uri,href,identifier,attrs.Author,attrs.DOI,attrs.Date,attrs.ISSN,attrs.Issue,attrs.Journal,attrs.Pages,attrs.Title,attrs.Volume,attrs.Year,attrs.\.publisher,attrs.\.reference_type,attrs._record_number,attrs._uuid,attrs.reftype,child_publication
/reference/15c1814b-577b-4ba3-90ce-86948daba0e0,https://data.globalchange.gov/reference/15c1814b-577b-4ba3-90ce-86948daba0e0,15c1814b-577b-4ba3-90ce-86948daba0e0,"Bowen, Gabriel J.; Maibauer, Bianca J.; Kraus, Mary J.; Rohl, Ursula; Westerhold, Thomas; Steimke, Amy; Gingerich, Philip D.; Wing, Scott L.; Clyde, William C.",10.1038/ngeo2316,01//print,1752-0894,1,"Nature Geoscience",44-47,"Two massive, rapid releases of carbon during the onset of the Palaeocene-Eocene thermal maximum",8,2015,"Nature Publishing Group",0,20583,15c1814b-577b-4ba3-90ce-86948daba0e0,"Journal Article",/article/10.1038/ngeo2316
/reference/2d65f18b-ef81-450c-b48f-4d665f0f2407,https://data.globalchange.gov/reference/2d65f18b-ef81-450c-b48f-4d665f0f2407,2d65f18b-ef81-450c-b48f-4d665f0f2407,"Thomas J. Crowley",10.1175/1520-0442(1990)003<1282:atasga>2.0.co;2,,,11,"Journal of Climate",1282-1292,"Are there any satisfactory geologic analogs for a future greenhouse warming?",3,1990,,0,20586,2d65f18b-ef81-450c-b48f-4d665f0f2407,"Journal Article",/article/10.1175/1520-0442(1990)003%3C1282:atasga%3E2.0.co;2
/reference/3be9654e-ee0f-42cf-94cd-a3ed5e32fb43,https://data.globalchange.gov/reference/3be9654e-ee0f-42cf-94cd-a3ed5e32fb43,3be9654e-ee0f-42cf-94cd-a3ed5e32fb43,"Royer, D. L.",10.1016/B978-0-08-095975-7.01311-5,,,,,251-267,"6.11 - Atmospheric CO 2  and O 2  during the Phanerozoic: Tools, patterns, and impacts","V.6: The atmosphere: History",2014,,7,20596,3be9654e-ee0f-42cf-94cd-a3ed5e32fb43,"Book Section",/book/37dd80fe-a13f-4954-8162-dd96ba4af5bc
/reference/4a5890ba-0829-4cdd-8dc2-e77e46a25be5,https://data.globalchange.gov/reference/4a5890ba-0829-4cdd-8dc2-e77e46a25be5,4a5890ba-0829-4cdd-8dc2-e77e46a25be5,"Seki, Osamu; Foster, Gavin L.; Schmidt, Daniela N.; Mackensen, Andreas; Kawamura, Kimitaka; Pancost, Richard D.",10.1016/j.epsl.2010.01.037,3/15/,0012-821X,"1–2","Earth and Planetary Science Letters",201-211,"Alkenone and boron-based Pliocene pCO2 records",292,2010,,0,20598,4a5890ba-0829-4cdd-8dc2-e77e46a25be5,"Journal Article",/article/10.1016/j.epsl.2010.01.037
/reference/4feca1bb-a6c0-49ea-aff8-76224ffd5a82,https://data.globalchange.gov/reference/4feca1bb-a6c0-49ea-aff8-76224ffd5a82,4feca1bb-a6c0-49ea-aff8-76224ffd5a82,"Haywood, A. M.; Hill, D. J.; Dolan, A. M.; Otto-Bliesner, B. L.; Bragg, F.; Chan, W. L.; Chandler, M. A.; Contoux, C.; Dowsett, H. J.; Jost, A.; Kamae, Y.; Lohmann, G.; Lunt, D. J.; Abe-Ouchi, A.; Pickering, S. J.; Ramstein, G.; Rosenbloom, N. A.; Salzmann, U.; Sohl, L.; Stepanek, C.; Ueda, H.; Yan, Q.; Zhang, Z.",10.5194/cp-9-191-2013,,,1,"Climate of the Past",191-209,"Large-scale features of Pliocene climate: Results from the Pliocene Model Intercomparison Project",9,2013,"Copernicus Publications",0,19419,4feca1bb-a6c0-49ea-aff8-76224ffd5a82,"Journal Article",/article/10.5194/cp-9-191-2013
/reference/6c1e37e5-22fa-4b90-951f-7757927845fb,https://data.globalchange.gov/reference/6c1e37e5-22fa-4b90-951f-7757927845fb,6c1e37e5-22fa-4b90-951f-7757927845fb,"Otto-Bliesner, Bette L.; Rosenbloom, Nan; Stone, Emma J.; McKay, Nicholas P.; Lunt, Daniel J.; Brady, Esther C.; Overpeck, Jonathan T.",10.1098/rsta.2013.0097,,,2001,"Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences",20130097,"How warm was the last interglacial? New model–data comparisons",371,2013,,0,20593,6c1e37e5-22fa-4b90-951f-7757927845fb,"Journal Article",/article/10.1098/rsta.2013.0097
/reference/6f4c1264-ab24-4802-9171-ea967deecc6c,https://data.globalchange.gov/reference/6f4c1264-ab24-4802-9171-ea967deecc6c,6f4c1264-ab24-4802-9171-ea967deecc6c,"V. Masson-Delmotte; M. Schulz; A. Abe-Ouchi; J. Beer; A. Ganopolski; J.F. González Rouco; E. Jansen; K. Lambeck; J. Luterbacher; T. Naish; T. Osborn; B. Otto-Bliesner; T. Quinn; R. Ramesh; M. Rojas; X. Shao; A. Timmermann",,,,,,"383–464","Information from paleoclimate archives",,2013,,7,16466,6f4c1264-ab24-4802-9171-ea967deecc6c,"Book Section",/report/ipcc-ar5-wg1/chapter/wg1-ar5-chapter05-final
/reference/7f28a81a-4e01-4d93-ac07-7b133a0783e2,https://data.globalchange.gov/reference/7f28a81a-4e01-4d93-ac07-7b133a0783e2,7f28a81a-4e01-4d93-ac07-7b133a0783e2,NEEM,10.1038/nature11789,01/24/print,,7433,Nature,489-494,"Eemian interglacial reconstructed from a Greenland folded ice core",493,2013,"Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.",0,20592,7f28a81a-4e01-4d93-ac07-7b133a0783e2,"Journal Article",/article/10.1038/nature11789
/reference/920fc97d-049b-4cf3-9702-8c14f4c3208d,https://data.globalchange.gov/reference/920fc97d-049b-4cf3-9702-8c14f4c3208d,920fc97d-049b-4cf3-9702-8c14f4c3208d,"Miller, Kenneth G.; Wright, James D.; Browning, James V.; Kulpecz, Andrew; Kominz, Michelle; Naish, Tim R.; Cramer, Benjamin S.; Rosenthal, Yair; Peltier, W. Richard; Sosdian, Sindia",10.1130/g32869.1,"March 19, 2012",,5,Geology,407-410,"High tide of the warm Pliocene: Implications of global sea level for Antarctic deglaciation",40,2012,,0,19962,920fc97d-049b-4cf3-9702-8c14f4c3208d,"Journal Article",/article/10.1130/g32869.1
/reference/97079544-53fc-496d-b8fc-871be0681b33,https://data.globalchange.gov/reference/97079544-53fc-496d-b8fc-871be0681b33,97079544-53fc-496d-b8fc-871be0681b33,"Lunt, D. J.; Dunkley Jones, T.; Heinemann, M.; Huber, M.; LeGrande, A.; Winguth, A.; Loptson, C.; Marotzke, J.; Roberts, C. D.; Tindall, J.; Valdes, P.; Winguth, C.",10.5194/cp-8-1717-2012,,1814-9332,5,"Climate of the Past",1717-1736,"A model–data comparison for a multi-model ensemble of early Eocene atmosphere–ocean simulations: EoMIP",8,2012,"Copernicus Publications",0,20097,97079544-53fc-496d-b8fc-871be0681b33,"Journal Article",/article/10.5194/cp-8-1717-2012
/reference/a5055be6-7deb-484f-b027-69c2ac661c68,https://data.globalchange.gov/reference/a5055be6-7deb-484f-b027-69c2ac661c68,a5055be6-7deb-484f-b027-69c2ac661c68,"Jouzel, J.; Masson-Delmotte, V.; Cattani, O.; Dreyfus, G.; Falourd, S.; Hoffmann, G.; Minster, B.; Nouet, J.; Barnola, J. M.; Chappellaz, J.; Fischer, H.; Gallet, J. C.; Johnsen, S.; Leuenberger, M.; Loulergue, L.; Luethi, D.; Oerter, H.; Parrenin, F.; Raisbeck, G.; Raynaud, D.; Schilt, A.; Schwander, J.; Selmo, E.; Souchez, R.; Spahni, R.; Stauffer, B.; Steffensen, J. P.; Stenni, B.; Stocker, T. F.; Tison, J. L.; Werner, M.; Wolff, E. W.",10.1126/science.1141038,,,5839,Science,793-796,"Orbital and millennial Antarctic climate variability over the past 800,000 years",317,2007,,0,20590,a5055be6-7deb-484f-b027-69c2ac661c68,"Journal Article",/article/10.1126/science.1141038
/reference/a7eaa271-3c43-4c6f-add7-305f4e0ce52e,https://data.globalchange.gov/reference/a7eaa271-3c43-4c6f-add7-305f4e0ce52e,a7eaa271-3c43-4c6f-add7-305f4e0ce52e,"Zeebe, Richard E.; Ridgwell, Andy; Zachos, James C.",10.1038/ngeo2681,04//print,1752-0894,4,"Nature Geoscience",325-329,"Anthropogenic carbon release rate unprecedented during the past 66 million years",9,2016,"Nature Publishing Group",0,20119,a7eaa271-3c43-4c6f-add7-305f4e0ce52e,"Journal Article",/article/10.1038/ngeo2681
/reference/a8b2d884-2bfb-4a5a-bfa4-a28bd4d68ca9,https://data.globalchange.gov/reference/a8b2d884-2bfb-4a5a-bfa4-a28bd4d68ca9,a8b2d884-2bfb-4a5a-bfa4-a28bd4d68ca9,NRC,10.17226/12877,,,,,,"Climate Stabilization Targets: Emissions, Concentrations, and Impacts over Decades to Millennia",,2011,,9,2309,a8b2d884-2bfb-4a5a-bfa4-a28bd4d68ca9,Book,/report/nrc-stabilization-targets-2011
/reference/bd8bf653-6f62-479e-964c-8d5165a274a4,https://data.globalchange.gov/reference/bd8bf653-6f62-479e-964c-8d5165a274a4,bd8bf653-6f62-479e-964c-8d5165a274a4,"Schneider, R.; Schmitt, J.; Köhler, P.; Joos, F.; Fischer, H.",10.5194/cp-9-2507-2013,,,6,"Climate of the Past",2507-2523,"A reconstruction of atmospheric carbon dioxide and its stable carbon isotopic composition from the penultimate glacial maximum to the last glacial inception",9,2013,"Copernicus Publications",0,20597,bd8bf653-6f62-479e-964c-8d5165a274a4,"Journal Article",/article/10.5194/cp-9-2507-2013
/reference/c0bdfdf2-5012-4496-9d27-c8d540fd4d4b,https://data.globalchange.gov/reference/c0bdfdf2-5012-4496-9d27-c8d540fd4d4b,c0bdfdf2-5012-4496-9d27-c8d540fd4d4b,"Dutton, A.; Carlson, A. E.; Long, A. J.; Milne, G. A.; Clark, P. U.; DeConto, R.; Horton, B. P.; Rahmstorf, S.; Raymo, M. E.",10.1126/science.aaa4019,,,6244,Science,aaa4019,"Sea-level rise due to polar ice-sheet mass loss during past warm periods",349,2015,,0,19919,c0bdfdf2-5012-4496-9d27-c8d540fd4d4b,"Journal Article",/article/10.1126/science.aaa4019
/reference/e236d370-b985-4c1f-9752-22830fa9e5c6,https://data.globalchange.gov/reference/e236d370-b985-4c1f-9752-22830fa9e5c6,e236d370-b985-4c1f-9752-22830fa9e5c6,"Kirtland Turner, Sandra; Sexton, Philip F.; Charles, Christopher D.; Norris, Richard D.",10.1038/ngeo2240,10//print,1752-0894,10,"Nature Geoscience",748-751,"Persistence of carbon release events through the peak of early Eocene global warmth",7,2014,"Nature Publishing Group",0,20600,e236d370-b985-4c1f-9752-22830fa9e5c6,"Journal Article",/article/10.1038/ngeo2240
/reference/edd64878-de00-482f-9672-f187bf0e7c62,https://data.globalchange.gov/reference/edd64878-de00-482f-9672-f187bf0e7c62,edd64878-de00-482f-9672-f187bf0e7c62,"Penman, Donald E.; Hönisch, Bärbel; Zeebe, Richard E.; Thomas, Ellen; Zachos, James C.",10.1002/2014PA002621,,1944-9186,5,Paleoceanography,357-369,"Rapid and sustained surface ocean acidification during the Paleocene-Eocene Thermal Maximum",29,2014,,0,20595,edd64878-de00-482f-9672-f187bf0e7c62,"Journal Article",/article/10.1002/2014PA002621
