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Preindustrial (CH4)-C-14 indicates greater anthropogenic fossil CH4 emissions 期刊论文
NATURE, 2020, 578 (7795) : 409-+
作者:  Keener, Megan;  Hunt, Camden;  Carroll, Timothy G.;  Kampel, Vladimir;  Dobrovetsky, Roman;  Hayton, Trevor W.;  Menard, Gabriel
收藏  |  浏览/下载:25/0  |  提交时间:2020/05/13

Atmospheric methane (CH4) is a potent greenhouse gas, and its mole fraction has more than doubled since the preindustrial era(1). Fossil fuel extraction and use are among the largest anthropogenic sources of CH4 emissions, but the precise magnitude of these contributions is a subject of debate(2,3). Carbon-14 in CH4 ((CH4)-C-14) can be used to distinguish between fossil (C-14-free) CH4 emissions and contemporaneous biogenic sources  however, poorly constrained direct (CH4)-C-14 emissions from nuclear reactors have complicated this approach since the middle of the 20th century(4,5). Moreover, the partitioning of total fossil CH4 emissions (presently 172 to 195 teragrams CH4 per year)(2,3) between anthropogenic and natural geological sources (such as seeps and mud volcanoes) is under debate  emission inventories suggest that the latter account for about 40 to 60 teragrams CH4 per year(6,7). Geological emissions were less than 15.4 teragrams CH4 per year at the end of the Pleistocene, about 11,600 years ago(8), but that period is an imperfect analogue for present-day emissions owing to the large terrestrial ice sheet cover, lower sea level and extensive permafrost. Here we use preindustrial-era ice core (CH4)-C-14 measurements to show that natural geological CH4 emissions to the atmosphere were about 1.6 teragrams CH4 per year, with a maximum of 5.4 teragrams CH4 per year (95 per cent confidence limit)-an order of magnitude lower than the currently used estimates. This result indicates that anthropogenic fossil CH4 emissions are underestimated by about 38 to 58 teragrams CH4 per year, or about 25 to 40 per cent of recent estimates. Our record highlights the human impact on the atmosphere and climate, provides a firm target for inventories of the global CH4 budget, and will help to inform strategies for targeted emission reductions(9,10).


Isotopic evidence from ice cores indicates that preindustrial-era geological methane emissions were lower than previously thought, suggesting that present-day emissions of methane from fossil fuels are underestimated.


  
Rising methane: A new climate challenge 期刊论文
SCIENCE, 2019, 364 (6444) : 932-933
作者:  Fletcher, Sara E. Mikaloff;  Schaefer, Hinrich
收藏  |  浏览/下载:2/0  |  提交时间:2019/11/27
Electrified methane reforming: A compact approach to greener industrial hydrogen production 期刊论文
SCIENCE, 2019, 364 (6442) : 756-+
作者:  Wismann, Sebastian T.;  Engbaek, Jakob S.;  Vendelbo, Soren B.;  Bendixen, Flemming B.;  Eriksen, Winnie L.;  Aasberg-Petersen, Kim;  Frandsen, Cathrine;  Chorkendorff, Ib;  Mortensen, Peter M.
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
Particulate methane monooxygenase contains only mononuclear copper centers 期刊论文
SCIENCE, 2019, 364 (6440) : 566-+
作者:  Ross, Matthew O.;  MacMillan, Fraser;  Wang, Jingzhou;  Nisthal, Alex;  Lawton, Thomas J.;  Olafson, Barry D.;  Mayo, Stephen L.;  Rosenzweig, Amy C.;  Hoffman, Brian M.
收藏  |  浏览/下载:9/0  |  提交时间:2019/11/27
Secondary organic aerosol reduced by mixture of atmospheric vapours 期刊论文
NATURE, 2019, 565 (7741) : 587-593
作者:  McFiggans, Gordon;  Mentel, Thomas F.;  Wildt, Juergen;  Pullinen, Iida;  Kang, Sungah;  Kleist, Einhard;  Schmitt, Sebastian;  Springer, Monika;  Tillmann, Ralf;  Wu, Cheng;  Zhao, Defeng;  Hallquist, Mattias;  Faxon, Cameron;  Le Breton, Michael;  Hallquist, Asa M.;  Simpson, David;  Bergstrom, Robert;  Jenkin, Michael E.;  Ehn, Mikael;  Thornton, Joel A.;  Alfarra, M. Rami;  Bannan, Thomas J.;  Percival, Carl J.;  Priestley, Michael;  Topping, David;  Kiendler-Scharr, Astrid
收藏  |  浏览/下载:11/0  |  提交时间:2019/11/27
Effects of fossil fuel and total anthropogenic emission removal on public health and climate 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (15) : 7192-7197
作者:  Lelieveld, J.;  Klingmueller, K.;  Pozzer, A.;  Burnett, R. T.;  Haines, A.;  Ramanathan, V.
收藏  |  浏览/下载:7/0  |  提交时间:2019/11/27
air pollution  greenhouse gases  health impacts  climate change  hydrologic cycle  
Decadal increase in Arctic dimethylsulfide emission 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (39) : 19311-19317
作者:  Gali, Marti;  Devred, Emmanuel;  Babin, Marcel;  Levasseur, Maurice
收藏  |  浏览/下载:5/0  |  提交时间:2019/11/27
dimethylsulfide  Arctic Ocean  plankton  sea ice  aerosols  
Termite mounds mitigate half of termite methane emissions 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2018, 115 (52) : 13306-13311
作者:  Nauer, Philipp A.;  Hutley, Lindsay B.;  Arndt, Stefan K.
收藏  |  浏览/下载:9/0  |  提交时间:2019/11/27
termite mounds  methane oxidation  methanotrophs  termite biomass  methane emissions  
Large changes in biomass burning over the last millennium inferred from paleoatmospheric ethane in polar ice cores 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2018, 115 (49) : 12413-12418
作者:  Nicewonger, Melinda R.;  Aydin, Murat;  Prather, Michael J.;  Saltzman, Eric S.
收藏  |  浏览/下载:14/0  |  提交时间:2019/11/27
ethane  ice cores  biomass burning  geologic hydrocarbons  Little Ice Age  
Temporal variability largely explains top-down/bottom-up difference in methane emission estimates from a natural gas production region 期刊论文
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2018, 115 (46) : 11712-11717
作者:  Vaughn, Timothy L.;  Bell, Clay S.;  Pickering, Cody K.;  Schwietzke, Stefan;  Heath, Garvin A.;  Petron, Gabrielle;  Zimmerle, Daniel J.;  Schnell, Russell C.;  Nummedal, Dag
收藏  |  浏览/下载:10/0  |  提交时间:2019/11/27
natural gas  methane emissions  top-down  bottom-up  spatiotemporal inventory model