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[1] 主持国家重点研发计划“粮食丰产增效科技创新”重点专项课题“高产稻田的肥力变化与培肥耕作途径”(2016-2020年)
[2] 主持国家自然科学基金“土壤及团聚体钾素形态对红壤pH和有机质的响应机制”(2017-2020年)
[3] 主持国家自然科学基金“酸化红壤施用石灰后根际土壤钾素转化特征及机制”(2014-2017年)
[4] 主持国家自然科学基金“长期不同施肥下红壤钾素有效性的演变机理”(2011-2013年)
[5] 主持国家“973”计划课题“农田地力形成与演变规律及其主控因素”(2011-2015年)
[6] 主持国家粮食丰产科技工程课题“高产作物节肥高效技术研究”(2011-2015年)
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg[1] 主持国家重点研发计划“粮食丰产增效科技创新”重点专项课题“高产稻田的肥力变化与培肥耕作途径”(2016-2020年)
[2] 主持国家自然科学基金“土壤及团聚体钾素形态对红壤pH和有机质的响应机制”(2017-2020年)
[3] 主持国家自然科学基金“酸化红壤施用石灰后根际土壤钾素转化特征及机制”(2014-2017年)
[4] 主持国家自然科学基金“长期不同施肥下红壤钾素有效性的演变机理”(2011-2013年)
[5] 主持国家“973”计划课题“农田地力形成与演变规律及其主控因素”(2011-2015年)
[6] 主持国家粮食丰产科技工程课题“高产作物节肥高效技术研究”(2011-2015年)
通讯作者/第一作者代表性论文
[1] Khan, M.N, Huang J, Shah A, Li D C, Daba N A, Han T F, Du JX, Qaswar M, Anthonio, C K, Sial T A, Haseeb A, Zhang L, Xu Y M, He Z Q, Zhang H M*, Núñez-Delgado A. Mitigation of greenhouse gas emissionsfrom a red acidic soil by using magnesium-modified wheat straw biochar. EnvironmentalResearch, 2022. DOI:10.1016/j.envres.2021.111879.
[2] Han T F, Huang J, Liu K L, Fan H Z, Shi X J, Chen J, Jiang XJ, Liu G R, Liu S J, Zhang L, Xu Y M, Feng G, ZhangH M*.Soil potassium regulation by changes in potassium balance and iron and aluminumoxides in paddy soils subjected to long-term fertilization regimes. Soil& Tillage Research, 2021, 214. DOI:10.1016/j.still.2021.105168.
[3] Du J X, Liu K L, Huang J, Han T F, Zhang L, Anthonio C K,Shah A, Khan M N, Qaswar M, Abbas M, Huang Q H, Xu Y M, Zhang H M*. Organic carbon distribution and soil aggregate stability inresponse to long-term phosphorus addition in different land-use types. Soil& Tillage Research, 2022, 215. DOI:10.1016/j.still.2021.105195.
[4] Sehrish A, Li D C, Huang J,Waqas A, Muhammad Abbas, Muhammad Q, Christian K A, Zhang L, Wang B R, Xu Y M, Zhang H M*.Soil microbial biomass and extracellular enzymes regulate nitrogenmineralization in wheat-maize cropping system after three decades offertilization in a Chinese Ferrosol. Journal of Soils and Sediments, 2020, 21: 281-294. DOI: 10.1007/s11368-020-02770-5.
[5] Muhammad Q, Huang J, Waqas A,Muhammad A, Li D C, Zulqarnain H K, Gao J S, Liu S J, Zhang H M*.Linkages between ecoenzymatic stoichiometry and microbial community structureunder long-term fertilization in paddy soil: A case study in China. AppliedSoil Ecology, 2021, 161, 103860. DOI: 10.1016/j.apsoil.2020.103860.
[6] Muhammad Q, Li D C, Huang J,Han T F, Waqas A, Sehrish A, MuhammadN K, Zulqarnain H K, Xu Y M, Li Q, Zhang H M*, Wang B R*, Ahmad Tauqeer. The dynamics of organiccarbon and nitrogen in the deep soil profile and crop yields underlong-term fertilization within the wheat-maize cropping system. Journal of Integrative Agriculture, 2021,19(0): 2-15. DOI: 10.1016/S2095-3119(20)63501-8.
[7] Muhammad Q, Waqas A, Huang J,Liu K L, Zhang L, Han T F, Du J X, Sehrish A, Hafeez U, Huang Q H, Zhang HM*. Interaction of soil microbialcommunities and phosphorus fractions under long-term fertilization in paddysoil. Journal of Integrative Agriculture,2021, DOI: 10.1016/S2095-3119(21)63733-4.
[8] Ahmed W, Huang J, Liu K L,Sehrish A, Han T F, Sun G, Chen J, Muhammad Q, Du J X, Sajid M, Ali A M,Zulqarnain H K, Zhang H M*, Chen D Y*. Impacts of long-term inorganic and organic fertilizationon phosphorus adsorption and desorption characteristics in red paddies insouthern China.PLOS ONE,2021, 16, e0246428. DOI: 10.1371/journal. pone.0246428.
[9] Huang J, Muhammad Q, MuhammadN K, Liu S J, Han T F, Liu K L, Li D C, ZhangH M*, Gao J S*. Long-term application of chemical and organic fertilizers over 35years differentially affects interannual variation in soil inorganic phosphorusfractions in acidic paddy soil. Eurasian Soil Science, 2021, 54,772-782. DOI:10.1134/s1064229321050112.
[10] Wang Y D, Xue D M*, HuN, Lou Y L, Zhang Q Z, Zhang L M, Zhu P, Gao H J, Zhang S Q, Zhang H M*, Li D C, Song Z L, Kurganova I, Kuzyakov Y, Wang Z L.Post-agricultural restoration of soil organic carbon pools across a climategradient. Catena, 2021, 200, 105138. DOI: 10.1016/j.catena.2020.105138.
[11] Diao W Y, Liu G, Zhang H M*, Hu K L, Jin X L. Influences ofsoil bulk density and texture on estimation of surface soilmoisture using spectral feature parameters andan artificial neural network algorithm. Agriculture, 2021, 11,710. DOI:10.3390/ agriculture11080710.
[12] Huang J, Zhou L H, Liu SJ, Han T F, Hayatu N G, Li D C, Zhang S X, Wang B R, Zhang H M*. Vertical distribution of phosphorus fractions and theenvironmental critical phosphorus level in acidic red soil under long-termfertilizer and lime application in southern China. Journal of PlantNutrition and Soil Science, 2021. DOI:10.1002/jpln.202100098.
[13] Daba N A, Li D C, Huang J,Han T F, Zhang L, Ali S, Khan M N, Du J X, Liu S J, Legesse, T G, Liu L S, Xu YM, Zhang H M*, Wang B R*. Long-term fertilizationand lime-induced soil pH changes affect nitrogen use efficiency and grainyields in acidic soil under wheat-maize rotation. Agronomy, 2021, 11. DOI:10.3390/agronomy11102069.
[14] Ali S, Liu K L, Ahmed W,Huang J, Qaswar M, Anthonio, C K, Maitlo A A, Zhang L, Liu L S, Zhang H M*. Nitrogen mineralization, soil microbial biomass andextracellular enzyme activities regulated by long-term n fertilizer inputs: Acomparison study from upland and paddy soils in a red soil region of China. Agronomy,2021, 11. DOI: 10.3390/agronomy11102057.
[15] 柳开楼, 韩天富, 黄晶, 李亚贞, 马常宝, 薛彦东, 都江雪, 王远鹏, 李文军, 张会民*. 中国稻作区土壤速效钾和钾肥偏生产力时空变化. 土壤学报, 2021, 58(1): 202-212,DOI:10.11766/trxb201910300311.
[16] 都江雪, 柳开楼, 黄晶, 韩天富, 王远鹏, 李冬初, 李亚贞, 马常宝, 薛彦东, 张会民*. 中国稻田土壤有效磷时空演变特征及其对磷平衡的响应. 土壤学报, 2021, 58(2):476-486. DOI: 10.11766/trxb201911040381.
[17] 刘淑军, 李冬初, 黄晶,马常宝, 王慧颖, 于子坤, 曲潇林, 张璐, 韩天富, 都江雪, 柳开楼, 张会民*. 1988-2018年中国水稻秸秆资源时空分布特征及还田替代化肥潜力. 农业工程学报, 2021, 37(11): 151-161.
[18] Liu K L, Han T F, Huang J,Shad A, Li D M, Yu X C, Huang Q H, Ye H C, Hu H W, Hu, Z H, Zhang H M*. Linksbetween potassium of soil aggregates and pH levels in acidic soils underlong-ter fertilization regimes. Soil & Tillage Research, 2020, 197:104480. DOI: 10.1016/j.still.2019.104480.
[19] Muhammad Q, Huang J, WaqasA, Li D C, Liu S J, Zhang L, Cai A D, Liu L S, Xu Y M, Gao J S*, Zhang H M*. Yield sustainability, soil organiccarbon sequestration and nutrients balance under long-term combined applicationof manure and inorganic fertilizers in acidic paddy soil. Soil & TillageResearch. 2020, 198: 104569. DOI: 10.1016/j.still.2019.104569.
[20] Waqas A, Muhammad Q, HuangJ, Dong W J, Sun G, Liu K L, Meng Y,Tang A, Sun M, Li C, Xu Y M, Sehrish A,Yodgar N, Sajid M, Muhammad N K, Zhang H M*. Tillage practices improverice yield and soil phosphorus fractions in two typical paddy soils. Journalof Soils and Sediments, 2020, 20: 850-861. DOI:10.1007/s11368-019-02468-3.
[21] Muhammad Q, Rushan Chai,Waqas A, Huang J, Han T F, Liu K L, Ye X X, Xu Y M, Christian K A, Zhang H M*.Partial substitution of chemical fertilizers with organic amendments increasedrice yield by changing phosphorus fractions and improving phosphataseactivities in fluvo-aquic soil. Journal of Soils and Sediments, 2020,20: 1285-1296. DOI:10.1007/s11368-019-02476-3.
[22] Kailou Liu, Tianfu Han,Jing Huang, Shuiqing Zhang, Hongjun Gao, Lu Zhang, Asad Shah, Shaomin Huang,Ping Zhu, Suduan Gao, Changbao Ma, Yandong Xue, Zhang H M*. Change ofsoil productivity in three different soils after long-term field fertilizationtreatments. Journal of Integrative Agriculture, 2020, 19(3): 848-858.DOI: 10.1016/S2095-3119(19)62742-5.
[23] Muhammad Q, Liu Y R,Huang J,Liu K L,Muhammad M,Lv Z Z,Hou H Q,Lan X J,Ji J H,Waqas A,Li D C,Zhang H M*. Soil nutrients and heavymetals availability under long-term combined application of swine manure andsynthetic fertilizers in acidic paddy soil. Journal of Soils and Sediments.2020, 20: 2093-2106. DOI: 10.1007/s11368-020-02576-5.
[24] Christian K A, Huang J, Han T F, Muhammad Q, Liu K L, Du J X, MuhammadN K, Muhammad A, Sehrish A, Lehlogonolo A M, Liu S J, Liu G R, Zhang H M*, Chen J*. Depth distribution of bulk and aggregate associated manganeseoxides mediated by soil chemical properties in a long-term fertilized paddysoil. Journal of Soil Science and Plant Nutrition. 20(4), 2631-2642. DOI:10.1007/s42729-020-00320-z.
[25] Muhammad Q, Li D C, Huang J, Han T F, Waqas A, Muhammad A, Zhang L, DuJ X, Zulqarnain H K, Sami U, Zhang H M*, Wang B R*. Interaction of liming and long-term fertilizationincreased crop yield and phosphorus use efficiency (PUE) through mediatingexchangeable cations in acidic soil under wheat-maize cropping system. ScientificReports. 2020, 10:19828. DOI: 10.1038/s41598-020-76892-8.
[26] 柳开楼, 黄晶, 韩天富, 黄庆海, 余喜初, 李大明, 胡惠文, 叶会财, 胡志华, 张会民*. 长期施肥下红壤旱地解钾菌变化及其驱动因子. 土壤学报, 2020, 57(1): 183-194.
[27] 周玲红, 黄晶, 王伯仁, 李冬初, 柳开楼, 韩天富, 张会民*. 南方酸化红壤钾素淋溶对施石灰的响应. 土壤学报, 2020, (2): 457-467.
[28] 李冬初, 黄晶, 马常宝, 薛彦东, 高菊生, 王伯仁, 张杨珠, 柳开楼, 韩天富, 张会民*. 中国稻田土壤有机质时空变化及其驱动因素. 中国农业科学, 2020, 53(12): 2410-2422.
[29] 王远鹏, 黄晶, 孙玉翔, 柳开楼, 周虎, 韩天富, 都江雪, 蒋先军, 陈金*, 张会民*. 近35年红壤稻区土壤肥力时空演变特征. 中国农业科学, 2020, 53(16): 3294-3306.
[30] 王远鹏, 黄晶, 柳开楼, 韩天富, 都江雪, 马星竹, 郝小雨, 周宝库, 刘彩文, 蒋先军*, 张会民*. 东北典型县域稻田土壤肥力评价及其空间变异. 植物营养与肥料学报, 2020, 26(2): 256-266.
[31] 黄晶, 刘立生 马常宝, 薛彦东, 韩天富 柳开楼, 刘淑军, 张璐 李冬初, 都江雪 张会民*. 近30年中国稻区氮素平衡及氮肥偏生产力时空变化. 植物营养与肥料学报, 2020, 26(6): 987-998.
[32] 高菊生,黄 晶,杨志长,曹卫东*,张会民*,高 鹏,高学成. 绿肥和稻草联合还田提高土壤有机质含量并稳定氮素供应. 植物营养与肥料学报, 2020, 26(3): 472-480.
[33] 刘淑军, 李冬初, 高菊生, 黄 晶, 余泓, 李照全, 文炯, 张会民*. 长期施肥红壤稻田肥力与产量的相关性及县域验证. 植物营养与肥料学报, 2020, 26(7): 1262-1271.
[34] 张璐, 蔡泽江, 王慧颖, 于子坤, 韩天富, 柳开楼, 刘立生, 黄晶, 文石林, 张会民*. 中国稻田土壤有效态中微量元素含量分布特征. 农业工程学报, 2020, 36(16): 62-70.
[35] 李冬初, 黄晶, 马常宝, 薛彦东, 高菊生, 王伯仁, 张杨珠, 柳开楼, 韩天富, 张会民*. 中国农耕区土壤有机质含量及其与酸碱度和容重关系. 水土保持学报, 2020, 34(06): 252-258.
[36] 韩天富, 柳开楼, 黄晶, 马常宝, 郑磊, 王慧颖, 曲潇林, 任意, 于子坤, 张会民*. 近30年中国主要农田土壤pH时空演变及驱动因素. 植物营养与肥料学报, 2020, 26(12): 2136-2148.
[37] Liu K L, Han T.F, Huang, J,Huang, Q.H, Li, D.M, Hu, Z.H, Yu, X.C, Muhammad, Q, Ahmed, W, Hu, H W, ZhangH M*. Response of soil aggregate-associated potassium to long-termfertilization in red soil. Geoderma, 2019, 352, 160-170. DOI:10.1016/j.geoderma.2019.06.007.
[38] Tianfu Han, Andong Cai,Kailou Liu, Jing Huang, Boren Wang, Dongchu Li, Muhammad Q, Gu Feng, HuiminZhang*. The links between potassium availability and soil exchangeablecalcium, magnesium, and aluminum are mediated by lime in acidic soil. Journalof Soils and Sediments, 2019, 19(3): 1382-1392. DOI: 10.1007/s11368-018-2145-6.
[39] Muhammad Q, Waqas A, HuangJ, Fan H Z, Shi X J, Jiang X J, Liu K L, Xu Y M, He Z Q, Waleed A, Asad S, ZhangH M*, Soil carbon (C), nitrogen (N) and phosphorus (P) stoichiometry drivesphosphorus lability in paddy soil under long-term fertilization: Afractionation and path analysis study. PLOS ONE. 20190624. DOI:10.1371/journal.pone.0218195.
[40] Waqas A, Huang J, Liu K L,Muhammad Q, Muhammad N K, Chen J, Sun G, Huang Q H, Liu Y R, Liu G R, Sun M, LiC, Li D C, Sehrish A, Yodgar N, Sajid M, Zhang H M*. Changes inphosphorus fractions associated with soil chemical properties under long-term organicand inorganic fertilization in paddy soils of southern China. PLOS ONE,20190510,DOI: 10.1371/journal.pone.0216881.
[41] Muhammad Q, Huang J, WaqasA, Liu S J, Li D C, Zhang L, Liu L S, Xu Y M, Han T F, Du J X, Gao J S*, Zhang H M*,Substitution of Inorganic Nitrogen Fertilizer with Green Manure (GM) IncreasedYield Stability by Improving C Input and Nitrogen Recovery Efficiency in RiceBased Cropping System. Agronomy, 2019, 9(10),609: 1-18. DOI: 10.3390/agronomy9100609.
[42] Muhammad Q, Huang J, WaqasA, Li D C, Liu S J, Sehrish A, Liu K L, Xu Y M, Zhang L, Liu L S, Gao J S*, Zhang H M*. Long-termgreen manure rotations improve soil biochemical properties, yieldsustainability and nutrient balances in acidic paddy soil under a rice-basedcropping system. Agronomy, 2019, 9(12), 780: 1-18. DOI: 10.3390/agronomy9120780.
[43] Waqas A, Liu K L, MuhammadQ, Huang J, Huang Q H, Xu Y M, Sehrish A, Sajid M, Rana M A A, Mohsin M, ZhangH M*. Long-term mineral fertilization improved the grain yield andphosphorus use efficiency by changing soil P fractions in Ferralic Cambisol. Agronomy,2019, 9(12), 784: 1-15. DOI: 10.3390/agronomy9120784.
[44] Liu K L, Huang J, Li D M,Yu X C, Ye H C, Hu H W, Hu Z H, Huang Q H, Zhang H M *. Comparison ofcarbon sequestration efficiency in soil aggregates between upland and paddysoils in a red soil region of China. Journal of Integrative Agriculture,2019, 18(6): 1348-1359. DOI:10.1016/S2095-3119(18)62076-3.
[45] 韩天富, 马常宝, 黄晶, 柳开楼, 薛彦东, 李冬初, 刘立生, 张璐, 刘淑军, 张会民*. 基于Meta分析中国水稻产量对施肥的响应特征.中国农业科学,2019,52(11):1918-1929.
[46] 柳开楼, 韩天富, 黄庆海, 余喜初, 李大明, 马常宝, 薛彦东, 张会民*. 鄱阳湖流域长期施肥下双季稻田的土壤基础地力. 应用生态学报,2019,30(01):209-216.
[47] 李冬初, 王伯仁, 黄晶, 张杨珠, 徐明岗, 张淑香, 张会民*. 长期不同施肥红壤磷素变化及其对产量的影响. 中国农业科学, 2019, 52(21): 3830-3841.
[48] 刘淑军, 秦道珠, 黄晶, 徐明岗, 张会民*, 高菊生, 张璐, 刘立生. 大地情怀——记刘更另院士的科学人生. 湖北农机化, 2019, (12) :1-5.
[49] 柳开楼, 黄晶, 张会民*, 李冬初, 韩天富, 蔡泽江, 王伯仁, 黄庆海. 长期施肥对红壤旱地团聚体特性及不同组分钾素分配的影响. 土壤学报, 2018, 55(2): 443-454.
[50] 柳开楼, 黄晶, 张会民*, 韩天富,黄庆海*,余喜初,李大明,胡惠文,叶会财,胡志华,马常宝,薛彦东. 基于红壤稻田肥力与相对产量关系的水稻生产力评估. 植物营养与肥料学报, 2018, 24(6): 1425-1434.
[51] 黄 晶, 蒋先军, 曾跃辉, 陈 金, 柴如山, 柳开楼, 张会民*. 稻田土壤肥力评价方法及指标研究进展. 中国土壤与肥料, 2017, ( 6): 1-8.
[52] 柳开楼,张会民*,韩天富,周利军,李大明 ,胡志华,黄庆海*,叶会财,徐小林,胡惠文. 长期化肥和有机肥施用对双季稻根茬生物量及养分积累特征的影响. 中国农业科学, 2017, 50(18): 3540-3548.
[53] 韩天富, 王伯仁, 张会民*, 黄 晶, 李冬初, 蔡泽江, 柳开楼, 蔡岸冬, 徐明岗. 长期施肥及石灰后效对不同生育期玉米根际钾素的影响. 土壤学报, 2017, 54(6): 1497-1507.
[54] Kailou, L., L. Yazhen, Y. Paolan, W. Yan, Z. Lijun, H. Huiwenand Z. Huimin*, 2016. Estimatinggrain yield based on BSW and SPAD at grain filling stage in double ricecropping system of China. International Journal of Agriculture & Biology,18: 889‒894 .
[55] 李建军, 徐明岗, 辛景树, 段建军, 任意, 李冬初, 黄晶, 申华平, 张会民*. 中国稻田土壤基础地力的时空演变特征. 中国农业科学,2016 49:1510-1519.
[56] 岳龙凯,蔡泽江,徐明岗,王伯仁,黄庆海,李冬初,柳开楼,李建军,张会民*. 长期施肥红壤钾素在有机无机复合体中的分布. 植物营养与肥料学报,2015,21(6):1551-1562.
[57] 岳龙凯,蔡泽江,徐明岗,王伯仁,李冬初,黄晶,张会民*. 长期施肥红壤钾有效性研究. 植物营养与肥料学报,2015,21(6):1543-1550.
[58] 查燕,武雪萍,张会民*,蔡典雄,朱平,高洪军. 长期有机无机配施黑土土壤有机碳对农田基础地力提升的影响. 中国农业科学,2015,48(23):4649-4659.
[59] 岳龙凯,王伯仁,黄庆海,柳开楼,蔡泽江,李冬初,黄晶,张会民*. 长期施肥红壤及其有机无机复合体非交换性钾释放动力学. 中国农业科学,2015,48(23):4748-4758.
[60] 李建军,辛景树,张会民*,段建军,任意,孙楠,徐明岗. 长江中下游粮食主产区 25 年来稻田土壤养分演变特征. 植物营养与肥料学报,2015,21(1):92-103.
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