Stoichiometric flexibility regulates the co-metabolism effect during organic carbon mineralization in eutrophic lacustrine sedimentsOACSTPCD
Stoichiometric flexibility regulates the co-metabolism effect during organic carbon mineralization in eutrophic lacustrine sediments
Jie MA;Guoxiang WANG;Fei HE;Xingcheng YAN;Ruijie SHI;Ming JI;Bin XU;Xiaodong WU;Zhichun LI;Xiaoguang XU
Nanjing Institute of Environment Sciences,Ministry of Ecology and Environment,Nanjing 210042,ChinaSchool of Environment,Nanjing Normal University,Nanjing 210023,ChinaNanjing Institute of Environment Sciences,Ministry of Ecology and Environment,Nanjing 210042,ChinaSorbonne University,Paris,UMR 7619,METIS,Paris 75005,FranceSchool of Environment,Nanjing Normal University,Nanjing 210023,ChinaSchool of Environment,Nanjing Normal University,Nanjing 210023,ChinaNanjing Institute of Environment Sciences,Ministry of Ecology and Environment,Nanjing 210042,ChinaCollege of Urban and Environmental Sciences,Hubei Normal University,Huangshi 435002,ChinaSchool of Environment and Surveying Engineering,Soochow University,Suzhou 234000,ChinaSchool of Environment,Nanjing Normal University,Nanjing 210023,China
co-metabolism effectstoichiometriccarbon cyclingeutrophic lakedecompositionorganic carbon
co-metabolism effectstoichiometriccarbon cyclingeutrophic lakedecompositionorganic carbon
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1974-1984,11
Supported by the National Natural Science Foundation of China(No.42077294),the Special basic research service for the Central Level Public Welfare Research Institute(No.GYZX210517),the Major Science and Technology Program for Water Pollution Control and Treatment(Nos.2017ZX07203-003,2017ZX07301006),and the Excellent Young Talents Fund Program of Higher Education Institutions of Anhui Province(No.gxyqZD2020047)
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