Item talk:Q234743

From geokb

{

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   "@type": "Article",
   "additionalType": "Journal Article",
   "name": "Estimating global natural wetland methane emissions using process modelling: spatio-temporal patterns and contributions to atmospheric methane fluctuations",
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       "value": "10.1111/geb.12307",
       "url": "https://doi.org/10.1111/geb.12307"
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     "name": "Global Ecology and Biogeography",
     "volumeNumber": "24",
     "issueNumber": "8"
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   "datePublished": "2015",
   "dateModified": "2016-07-18",
   "abstract": "\nAim\n\nThe fluctuations of atmospheric methane (CH4) that have occurred in recent decades are not fully understood, particularly with regard to the contribution from wetlands. The application of spatially explicit parameters has been suggested as an effective method for reducing uncertainties in bottom-up approaches to wetland\u00a0CH4\u00a0emissions, but has not been included in recent studies. Our goal was to estimate spatio-temporal patterns of global wetland\u00a0CH4\u00a0emissions using a process model and then to identify the contribution of wetland emissions to atmospheric\u00a0CH4fluctuations.\n\n\n\nLocation\n\nGlobal.\n\n\n\nMethods\n\nA process-based model integrated with full descriptions of methanogenesis (TRIPLEX-GHG) was used to simulate global wetland\u00a0CH4emissions.\n\n\n\nResults\n\nGlobal annual wetland\u00a0CH4\u00a0emissions ranged from 209 to 245\u2009Tg\u00a0CH4\u00a0year\u22121\u00a0between 1901 and 2012, with peaks occurring in 1991 and 2012. There is a decreasing trend between 1990 and 2010 with a rate of approximately 0.48\u2009Tg\u00a0CH4\u00a0year\u22121, which was largely caused by emissions from tropical wetlands showing a decreasing trend of 0.44\u2009Tg\u00a0CH4\u00a0year\u22121\u00a0since the 1970s. Emissions from tropical, temperate and high-latitude wetlands comprised 59, 26 and 15% of global emissions, respectively.\n\n\n\nMain conclusion\n\nGlobal wetland\u00a0CH4\u00a0emissions, the interannual variability of which was primary controlled by tropical wetlands, partially drive the atmosphericCH4\u00a0burden. The stable to decreasing trend in wetland\u00a0CH4\u00a0emissions, a result of a balance of emissions from tropical and extratropical wetlands, was a particular factor in slowing the atmospheric\u00a0CH4\u00a0growth rate during the 1990s. The rapid decrease in tropical wetland\u00a0CH4emissions that began in 2000 was supposed to offset the increase in anthropogenic emissions and resulted in a relatively stable level of atmospheric\u00a0CH4\u00a0from 2000 to 2006. Increasing wetland\u00a0CH4\u00a0emissions, particularly after 2010, should be an important contributor to the growth in atmospheric\u00a0CH4\u00a0seen since 2007.\n\n",
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