Greenhouse Gas Emissions from Reservoir Water Surfaces: A New Global Synthesis
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Abril, 2005, Carbon dioxide and methane emissions and the carbon budget of a 10-year old tropical reservoir (Petit Saut, French Guiana), Global Biogeochemical Cycles 19, 10.1029/2005GB002457
Abril, 2013, Wood decomposition in Amazonian hydropower reservoirs: An additional source of greenhouse gases, Journal of South American Earth Sciences, 44, 104, 10.1016/j.jsames.2012.11.007
Baron, 2013, The interactive effects of excess reactive nitrogen and climate change on aquatic ecosystems and water resources of the United States, Biogeochemistry, 114, 71, 10.1007/s10533-012-9788-y
Barros, 2011, Carbon emission from hydroelectric reservoirs linked to reservoir age and latitude, Nature Geoscience, 4, 593, 10.1038/ngeo1211
Bastien, 2011, CO2 and CH4 diffusive and degassing fluxes from 2003 to 2009 at Eastmain 1 reservoir, Québec, Canada, Inland Waters, 1, 113, 10.5268/IW-1.2.349
Bastviken, 2015, Inland Water Greenhouse Gas FLUX Forum, Linköping University Tema Environmental Challenge
Bastviken, 2004, Methane emissions from lakes: Dependence of lake characteristics, two regional assessments, and a global estimate, Global Biogeochemical Cycles 18, 10.1029/2004GB002238
Bastviken, 2011, Freshwater methane emissions offset the continental carbon sink, Science, 331, 50, 10.1126/science.1196808
Baulch, 2011, Nitrogen enrichment and the emission of nitrous oxide from streams, Global Biogeochemical Cycles 25, 10.1029/2011GB004047
Beaulieu, 2014, High methane emissions from a midlatitude reservoir draining an agricultural watershed, Environmental Science and Technology, 48, 11100, 10.1021/es501871g
Beaulieu, 2015, Controls on nitrous oxide production and consumption in reservoirs of the Ohio River Basin: N2O in reservoirs, Journal of Geophysical. Research: Biogeosciences, 120, 1
Brothers, 2012, Landscape heterogeneity influences carbon dioxide production in a young boreal reservoir, Canadian Journal of Fisheries and Aquatic Sciences, 69, 447, 10.1139/f2011-174
Ciais, 2013, Carbon and other biogeochemical cycles, Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, 465
Clow, 2015, Organic carbon burial in lakes and reservoirs of the conterminous United States, Environmental Science and Technology, 49, 7614, 10.1021/acs.est.5b00373
Cunha, 2013, A trophic state index for tropical/subtropical reservoirs (TSItsr), Ecological Engineering, 60, 126, 10.1016/j.ecoleng.2013.07.058
Davidson, 2015, Eutrophication effects on greenhouse gas fluxes from shallow-lake mesocosms override those of climate warming, Global Change Biology, 21, 4449, 10.1111/gcb.13062
DelSontro, 2010, Extreme methane emissions from a Swiss hydropower reservoir: Ccontribution from bubbling sediments, Environmental. Science and. Technology., 44, 2419, 10.1021/es9031369
DelSontro, 2011, Spatial heterogeneity of methane ebullition in a large tropical reservoir, Environmental Science and Technology, 45, 9866, 10.1021/es2005545
DelSontro, 2015, Size does matter: Importance of large bubbles and small-scale hot spots for methane transport, Environmental Science and Technology, 49, 1268, 10.1021/es5054286
Delwiche, 2015, A novel optical sensor designed to measure methane bubble sizes in situ: Sensor to measure CH4 bubble sizes, Limnology and Oceanography: Methods, 13, 712
Demarty, 2011, GHG emissions from hydroelectric reservoirs in tropical and equatorial regions: Review of 20 years of CH4 emission measurements, Energy Policy, 39, 4197, 10.1016/j.enpol.2011.04.033
Demarty, 2011, Annual follow-up of gross diffusive carbon dioxide and methane emissions from a boreal reservoir and two nearby lakes in Québec, Canada, Biogeosciences, 8, 41, 10.5194/bg-8-41-2011
Deshmukh, 2014, Physical controls on CH4 emissions from a newly flooded subtropical freshwater hydroelectric reservoir: Nam Theun 2, Biogeosciences, 11, 4251, 10.5194/bg-11-4251-2014
Downing, 2009, Abundance and size distribution of lakes, ponds, and impoundments, Encyclopedia of Inland Waters, 469, 10.1016/B978-012370626-3.00025-9
Downing, 2008, Sediment organic carbon burial in agriculturally eutrophic impoundments over the last century, Global Biogeochemical Cycles, 22, 10.1029/2006GB002854
Downing, 2006, The global abundance and size distribution of lakes, ponds, and impoundments, Limnology and Oceanography, 51, 2388, 10.4319/lo.2006.51.5.2388
Eugster, 2011, Eddy covariance flux measurements confirm extreme CH4 emissions from a Swiss hydropower reservoir and resolve their short-term variability, Biogeosciences, 8, 2815, 10.5194/bg-8-2815-2011
Faria, 2015, Estimating greenhouse gas emissions from future Amazonian hydroelectric reservoirs, Environmental Research Letters, 10, e124019, 10.1088/1748-9326/10/12/124019
Fassbinder, 2013, Automated, low-power chamber system for measuring nitrous oxide emissions, Journal of Environmental Quality, 42, 606, 10.2134/jeq2012.0283
Fearnside, 2015, Emissions from tropical hydropower and the IPCC, Environmental Science Policy, 50, 225, 10.1016/j.envsci.2015.03.002
Giles, 2006, Methane quashes green credentials of hydropower, Nature, 444, 524
Grinham, 2011, Quantification of ebullitive and diffusive methane release to atmosphere from a water storage, Atmospheric Environment, 45, 7166, 10.1016/j.atmosenv.2011.09.011
Guérin, 2006, Methane and carbon dioxide emissions from tropical reservoirs: Significance of downstream rivers, Geophysical Research Letters, 33, 1, 10.1029/2006GL027929
Guillemette, 2015, Selective consumption and metabolic allocation of terrestrial and algal carbon determine allochthony in lake bacteria, ISME Journal, 10, 1373, 10.1038/ismej.2015.215
Harrison, 2010, Magnitudes and sources of dissolved inorganic phosphorus inputs to surface fresh waters and the coastal zone: A new global model: Global DIP loading to surface waters, Global Biogeochemical Cycles, 24, 1, 10.1029/2009GB003590
Hendzel, 2005, Nitrous oxide fluxes in three experimental boreal forest reservoirs, Environmental Science and Technology, 39, 4353, 10.1021/es049443j
Hertwich, 2013, Addressing biogenic greenhouse gas emissions from hydropower in LCA, Environmental Science and Technology, 47, 9604, 10.1021/es401820p
Holgerson, 2016, Large contribution to inland water CO2 and CH4 emissions from very small ponds, Nature Geoscience, 9, 222, 10.1038/ngeo2654
Huttunen, 2002, Fluxes of CH4, CO2, and N2O in hydroelectric reservoirs Lokka and Porttipahta in the northern boreal zone in Finland, Global Biogeochemical Cycles, 16, 1, 10.1029/2000GB001316
Huttunen, 2003, Fluxes of methane, carbon dioxide and nitrous oxide in boreal lakes and potential anthropogenic effects on the aquatic greenhouse gas emissions, Chemosphere, 52, 609, 10.1016/S0045-6535(03)00243-1
[IEA Hydropower] International Energy Agency Technology Collaboration Programme on Hydropower, 2012, Annex XII: Hydropower and the Environment Task 1: Managing the Carbon Balance of Freshwater Reservoirs (2007–Present)
Jacinthe, 2012, Carbon storage and greenhouse gases emission from a fluvial reservoir in an agricultural landscape, Catena, 94, 53, 10.1016/j.catena.2011.03.012
Jammet, 2015, Large methane emissions from a subarctic lake during spring thaw: Mechanisms and landscape significance, Journal of Geophysical Research: Biogeosciences, 120, 1
Kemenes, 2007, Methane release below a tropical hydroelectric dam, Geophysical Research Letters 34 (art. L12809)., 10.1029/2007GL029479
Kemenes, 2011, CO2 emissions from a tropical hydroelectric reservoir (Balbina, Brazil), Journal of Geophysical Research: Biogeosciences, 116, 10.1029/2010JG001465
Kiene, 1991, Production and consumption of methane in aquatic systems, Microbial Production and of Greenhouse Gases: Methane, Nitrogen Oxides, and Halomethanes, 111
Knoll, 2013, Temperate reservoirs are large carbon sinks and small CO2 sources: Results from high-resolution carbon budgets, Global Biogeochemical Cycles, 27, 52, 10.1002/gbc.20020
Lehner, 2011, High-resolution mapping of the world's reservoirs and dams for sustainable river-flow management, Frontiers in Ecology and the Environment, 9, 494, 10.1890/100125
Li, 2014, Carbon emission from global hydroelectric reservoirs revisited, Environmental Science and Pollution Research, 21, 13636, 10.1007/s11356-014-3165-4
Li, 2015, Methane and CO2 emissions from China's hydroelectric reservoirs: a new quantitative synthesis, Environmental Science and Pollution Research, 22, 5325, 10.1007/s11356-015-4083-9
Lu, 2011, Preliminary report on methane emissions from the Three Gorges Reservoir in the summer drainage period, Journal of Environmental Sciences, 23, 2029, 10.1016/S1001-0742(10)60668-7
Maeck, 2013, Sediment trapping by dams creates methane emission hot spots, Environmental Science and Technology, 47, 8130, 10.1021/es4003907
Maeck, 2014, Pumping methane out of aquatic sediments: Ebullition forcing mechanisms in an impounded river, Biogeosciences, 11, 2925, 10.5194/bg-11-2925-2014
Matthews, 2005, Carbon dioxide and methane production in small reservoirs flooding upland boreal forest, Ecosystems, 8, 267, 10.1007/s10021-005-0005-x
McCrackin, 2011, Greenhouse gas dynamics in lakes receiving atmospheric nitrogen deposition, Global Biogeochemical Cycles, 25, 1, 10.1029/2010GB003897
McGinnis, 2006, Fate of rising methane bubbles in stratified waters: How much methane reaches the atmosphere?, Journal of Geophysical Research: Biogeosciences, 111, 1, 10.1029/2005JC003183
Melton, 2013, Present state of global wetland extent and wetland methane modelling: Conclusions from a model inter-comparison project (WETCHIMP), Biogeosciences, 10, 753, 10.5194/bg-10-753-2013
Michmerhuizen, 1996, Potential methane emission from north-temperate lakes following ice melt, Limnology and Oceanography, 41, 985, 10.4319/lo.1996.41.5.0985
Morales-Pineda, 2014, Daily, biweekly, and seasonal temporal scales of CO2 variability in two stratified Mediterranean reservoirs, Journal of Geophysical Research: Biogeosciences, 119, 509, 10.1002/2013JG002317
Myhre, 2013, Anthropogenic and natural radiative forcing, Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, 659
Narvenkar, 2013, Dissolved methane in Indian freshwater reservoirs, Environmental Monitoring and Assessment, 185, 6989, 10.1007/s10661-013-3079-5
Ostrovsky, 2008, Quantifying gas ebullition with echosounder: The role of methane transport by bubbles in a medium-sized lake, Limnology and Oceanography: Methods, 6, 105
Pacheco, 2013, Eutrophication reverses whole-lake carbon budgets, Inland Waters, 4, 41, 10.5268/IW-4.1.614
Pacheco, 2015, The effects of river inflow and retention time on the spatial heterogeneity of chlorophyll and water–air CO2 fluxes in a tropical hydropower reservoir, Biogeosciences, 12, 147, 10.5194/bg-12-147-2015
Peltola, 2013, Field intercomparison of four methane gas analyzers suitable for eddy covariance flux measurements, Biogeosciences, 10, 3749, 10.5194/bg-10-3749-2013
Podgrajsek, 2014, Diurnal cycle of lake methane flux: Diurnal cycle of lake methane flux, Journal of Geophysical Research: Biogeosciences, 119, 236, 10.1002/2013JG002327
Podgrajsek, 2015, Diel cycle of lake–air CO 2 flux from a shallow lake and the impact of waterside convection on the transfer velocity, Journal of Geophysical Research: Biogeosciences, 120, 29, 10.1002/2014JG002781
Rantakari, 2005, Interannual variation and climatic regulation of the CO2 emission from large boreal lakes, Global Change Biology, 11, 1368, 10.1111/j.1365-2486.2005.00982.x
Rasilo, 2015, Large-scale patterns in summer diffusive CH4 fluxes across boreal lakes, and contribution to diffusive C emissions, Global Change Biology, 21, 1124, 10.1111/gcb.12741
Raymond, 2013, Global carbon dioxide emissions from inland waters, Nature, 503, 355, 10.1038/nature12760
Rudd, 1978, Methane cycling in a eutrohic shield lake and its effects on whole lake metabolism, Limnology and Oceanography, 23, 337, 10.4319/lo.1978.23.2.0337
Sayers, 2015, A new method to generate a high-resolution global distribution map of lake chlorophyll, International Journal of Remote Sensing, 36, 1942, 10.1080/01431161.2015.1029099
Stanley, 2016, The ecology of methane in streams and rivers: Patterns, controls, and global significance, Ecological Monographs, 86, 146, 10.1890/15-1027
Louis, 2000, Reservoir surfaces as sources of greenhouse gases to the atmosphere: A global estimate, BioScience, 50, 766, 10.1641/0006-3568(2000)050[0766:RSASOG]2.0.CO;2
Sturm, 2014, Methane and nitrous oxide sources and emissions in a subtropical freshwater reservoir, South East Queensland, Australia, Biogeosciences, 11, 5245, 10.5194/bg-11-5245-2014
Teodoru, 2012, The net carbon footprint of a newly created boreal hydroelectric reservoir, Global Biogeochemical Cycles, 26, 10.1029/2011GB004187
Thornton, 1990, Reservoir Limnology: Ecological Perspectives
Tian, 2015, Global methane and nitrous oxide emissions from terrestrial ecosystems due to multiple environmental changes, Ecosystem Health and Sustainability, 1, 1, 10.1890/EHS14-0015.1
[UNESCO–IHA] International Hydropower Association, United Nations Educational, Scientific, and Cultural Organization, 2010, GHG Measurement Guidelines for Freshwater Reservoirs
[UNESCO–IHA] International Hydropower Association, United Nations Educational, Scientific, and Cultural Organization, 2012, GHG Risk Assessment Tool (Beta Version) User Manual
Utsumi, 1998, Dynamics of dissolved methane and methane oxidation in dimictic Lake Nojiri during winter, Limnology and Oceanography, 43, 10, 10.4319/lo.1998.43.1.0010
Varadharajan, 2010, A low-cost automated trap to measure bubbling gas fluxes, Limnology and Oceanography Methods, 8, 363, 10.4319/lom.2010.8.363
Varis, 2012, Greenhouse gas emissions from eeservoirs, Impacts of Large Dams: A Global Assessment, 69, 10.1007/978-3-642-23571-9_4
Verpoorter, 2014, A global inventory of lakes based on high-resolution satellite imagery, Geophysical Research Letters, 41, 6396, 10.1002/2014GL060641
West, 2012, Effects of algal and terrestrial carbon on methane production rates and methanogen community structure in a temperate lake sediment: Methanogen response to trophic change, Freshwater Biology, 57, 949, 10.1111/j.1365-2427.2012.02755.x
West, 2015, Productivity and depth regulate lake contributions to atmospheric methane: Lake productivity fuels methane emissions, Limnology and Oceanography, 54, 2298
West, 2015, Phytoplankton lipid content influences freshwater lake methanogenesis, Freshwater Biology, 60, 2261, 10.1111/fwb.12652
Whiting, 1993, Primary production control of methane emission from wetlands, Nature, 364, 794, 10.1038/364794a0
Wik, 2016, Biased sampling of methane release from northern lakes: A problem for extrapolation, Geophysical Research Letters, 43, 1256, 10.1002/2015GL066501
Yang, 2014, Progress in the studies on the greenhouse gas emissions from reservoirs, Acta Ecologica Sinica, 34, 204, 10.1016/j.chnaes.2013.05.011
Yang, 2014, Spatial and seasonal CH4 flux in the littoral zone of Miyun Reservoir near Beijing: The effects of water level and its fluctuation, PLOS ONE, 9
Yvon-Durocher, 2014, Methane fluxes show consistent temperature dependence across microbial to ecosystem scales, Nature, 507, 488, 10.1038/nature13164
Zarfl, 2015, A global boom in hydropower dam construction, Aquatic Sciences, 77, 161, 10.1007/s00027-014-0377-0