.05-2009.12)
•横向合作(公司):新型肥料的研制开发与试验示范, 主持, (2015.10-2018.10)
•横向合作(公司):有机物料(草炭)资源化综合应用及试验示范, 主持, (2018.09-2021.09)
•横向合作(公司): 液态肥及新型专用肥的研制开发与试验, 主持, (2006-2009)
•华中农业大学青年教师科研启动(2006XRC068): 主持, (2007-2009)
三、主要代表性论文:20篇SCI和中文(*为通讯作者)
(1) Yan Lei, Riaz Muhammad, Jiayou Liu, Liu Yalin, Yu Zeng, Cuncang Jiang*, 2021, Boron reduces aluminum deposition in alkali-soluble pectin and cytoplasm to release aluminum toxicity, Journal of Hazardous Materials, 401: 123388(一区,TOP,IF:14.224)
(2) Lei Yan, Shuang Li, Muhammad Riaz, Jin Cheng , Yu Liu, Jihong Liu*, Cuncang Jiang*, 2022, Boron contributes to excessive aluminum tolerance in trifoliate orange (Poncirus trifoliate (L.) Raf.) by inhibiting cell wall deposition and promoting vacuole compartmentation, Journal of Hazardous Materials, 437: 129275(一区,TOP,IF:14.224)
(3) Zhang Mengyang, Zhang Lin, Riaz Muhammad, Xia Hao, Cuncang Jiang*, 2021. The novel insights into biochar-amended citrus producing-area: from soil environment to fruit quality, Journal of Cleaner Production, 292:126062(一区,TOP,IF:11.072)
(4) Mengyang Zhang; Muhammad Riaz; Hao Xia; Yuxuan Li; Xiangling Wang; Cuncang Jiang*, 2022.Four-year biochar study: Positive response of acidic soil microenvironment and citrus growth to biochar under potassium deficiency conditions, Science of the Total Environment, 813:152515(一区,TOP,IF:10.753)
(5) Zhang Mengyang, Riaz Muhammad, Liu Bo, Xia Hao, Zeinab El-Desouki, Cuncang Jiang*, 2020. Two-year study of biochar: Achieving excellent capability of potassium supply via alter clay mineral composition and potassium-dissolving bacteria activity, Science of the Total Environment, 717: 137286(一区,TOP,IF:10.753)
(6) Zhang Mengyang, Riaz Muhammad, Xia Hao,Zhang Lin, Zeinab El-Desouki, Cuncang Jiang*, 2019. Response of fungal communities in different soils to biochar and chemical fertilizers under simulated rainfall conditions, Science of the Total Environment, 691:654-663(一区,TOP,IF:10.753)
(7) Yan Lei, Riaz Muhammad, Liu Jiayou , Yu Min, Cuncang Jiang*, 2022, The aluminum detoxification and tolerance mechanisms in plants; recent advances and prospects, Critical Reviews in Environmental Science and Technology, 52(9):1491-1527(二区,IF:11.750)
(8) Lei Yan, Chenqing Du, Riaz Muhammad, Cuncang Jiang*, 2019, Boron mitigates H+-toxicity and root tip injuries by regulating antioxidant system, cytoplasmic and vacuole pH in the citrus roots, Environmental Pollution, 255:113254(二区,TOP,IF:9.988)
(9) Lei Yan, Riaz Muhammad, Wu Xiuwen, Du Chenqing, Liu Yalin, Cuncang Jiang*, 2018, Ameliorative effects of boron on aluminum induced variations of cell wall cellulose and pectin components in trifoliate orange rootstock, Environmental Pollution, 240:764-774(二区,TOP,IF:9.988)
(10) Wu Xiuwen, Lu Xiaopei, Riaz Muhammad, Yan Lei, Cuncang Jiang*, 2019, Boron toxicity induced different changes of the cell ultrastructure and architecture of components in different leaf segments of trifoliate orange, Journal of Environmental Management, 246:426-433(一区,TOP,IF:8.910)
(11) Muhammad R; Yan L; Wu X; Saddam H; Omar A; Wang Y; Muhammad I; Cuncang Jiang*, 2018, Boron alleviates the aluminum toxicity in trifoliate orange by regulating antioxidant defense system and reducing root cell injury, Journal of Environmental Management, 208:149-158(一区,TOP,IF:8.910)
(12) Hao Xia, Muhammad Riaz, Mengyang Zhang, Bo Liu, Yuxuan Li, Cuncang Jiang*, 2022. Biochar N fertilizer interaction increases N utilization efficiency by modifying soil C/N component under N fertilizer deep placement modes, Chemosphere, 286: 131594(二区,TOP,IF:8.943)
(13) Asad Shah, Xiuwen Wu; Abid Ullah; Shah Fahad; Riaz Muhammad; Lei Yan, Cuncang Jiang*, 2017,Deficiency and toxicity of boron: alterations in growth, oxidative damage and uptake by citrange orange plants, Ecotoxicology and Environmental Safety, 145:575-582(一区,TOP,IF:7.129)
(14) Muhammad Riaz, Lei Yan, Xiuwen Wu, Saddam Hussain, Omar Aziz, Muhammad Imran, Muhammad Shoaib Rana, Cuncang Jiang*, 2018, Boron reduce Aluminum-induced growth inhibition, oxidative damage and alterations in the cell wall components in the roots of trifoliate orange. Ecotoxicology and Environmental Safety, 153: 107-115(一区,TOP,IF:7.129)
(15) Lin Qingyi, Zhang Lin, Riaz Muhammad, Zhang Mengyang, Xia Hao, Lv Bo, Cuncang Jiang*, 2018. Assessing the potential of biochar and aged biochar to alleviate aluminum toxicity in an acid soil for achieving cabbage productivity, Ecotoxicology and Environmental Safety,161: 290-295(一区,TOP,IF:7.129)
(16) Muhammad Riaz, Lei Yan, Xiuwen Wu, Saddam Hussain, Omar Aziz, Muhammad Imran, Muhammad Shoaib Rana, Cuncang Jiang*, 2018, Boron reduce Aluminum-induced growth inhibition, oxidative damage and alterations in the cell wall components in the roots of trifoliate orange. Ecotoxicology and Environmental Safety, 153: 107-115(一区,TOP,IF:7.129)
(17) Muhammad Riaz, Lei Yan, Xiuwen Wu, Saddam Hussain, Omar Aziz, Cuncang Jiang*, 2018, Mechanisms of organic acids and boron induced tolerance of aluminum toxicity: A review. Ecotoxicology and Environmental Safety, 165: 25-35(一区,TOP,IF:7.129)
(18) Xia Hao, Riaz Muhammad, Zhang Mengyang, Liu Bo, Zeinab El-Desouki, Jiang Cuncang*, 2020. Biochar increases nitrogen use efficiency of maize by relieving aluminum toxicity and improving soil quality in acidic soil. Ecotoxicology and Environmental Safety, 196: 110531(一区,TOP,IF:7.129)
(19) Wu Xiuwen, Wang Dian, Zhang Lin, Cuncang Jiang*, 2019. Biochar and potassium fertilizer interaction enhances cotton growth, yield, and potassium use efficiency, Ecotoxicology and Environmental Safety, 182: 109451(一区,TOP,IF:7.129)
(20) Yan Lei, Riaz Muhammad, Du Chenqing, Liu Yalin, Yu Zeng, Cuncang Jiang*, 2019, Ameliorative role of boron to toxicity of aluminum in trifoliate orange roots, Ecotoxicology and Environmental Safety, 179:212-221(一区,TOP,IF:7.129)
(21) Wu XW,Muhammad R,Yan L,Du CQ,Liu YL,Cuncang Jiang*, 2017, Boron deficiency in trifoliate orange induces changes in pectin composition and architecture of components in root cell walls. Frontiers in Plant Science. 8:1882(一区,TOP,IF:6.627)
(22) Riaz Muhammad, Lei Yan, Xiuwen Wu, Saddam Hussain, Omar Aziz, Cuncang Jiang*, 2018, Boron deprivation induced inhibition of root elongation is provoked by oxidative damage, root injuries and changes in cell wall structure. Environmental and Experimental Botany, 156: 74-85(一区,IF:6.028)
(23) Hao Xia, Muhammad Riaz, Mengyang Zhang, Bo Liu, Yuxuan Li, Cuncang Jiang*, 2022. Long-term amendment of peanut biochar amend acidic soil in citrus production over 2 years: Insights from maintaining soil potassium level, improving soil properties, and bacterial community, Applied Soil Ecology , 176:104485(二区,IF:5.509)
(24) Zhang Mengyang, Riaz Muhammad, Zhang Lin, Xia Hao, Cuncang Jiang*, 2019. Effects of biochar and fertilizer on bacterial community composition and functional diversity in red soil, Applied Soil Ecology, 139:107-116(二区,IF:5.509)
(25) Cheng Jin, Riaz Muhammad, Yan Lei, Cuncang Jiang*, 2022, Increasing media pH contribute to the absorption of boron via roots to promote the growth of citrus. Plant Physiology and Biochemistry, 178:116-124.(二区,IF:5.437)
(26) Lei Yan, Shuang Li, Jin Cheng , Yaru Zhang, Cuncang Jiang*, 2022, Boron-mediated lignin metabolism in response to aluminum toxicity in citrus (Poncirus trifoliate (L.) Raf.) root, Plant Physiology and Biochemistry, 185:1-12(二区,IF:5.437)
(27) Lei Yan, Shuang Li, Muhammad Riaz, Cuncang Jiang*, 2021, Proline metabolism and biosynthesis behave different in responce to boron deficiency and toxicity in Brassica napus, Plant Physiology and Biochemistry, 167:529-540 (二区,IF:5.437)
(28) Wu Xiuwen, Riaz Muhammad, Yan Lei, Cuncang Jiang*, 2020, How cells injured and secondary metabolites changed in the shikimate pathway of trifoliate orange root under boron deficiency. Plant Physiology and Biochemistry,151: 630-639(二区,IF:5.437)
(29) Riaz Muhammad, Lei Yan, Cuncang Jiang*, 2019, Boron supply maintains efficient antioxidant system, cell wall components and reduces aluminum concentration in roots of trifoliate orange, Plant Physiology and Biochemistry,137: 93-101(二区,IF:5.437)
(30) Riaz Muhammad; Lei Yan; Xiuwen Wu; Saddam Hussain; Omar Aziz; Zeinab El-Desouki; Cuncang Jiang*, 2019, Excess boron inhibited the trifoliate growth by inducing oxidative stress, alterations in cell wall structure, and accumulation of free boron. Plant Physiology and Biochemistry,141: 105-113(二区,IF:5.437)
(31) Liu Yalin, Riaz Muhammad, Yan Lei, Zeng Yu, Cuncang Jiang*, 2019, Mechanism of root cell wall response to anti-oxidative unbalance induced by boron and calcium homeostasis in trifoliate rootstock, Plant Physiology and Biochemistry, 144: 345-354(二区,IF:5.437)
(32) Dong Xiaochang, Liu Guidong, Wu Xiuwen, Lu Xiaopei, Lei Yan, Riaz Muhammad, Asad Shah,Wu Lishu, Cuncang Jiang*, 2016. Different metabolite profile and metabolic pathway with leaves and roots in response to boron deficiency at the initial stage of citrus rootstock growth, Plant Physiology and Biochemistry, 106:121-131(二区,IF:5.437)
(33) Jiayu Hou, Muhammad Riaz, Lei Yan, Kesong·Lu, Cuncang Jiang*, 2022, Effect of exogenous L-aspartate nano calcium on root growth, calcium forms and cell wall metabolism of Brassica napus L., Nanoimpact, 27: 100415(二区,IF:6.038)
(34) Liu Guidong, Dong Xiaocang, Liu Leichao, Wu Lishu, Peng Shuang, Cuncang Jiang*, 2015. Metabolic profiling reveals altered pattern of central metabolism in navel orange seedlings as a result of boron deficiency, Physiologia Plantarum,153 (4) : 513-524,(二区,IF:5.081)
(35) Yan Lei, Riaz Muhammad, Liu Yalin, Yu Zeng, Cuncang Jiang*, 2019, Aluminum toxicity could be mitigated with boron by altering the metabolic patterns of amino acids and carbohydrates rather than organic acids in trifoliate orange, Tree Physiology, 39:1572-1582(一区,TOP,IF:4.561)
(36) Wu XW, Liu GD, Muhammad R, Yan L, Cuncang Jiang*, 2019. Metabolic changes in the roots of trifoliate orange by boron deficiency and resupply, Plant and Soil, 434: 217- 229(二区,TOP,IF:4.993)
(37) Liu GD,Wang RD,Liu LC,Wu LS, Cuncang Jiang*, 2013. Cellular Boron allocation and pectin composition in two rootstock seedlings differing in boron-deficiency responses. Plant and Soil, 370:555-565(二区,TOP,IF:4.993)
(38) Liu GD,Wang RD,Wu LS,Peng SA,Wang YH, Cuncang Jiang*, 2012. Boron distribution and mobility in navel orange grafted on citrange and trifoliate orange, Plant and Soil, 360:123-133(二区,TOP,IF:4.993)
(39) Lei Yan, Shuang Li, Muhammad Riaz, Cuncang Jiang*, 2022. Boron deficiency and Al toxicity activates antioxidant defense and disorganizes the cell wall composition and architecture in trifoliate orange leaf, Scientia Horticulturae, 297:110961(二区,TOP,IF:4.342)
(40) Yan Lei, Zeng Yu, Riaz Muhammad, Cuncang Jiang*, 2021, Exogenous Proline triggered the internal tolerance mechanism of trifoliate rootstock (Poncirus trifoliate L.) to mitigate boron toxicity, Scientia Horticulturae, 288: 110412(二区,TOP,IF:4.342)
(41) Yan Lei, Riaz Muhammad, Cuncang Jiang*, 2020, Exogenous application of proline alleviates B-deficiency-induced injury while aggravate aluminum toxicity in citrus seedlings, Scientia Horticulturae, 268:109372(二区,TOP,IF:4.342)
(42) Wu Xiuwen, Lu Xiaopei, Riaz Muhammad, Yan Lei, Cuncang Jiang*, 2018, Boron deficiency and toxicity altered the subcellular structure and cell wall composition architecture in two citrus rootstocks, Scientia Horticulturae, 238:147-154(二区,TOP,IF:4.342)
(43) Liu Guidong, Dong Xiaocang, Liu Leichao, Wu Lishu, Peng Shuang, Cuncang Jiang*, 2014. Boron deficiency is correlated with changes in cell wall structure that lead to growth defects in the leaves of navel orange seedlings, Scientia Horticulturae, 176: 54-62(二区,TOP,IF:4.342)
四、著作及专利情况
• 姜存仓 主编, 果园测土配方施肥技术, 2011年6月, 化学工业出版社, ISBN: 978-7-122-11074-9
• 姜存仓 主编, 棉花营养诊断与现代施肥技术, 中国农业出版社, 2011年8月, ISBN: 978-7-109-15612-8
• 姜存仓 参编, 中国主要作物施肥指南, 中国农业大学出版社, 2009, ISBN: 978-7-81117-667-4
• 姜存仓 参编, 棉花常见缺素症状图谱及矫正技术, 中国农业出版社, 2010, ISBN: 978-7-109-14801-7
• 姜存仓 参编, 柑橘常见缺素症状图谱及矫正技术, 中国农业出版社, 2010, ISBN: 978-7-109-14800-0
• 姜存仓 参编, 肥料使用技术手册, 金盾出版社, 2010, ISBN: 978-7-5082-6021-1
• 姜存仓 参编, 中国农业中的硼, 中国农业出版社, 2015, ISBN: 978-7-109-19915-6
已授权专利7项
• 专利名称: 一种脐橙有机无机专用复混肥, (权利人: 姜存仓; 彭抒昂; 邓秀新; 钟八莲; 王运华; 等), 2011, 授权号: ZL200910272516.0
• 专利名称: 一种脐橙多功能生态液肥, (权利人: 姜存仓; 彭抒昂; 邓秀新; 钟八莲; 王运华; 等), 2011, 授权号: ZL 200910272517.5
• 专利名称: 一种具有多重效益的土壤调理剂,2016年获批,授权专利号:ZL 201410012035.7(排序2)
• 专利名称: 一种能减轻土传病害, 促生根, 抗重茬制剂,2016年获批,授权专利号:ZL 201410012023.4 (排序2)
• 专利名称: 一种多元复合螯合铁肥的制备方法,专利号:CN201510041975.3 (排序2)
• 专利名称: 一种包膜控释肥料的制备方法,2016年获批,授权专利号:ZL 201410152942.1 (排序2)
• 专利名称: 一种能使作物球茎、果实膨大的氨基酸肥料及其制备方法,专利号:ZL201510042421.5 (排序2)