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[70]SHINOHARAR,TSUCHIYAK,KOHZUA.Warmingof andeffectsofcroplandconservation [J].JournalofSoil&
watertemperatureinspringandnutrientreleasefromsedi WaterConservation,2014,69(1):26-40.
mentinashalloweutrophiclake [J].JournalofWater [83]TAGNEGV,DOWLINGC.Landusecontrolsonnutri
andClimateChange ,2021,12(7):3187-3199. entloadsinaquifersdrainingagriculturalandmixeduse
[71]ßP0, 6 Ñ, ÒXJ. ÞßSTUVoÁï@¡Z karsticwatersheds[J].EnvironmentalMonitoringand
ab;<}~[J]. @%&}~,2012,23(1):124-133. Assessment ,2020,192:168.
[72]SMUCKERNJ,BEAULIEUJJ,NIETCHCT,etal.In [84]WHITEHEADPG,JINL,BUSSIG,etal.Waterquali
creasinglyseverecyanobacterialbloomsanddeepwater tymodellingoftheMekongRiverBasin :climatechange
hypoxiacoincidewithwarmingwatertemperaturesinres andsocioeconomicsdriveflowandnutrientfluxchangesto
ervoirs [J].GlobalChangeBiology,2021,27(11): theMekongDelta [J].ScienceoftheTotalEnvironment,
2507-2519. 2019,673:218-229.
[73]LOPESTR,ZOLINCA,MINGOTIR,etal.Hydrologi [85]VOROSMARTYCJ,SHARMAKP,FEKETEBM,et
calregime ,wateravailabilityandlanduse/landcover al.Thestorageandagingofcontinentalrunoffinlarge
changeimpactonthewaterbalanceinalargeagriculture reservoirsystemsoftheworld[J].Ambio,1997,26
basininthesouthernBrazilianAmazon[J].Journalof (4):210-219.
SouthAmericanEarthSciences,2021,108:103224. [86]GRILLG,LEHNERB,THIEMEM,etal.Mappingthe
[74]VITOUSEKPM,MOONEYHA,LUBCHENCOJ,etal. world ’sfreeflowingrivers[J].Nature,2019,569:
Humandominationofearth’secosystems[J].Science, 215-221.
1997,277(5325):494-499. [87]MAAVARAT,CHENQiuwen,METERKV,etal.Riv
[75]SEITZINGERSP,MAYORGAE,BOUWMANAF,et erdam impactsonbiogeochemicalcycling[J].Nature
al.Globalrivernutrientexport:ascenarioanalysisofpast ReviewsEarth&Environment,2020,1:103-116.
andfuturetrends[J].GlobalBiogeochemicalCycles, [88]LIUYueying,DENGBing,DUJinzhou,etal.Nutrient
2010,24:0A08. burialandenvironmentalchangesintheYangtzeDeltain
[76]ZHANGJing,LISiyue,JIANGChangsheng.Effectsof responsetorecentriverbasinhumanactivities [J].Envi
landuseonwaterqualityinariverbasin(Daning)ofthe ronmentalPollution,2019,249:225-235.
ThreeGorgesReservoirarea ,China:watershedversusri [89]LIUSumei.Responseofnutrienttransportstowater-sed
parianzone [J].EcologicalIndicators,2020,113(C): imentregulationeventsintheHuangheBasinanditsim
106226. pactonthebiogeochemistryoftheBohai[J].Journalof
[77]×ûÓ, ¤RÔ, QAÔ, . pÁJo5¯Ød MarineSystems ,2015,141:59-70.
õö^ab[J]. %&,2021,42(10):4698- [90]YUYonggui,WANGHoujie,SHIXuefa,etal.Newdis
4707. chargeregimeoftheHuanghe(YellowRiver):causes
[78]BUHongmei,MENGWei,ZHANGYuan,etal.Rela andimplications[J].ContinentalShelfResearch,2013,
tionshipsbetweenlandusepatternsandwaterqualityin 69:62-67.
theTaiziRiverBasin ,China[J].EcologicalIndicators, [91]LIXinyu,CHENHontao,JIANGXueyan,etal.Impactsof
2014,41:187-197. humanactivitiesonnutrienttransportintheYellowRiver :
[79]ê¯A, Õ â, ö!1, . ê>ãéZd@¡K theroleoftheWater-SedimentRegulationScheme[J].
pÁJ|W·1———ÎC!de?«[J]. F ScienceoftheTotalEnvironment ,2017,592:161-170.
%&&c,2020,39(9):2036-2047. [92]HOUChuanying,YIYujun,SONGJie,etal.Effectof
[80]KANGJ,LEESW,CHOKH,etal.Linkinglanduse water-sedimentregulationoperationonsedimentgrain
typeandstreamwaterqualityusingspatialdataoffecalin sizeandnutrientcontentinthelowerYellowRiver[J].
dicatorbacteriaandheavymetalsintheYeongsanRiver JournalofCleanerProduction,2021,279:123533.
Basin[J].WaterResearch,2010,44(14):4143-4157. [93]STANLEYDJ.Niledelta:extremecaseofsedimenten
[81]BOURAOUIF,GRIZZETTIB.Modellingmitigationoptions trapmentonadeltaplainandconsequentcoastallandloss
toreducediffusenitrogenwaterpollutionfrom agriculture [J].MarineGeology,1996,129(3-4):189-195.
[J].ScienceoftheTotalEnvironment,2014,468-469: [94]ÖJÔ, úê, = ~, . B Burullus ׯ!T8D
1267-1277. ÅUV: ØÛ3[\]ab[J]. !T&c,2020,
[82]WHITEM J,SANTHIC,KANNANN,etal.Nutrient 38(6):1249-1257.
deliveryfromtheMississippiRivertotheGulfofMexico ( 456 44 7)