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[1]ZhangLiming,ZhengQiaofeng,LiuYaling,LiuShaogui,YuDongsheng,ShiXuezheng,XingShihe,ChenHanyue,FanXieyu.CombinedeffectsoftemperatureandprecipitationonsoilorganiccarbonchangesintheuplandsofeasternChina.Geoderma,2019,337:1105-1115.(SCI,农林科学大类Ⅰ区,TOP)
[2]ZhangLiming,LiuYaling,LiXiaodi,HuangLinbin,YuDongsheng,ShiXuezheng,ChenHanyue,XingShihe.EffectsofsoilmapscalesonsimulatingsoilorganiccarbonchangesofuplandsoilsinEasternChina.Geoderma,2018,312:159-169.(SCI,农林科学大类Ⅰ区,TOP)
[3]ZhangLiming,WangGuangxiang,ZhengQiaofeng,LiuYaling,YuDongsheng,ShiXuezheng,XingShihe,ChenHanyue,FanXieyu.QuantifyingtheimpactsofagriculturalmanagementandclimatechangeonsoilorganiccarbonchangesintheuplandsofEasternChina.Soil&TillageResearch,2017,174:81-91.(SCI,农林科学大类Ⅰ区,TOP)
[4]ZhangLiming,ZhuangQianlai,ZhaoQuanying,HeYujie,YuDongsheng,ShiXuezheng,XingShihe.UncertaintyoforganiccarbondynamicsinTai-LakepaddysoilsofChinadependsonthescaleofsoilmaps.Agriculture,EcosystemsandEnvironment,2016,222:13-22.(SCI,农业综合小类Ⅰ区,TOP)
[5]ZhangLiming,ZhuangQianlai,HeYujie,LiuYaling,YuDongsheng,ZhaoQuanying,ShiXuezheng,XingShihe,WangGuangxiang.TowardoptimalsoilorganiccarbonsequestrationwitheffectsofagriculturalmanagementpracticesandclimatechangeinTai-LakepaddysoilsofChina.Geoderma,2016,275:28-39.(SCI,农林科学大类Ⅰ区,TOP)
[6]ZhangLiming,ZhuangQianlai,LiXiaodi,ZhaoQuanying,YuDongsheng,LiuYaling,ShiXuezheng,XingShihe,WangGuangxiang.CarbonsequestrationintheuplandsofEasternChina:Ananalysiswithhigh-resolutionmodelsimulations.Soil&TillageResearch,2016,158:165-176.(SCI,农林科学大类Ⅰ区,TOP)
[7]WangGuangxiang,ZhangLiming*,ZhuangQianlai,YuDongsheng,ShiXuezheng,XingShihe,XiongDezhong,LiuYaling.QuantificationofthesoilorganiccarbonbalanceintheTai-LakepaddysoilsofChina.Soil&TillageResearch,2016,155:95-106.(SCI,农林科学大类Ⅰ区,TOP)
[8]ZhangLiming,YuDongsheng,ShiXuezheng,XuShengxiang,WangShihang,XingShihe,ZhaoYongcun.SimulationsoilorganiccarbonchangeinChina,sTai-Lakepaddysoils.Soil&TillageResearch,2012,121:1-9.(SCI,农林科学大类Ⅰ区,TOP)
[9]ZhangLiming,YuDongsheng,ShiXuezheng,WeindorfDavidC,ZhaoLimin,DingWeixin,WangHongjie,PanJianjun,LiChangsheng.SimulationofGlobalWarmingPotential(GWP)fromricefieldsinTai-Lakeregion,Chinabycoupling1:50,000soildatabasewithDNDCmodel.AtmosphericEnvironment,2009,43:2737-2746.(SCI,环境科学与生态学大类Ⅱ区,TOP)
[10]ZhangLiming,YuDongsheng,ShiXuezheng,WeindorfDavidC,ZhaoLimin,DingWeixin,WangHongjie,PanJianjun,LiChangsheng.QuantifyingmethaneemissionsfromricefieldsintheTaihuregion,Chinabycouplingadetailedsoildatabasewithbiogeochemicalmodel.Biogeosciences,2009,6:739-749.(SCI,环境科学与生态学大类Ⅱ区)
[11]ZhangLiming,YuDongsheng,ShiXuezheng,XuShengxiang,XingShihe.ZhaoYongcun.Effectsofsoildataandsimulationunitresolutiononquantifyingchangesofsoilorganiccarbonatregionalscalewithabiogeochemicalprocessmodel.PLoSONE,2014,doi:10.1371/journal.pone.0088622.(SCI,综合性期刊大类Ⅲ区)
[12]LongJun,LiuYaling,XingShihe*,QiuLongxia,HuangQian,ZhouBiqing,ShenJinquan,ZhangLiming*.Effectsofsamplingdensityoninterpolationaccuracyforfarmlandsoilorganicmatterconcentrationinalargeregionofcomplextopography.EcologicalIndicators,2018,93:562-571.(SCI,环境科学与生态学大类Ⅱ区)
[13]XingShihe,ZhouBiqing,ZhangLiming,MaoYanlin,WangFan,ChenChengrong,XingShihe.Evaluatingthemechanismsoftheimpactsofkeyfactorsonsoilsolubleorganicnitrogenconcentrationsinsubtropicalmountainecosystems.ScienceoftheTotalEnvironment,2019,651,2187-2196.(SCI,环境科学与生态学大类Ⅱ区,TOP)
[14].YangJing,YangWenhao,WangFan,ZhangLiming,ZhouBiqing,ChenChenrong,RubabSarfrazb,XingShihe.Thedrivingfactorsofsolubleorganicnitrogendynamicsinpaddysoils:StructureEquationModelAnalysis.Pedosphere,2019,doi:10.1016/S1002-0160(18)60032-3.(SCI,农林科学大类Ⅱ区)
[15]ChenHanyue,HuangWenjiang,LiWang,NiuZheng,ZhangLiming,XingShihe.EstimationofLAIinwinterwheatfrommulti-angularhyperspectralVNIRdata:effectsofviewanglesandplantarchitecture.RemoteSensing,2018,10,1630,doi:10.3390/rs10101630.(SCI,工程技术大类Ⅱ区)
[16]ZhouBiqing,ZhangLiming,YangWenhao,MaoYanlin,ChenChengrong,XingShihe.Differentialuptakeofsolubleorganicandinorganicnitrogenbytwofruitspecies:DimocarpuslonganLour.andEriobotryajaponicaLindl.JournalofSoilsandSediments,2017,17(6),1579-1587.(SCI,环境科学与生态学大类Ⅲ区)
[17]YuDongsheng,PanYue,ZhangHaidong,WangXiyang,NiYunlong,ZhangLiming,ShiXuezheng.EqualitytestingforsoilgridunitresolutionstopolygonunitscaleswithDNDCmodelingofregionalSOCpools.ChineseGeographicalScience,2017,27(4):552-568.(SCI,环境科学与生态学大类Ⅳ区)
[18]YuDongsheng,NiYuanlong,ShiXuezheng,WangNing,WarnerE.D,LiuYang,ZhangLiming.OptimalsoilrasterunitresolutionsinestimationofSOCpoolatdifferentmapscales.SoilScienceSocietyofAmericaJournal,2014,78(3):1079–1086.(SCI,农林科学大类Ⅱ区,TOP)
[19]YuDongsheng,ZhangLiming,ShiXuezheng,WarnerEricD,ZhangZhongQi,ZhaoQiguo.SoilassessmentunitscaleaffectsquantifyingCH4emissionsfromricefields.SoilScienceSocietyofAmericaJournal,2013,77(2):664-672.(SCI,农林科学大类Ⅱ区,TOP)
[20]YuDongsheng,YangHao,ShiXuezheng,WarnerEricD,ZhangLiming,ZhaoQiguo.EffectsofsoilspatialresolutiononquantifyingCH4andN2OemissionsfromricefieldsintheTaiLakeregionofChinabyDNDCmodel.GlobalBiogeochemicalCycles,2011,25,GB2004,doi:10.1029/2010GB003825.(SCI,地球科学综合小类Ⅰ区,TOP)
[21]XuShengxiang,ShiXuezheng,ZhaoYongcun,YuDongsheng,WangShihang,ZhangLiming,LiChangsheng,TanManzhi.ModelingcarbondynamicsinpaddysoilsinJiangsuprovinceofChinawithsoildatabasesdifferinginspatialresolution.Pedosphere,2011,21(6):696–705.(SCI,农林科学大类Ⅱ区)
[22]ShiXuezheng,YangRuwei,WeindorfDavidC,WangHongjie,YuDongsheng,HuangYao,PanXianzhang,SunWeixia,ZhangLiming.SimulationoforganiccarbondynamicsatregionalscaleforpaddysoilsinChina.ClimaticChange,2010,102,579-593.(SCI,环境科学与生态学大类Ⅱ区)
[23]袁平,张黎明*,乔婷,谢安乾,于东升,史学正,邢世和,陈翰阅.基于1:5万土壤数据库的太湖地区水稻土全氮含量动态变化研究.土壤学报,2018,doi:10.11766/trxb201809180422.
[24]陈中星,张楠,张黎明*,袁平,姚彩燕,邢世和,邱龙霞.福建省土壤有机碳储量估算的尺度效应研究.土壤学报,2018,55(3):606-619(封面文章).
[25]黄琳斌,张黎明*,龙军,于东升,史学正,陈翰阅,范协裕,邢世和.制图尺度对CO2浓度升高情景下旱地土壤有机碳模拟的影响.土壤学报,2017,54(3):624-638.
[26]李晓迪,王淑民,张黎明*,于东升,史学正,李加加,邢世和,王光翔.土壤数据源和制图比例尺对旱地土壤有机碳储量估算的影响.土壤学报,2016,53(1):58-71.
[27]焦闪闪,张黎明*,蒋威,郑巧丽,龙军,陈翰阅,邢世和.基于1:5万土壤数据库的福建省耕地全氮储量动态变化研究.土壤学报,2016,53(5):1107-1119.
[28]李衡荣,张黎明*,李晓迪,于东升,史学正,邢世和,陈翰阅.不同制图尺度及土壤数据对土壤全磷储量估算的影响.应用生态学报,2016,27(6):1737-1749.
[29]周洁莹,张黎明,杨文浩,周碧青,邢世和.福建省耕地土壤潜性酸动态变化及其驱动因素.应用生态学报,2019,doi:10.13287/j.1001-9332.201903.011.
[30]周碧青,邱龙霞,张黎明,张秀,陈成榕,邢世和.基于灰色关联-结构方程模型的土壤酸化驱动因子研究.土壤学报,2018,55(5):1233-1242.
[31]杨静,聂三安,杨文浩,陈成榕,张黎明,周碧青,邢世和.不同施肥水稻土可溶性有机氮组分差异及影响因素.土壤学报,2018,55(4):955-966.
[32]周碧青,陈成榕,杨文浩,张黎明,邢世和.茶树对可溶性有机和无机态氮的吸收与运转特性.植物营养与肥料学报,2017,23(1):189-195.
[33]倪元龙,于东升,张黎明,史学正.不同比例尺农田土壤碳库模拟的最佳栅格单元分辨率.土壤学报,2014,51(1):664-674.
[34]龙军,张黎明,毛艳玲,邢世和.福建省不同耕地土壤和土地利用类型对“碳源/汇”的贡献差异研究.土壤学报,2013,50(4):664-674.
[35]龙军,张黎明,沈金泉,周碧青,毛艳玲,邱龙霞,邢世和.复杂地貌类型区耕地土壤有机质空间插值方法研究.土壤学报,2014,51(6):1270-1281.
[36]龙军,张黎明,沈金泉,周碧青,毛艳玲,邢世和.福建省耕地土壤全氮密度和储量动态变化.生态学报,2015,35(12):3959-3969.