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Large loss of CO2 in winter observed across the northern permafrost region (vol 9, pg 852, 2019)

Cited 136 time in wos
Cited 135 time in scopus

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dc.contributor.authorNatali, Susan M.-
dc.contributor.authorWatts, Jennifer D.-
dc.contributor.authorRogers, Brendan M.-
dc.contributor.authorPotter, Stefano-
dc.contributor.authorLudwig, Sarah M.-
dc.contributor.authorSelbmann, Anne-Katrin-
dc.contributor.authorSullivan, Patrick F.-
dc.contributor.authorAbbott, Benjamin W.-
dc.contributor.authorArndt, Kyle A.-
dc.contributor.authorBirch, Leah-
dc.contributor.authorBjorkman, Mats P.-
dc.contributor.authorBloom, A. Anthony-
dc.contributor.authorCelis, Gerardo-
dc.contributor.authorChristensen, Torben R.-
dc.contributor.authorChristiansen, Casper T.-
dc.contributor.authorCommane, Roisin-
dc.contributor.authorCooper, Elisabeth J.-
dc.contributor.authorCrill, Patrick-
dc.contributor.authorCzimczik, Claudia-
dc.contributor.authorDavydov, Sergey-
dc.contributor.authorDu, Jinyang-
dc.contributor.authorEgan, Jocelyn E.-
dc.contributor.authorElberling, Bo-
dc.contributor.authorEuskirchen, Eugenie S.-
dc.contributor.authorFriborg, Thomas-
dc.contributor.authorGenet, Helene-
dc.contributor.authorGockede, Mathias-
dc.contributor.authorGoodrich, Jordan P.-
dc.contributor.authorGrogan, Paul-
dc.contributor.authorHelbig, Manuel-
dc.contributor.authorJafarov, Elchin E.-
dc.contributor.authorJastrow, Julie D.-
dc.contributor.authorKalhori, Aram A. M.-
dc.contributor.authorKim, Yongwon-
dc.contributor.authorKimball, John S.-
dc.contributor.authorKutzbach, Lars-
dc.contributor.authorLara, Mark J.-
dc.contributor.authorLarsen, Klaus S.-
dc.contributor.authorLee, Bang-Yong-
dc.contributor.authorLiu, Zhihua-
dc.contributor.authorLoranty, Michael M.-
dc.contributor.authorLund, Magnus-
dc.contributor.authorLupascu, Massimo-
dc.contributor.authorMadani, Nima-
dc.contributor.authorMalhotra, Avni-
dc.contributor.authorMatamala, Roser-
dc.contributor.authorMcFarland, Jack-
dc.contributor.authorMcGuire, A. David-
dc.contributor.authorMichelsen, Anders-
dc.contributor.authorMinions, Christina-
dc.contributor.authorOechel, Walter C.-
dc.contributor.authorOlefeldt, David-
dc.contributor.authorParmentier, Frans-Jan W.-
dc.contributor.authorPirk, Norbert-
dc.contributor.authorPoulter, Ben-
dc.contributor.authorQuinton, William-
dc.contributor.authorRezanezhad, Fereidoun-
dc.contributor.authorRisk, David-
dc.contributor.authorSachs, Torsten-
dc.contributor.authorSchaefer, Kevin-
dc.contributor.authorSchmidt, Niels M.-
dc.contributor.authorSchuur, Edward A. G.-
dc.contributor.authorSemenchuk, Philipp R.-
dc.contributor.authorShaver, Gaius-
dc.contributor.authorSonnentag, Oliver-
dc.contributor.authorStarr, Gregory-
dc.contributor.authorTreat, Claire C.-
dc.contributor.authorWaldrop, Mark P.-
dc.contributor.authorWang, Yihui-
dc.contributor.authorWelker, Jeffrey-
dc.contributor.authorWille, Christian-
dc.contributor.authorXu, Xiaofeng-
dc.contributor.authorZhang, Zhen-
dc.contributor.authorZhuang, Qianlai-
dc.contributor.authorZona, Donatella-
dc.date.accessioned2020-10-21T01:53:25Z-
dc.date.available2020-10-21T01:53:25Z-
dc.date.issued2019-11-
dc.identifier.urihttps://repository.kopri.re.kr/handle/201206/10961-
dc.description.abstractRecent warming in the Arctic, which has been amplified during the winter1,2,3, greatly enhances microbial decomposition of soil organic matter and subsequent release of carbon dioxide (CO2)4. However, the amount of CO2 released in winter is not known and has not been well represented by ecosystem models or empirically based estimates5,6. Here we synthesize regional in situ observations of CO2 flux from Arctic and boreal soils to assess current and future winter carbon losses from the northern permafrost domain. We estimate a contemporary loss of 1,662?TgC per year from the permafrost region during the winter season (October?April). This loss is greater than the average growing season carbon uptake for this region estimated from process models (?1,032?TgC per year). Extending model predictions to warmer conditions up to 2100 indicates that winter CO2 emissions will increase 17% under a moderate mitigation scenario―Representative Concentration Pathway 4.5―and 41% under business-as-usual emissions scenario―Representative Concentration Pathway 8.5. Our results provide a baseline for winter CO2 emissions from northern terrestrial regions and indicate that enhanced soil CO2 loss due to winter warming may offset growing season carbon uptake under future climatic conditions.en_US
dc.formatapplication/pdf-
dc.languageEnglishen_US
dc.language.isoenen_US
dc.subjectEnvironmental Sciences & Ecologyen_US
dc.subjectMeteorology & Atmospheric Sciencesen_US
dc.subject.classificationArticleen_US
dc.titleLarge loss of CO2 in winter observed across the northern permafrost region (vol 9, pg 852, 2019)en_US
dc.title.alternative북부 동토지역에서 관측된 겨울철 이산화탄소의 대규모 손실en_US
dc.typeArticleen_US
dc.identifier.bibliographicCitationNatali, Susan M., et al. 2019. "Large loss of CO2 in winter observed across the northern permafrost region (vol 9, pg 852, 2019)". <em>NATURE CLIMATE CHANGE</em>, 9(1): 852-857.-
dc.citation.titleNATURE CLIMATE CHANGEen_US
dc.citation.volume9en_US
dc.citation.number1en_US
dc.identifier.doi10.1038/s41558-019-0592-8-
dc.citation.startPage852en_US
dc.citation.endPage857en_US
dc.description.articleClassificationSCIE-
dc.description.jcrRateJCR 2017:1.163en_US
dc.identifier.localId2019-0303-
dc.identifier.scopusid2-s2.0-85074223265-
dc.identifier.wosid000493735100018-
Appears in Collections  
2019-2019, Arctic permafrost environment change monitoring and prediction method developments (19-19) / Lee, Bang Yong (PN19081)
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