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[ 28] 刘丛强,汪福顺,王雨春,等 . 河流筑坝拦截的水环境响应——来自地球化学的视角[J]. 长江流域资源与
                       环境,2009,18(4):384-396 .
                [ 29] DELMAS R,RICHARD S,GUÉRIN F,et al . Long Term Greenhouse Gas Emissions from the Hydroelectric Res⁃
                                                                     /
                       ervoir of Petit Saut(French Guiana)and Potential Impacts[M]/TREMBLAY A,VARFALVY L,ROEHM C,et
                       al . Greenhouse Gas Emissions — Fluxes and Processes:Hydroelectric Reservoirs and Natural Environments .
                       Berlin:Springer press,2005:293-312 .
                [ 30] DELMAS R,GALY-LACAUX C,RICHARD S . Emissions of greenhouse gases from the tropical hydroelectric
                       reservoir of Petit Saut(French Guiana)compared with emissions from thermal alternatives[J]. Global Biogeo⁃
                       chemical Cycles,2001,15(4):993-1003 .
                [ 31] COLAS F,CHANUDET V,DAUFRESNE M,et al . Spatial and Temporal Variability of Diffusive CO 2 and CH 4
                       Fluxes From the Amazonian Reservoir Petit-Saut(French Guiana)Reveals the Importance of Allochthonous In⁃
                                                                                   :
                       puts for Long-Term C Emissions[J]. Global Biogeochemical Cycles,2020,34(12) e2020GB006602 .
                [ 32] RUDD J W M,HARRIS R,KELLY C A,et al . Are hydroelectric reservoirs significant sources of greenhouse gas⁃
                       es[J]. AMBIO,1993,22(4):246-248 .
                [ 33] ALM J,NIELSEN N,DAMAZIO J M,et al . Guidelines for Quantitative Analysis of Net GHG Emissions from
                       Reservoirs Volume 2 Modeling[R]. IEA-HYDRO,ed .IEA-HydroAnnex XII:Hydropower and Environment,
                       2015 .
                [ 34] PRAIRIE Y,ALM J,HARBY A,et al . The GHG Reservoir Tool(G- res)Technical documentation,UNESCO/
                       IHA research project on the GHG status of freshwater reservoirs . Version 1.12.[R]. International Hydropwer As⁃
                       sociation,2017:1-34 .
                [ 35] FORSTER P,STORELVMO T,ARMOUR K,et al . The Earth’s Energy Budget,Climate Feedbacks,and Cli⁃
                                     /
                       mate Sensitivity[M]/MASSON-DELMOTTE V,ZHAI P,PIRANI A,et al . Climate Change 2021:The Physical
                       Science Basis . Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on
                       Climate Change . UK:Cambridge University Press,2021:210 .
                [ 36] STANLEY E H,CASSON N J,CHRISTEL S T,et al . The ecology of methane in streams and rivers:patterns,
                       controls,and global significance[J]. Ecological Monographs,2016,86(2):146-171 .
                [ 37] GÜNTHEL M,DONIS D,KIRILLIN G,et al . Contribution of oxic methane production to surface methane emis⁃
                       sion in lakes and its global importance[J]. Nature Communications,2019,10(1):5497 .
                [ 38] DONIS D,FLURY S,STÖCKLI A,et al . Full-scale evaluation of methane production under oxic conditions in a
                       mesotrophic lake[J]. Nature Communications,2017,8(1):1661 .
                [ 39] SAGGAR S,JHA N,DESLIPPE J,et al . Denitrification and N2O:N-2 production in temperate grasslands:Pro⁃
                       cesses,measurements,modelling and mitigating negative impacts[J]. Science of the Total Environment,2013,
                       465:173-195 .
                [ 40] IPCC . 2006 IPCC Guidelines for National Greenhouse Gas Inventories Volume 4:Agriculture,Forestry and Oth⁃
                       er Land Use[R]/EGGLESTON S,BUENDIA L,MIWA K,et al . 2006 IPCC Guidelines for National Greenhouse
                                   /
                       Gas Inventories .
                [ 41] LI Z,SUN Z,CHEN Y,et al . The net GHG emissions of the China Three Gorges Reservoir:I . Pre-impound⁃
                       ment GHG inventories and carbon balance[J]. Journal of Cleaner Production,2020,256:120635 .
                [ 42] DELSONTRO T,PEREZ K K,SOLLBERGER S,et al . Methane dynamics downstream of a temperate run of the
                       river reservoir[J]. Limnology and Oceanography,2016,61(S1):S188-S203 .
                [ 43] GUERIN F . Gas transfer velocities of CO 2 and CH 4 in a tropical reservoir and its river downstream[J]. Journal of
                       Marine Systems,2007,66:161-172 .
                [ 44] DESHMUKH C,GUÉRIN F,LABAT D,et al . Low methane(CH 4)emissions downstream of a monomictic sub⁃
                       tropical hydroelectric reservoir(Nam Theun 2,Lao PDR)[J]. Biogeosciences,2016,13:1919-1932 .
                [ 45] ROEHM C,TREMBLAY A . Role of turbines in the carbon dioxide emissions from two boreal reservoirs,Que⁃
                       bec,Canada[J]. Journal of Geophysical Research-Atmospheres,2006,111:D24101 .
                [ 46] DESHMUKH C,TARDIF R,DEMARTY M,et al . Physical controls on CH 4 emissions from a newly flooded sub⁃
                       tropical freshwater hydroelectric reservoir:Nam Theun 2[J]. Biogeosciences,2014,11(15):4251-4269


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