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2022
Weber N
,
Antler G
,
Lazar B
,
Stein M
,
Yechieli Y
,
Gavrieli I
. 2022.
Hydrological and thermodynamic controls on late Holocene gypsum formation by mixing saline groundwater and Dead Sea brine
.
Geochimica et Cosmochimica Acta. 316:363-383.
DOI
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Weldeab S
,
Rühlemann C
,
Ding Q
,
Khon V
,
Schneider B
,
Gray WR
. 2022.
Impact of Indian Ocean surface temperature gradient reversals on the Indian Summer Monsoon
.
Earth and Planetary Science Letters. 578:117327.
DOI
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Sefton JP
,
Kemp AC
,
Elder KL
,
Hansman RL
,
Roberts ML
. 2022.
Implications of Single-Step Graphitization For Reconstructing Late Holocene Relative Sea-Level Using Radiocarbon-Dated Organic Coastal Sediment
.
Radiocarbon. :1-20.
DOI
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Jomelli V.
,
Swingedouw D.
,
Vuille M.
,
Favier V.
,
Goehring B.
,
Shakun J.
,
Braucher R.
,
Schimmelpfennig I.
,
Menviel L.
,
Rabatel A.
et al.
. 2022.
In-phase millennial-scale glacier changes in the tropics and North Atlantic regions during the HoloceneAbstract
.
Nature Communications. 13(1)
DOI
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Jomelli V.
,
Swingedouw D.
,
Vuille M.
,
Favier V.
,
Goehring B.
,
Shakun J.
,
Braucher R.
,
Schimmelpfennig I.
,
Menviel L.
,
Rabatel A.
et al.
. 2022.
In-phase millennial-scale glacier changes in the tropics and North Atlantic regions during the HoloceneAbstract
.
Nature Communications. 13(1)
DOI
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Jomelli V.
,
Swingedouw D.
,
Vuille M.
,
Favier V.
,
Goehring B.
,
Shakun J.
,
Braucher R.
,
Schimmelpfennig I.
,
Menviel L.
,
Rabatel A.
et al.
. 2022.
In-phase millennial-scale glacier changes in the tropics and North Atlantic regions during the HoloceneAbstract
.
Nature Communications. 13(1)
DOI
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Kuwae M
,
Tsugeki N
,
Finney BP
,
Tani Y
,
Onodera J
,
Kiyoto M
,
Kusaka M
,
Sagawa T
,
Nakamura Y
,
Ohnishi H
et al.
. 2022.
Late Holocene centennial to millennial-scale variability in lower trophic level productivity off southern Hokkaido, Japan, and its response to dissolved iron-replete Coastal Oyashio dynamics
.
Quaternary Research. 107:27-42.
DOI
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West G
,
Nilsson A
,
Geels A
,
Jakobsson M
,
Moros M
,
Muschitiello F
,
Pearce C
,
Snowball I
,
O’Regan M
. 2022.
Late Holocene Paleomagnetic Secular Variation in the Chukchi Sea, Arctic Ocean
.
Geochemistry, Geophysics, Geosystems. 23(5):1-21.
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Khan NS
,
Toth LT
,
Moyer RP
,
Shaw JE
,
Capar P
,
Kemp AC
,
Engelhart SE
,
Horton BP
. 2022.
Mangrove Peat Radiocarbon Ages From Snipe and Swan Key, FL
.
DOI
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Gao Y
,
Salvatore MCristina
,
Xu Q
,
Yang L
,
Sun L
,
Xie Z
,
Baroni C
. 2022.
The occupation history of the longest-dwelling Adélie penguin colony reflects Holocene climatic and environmental changes in the Ross Sea, Antarctica
.
Quaternary Science Reviews. 284:107494.
DOI
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Gao Y
,
Salvatore MCristina
,
Xu Q
,
Yang L
,
Sun L
,
Xie Z
,
Baroni C
. 2022.
The occupation history of the longest-dwelling Adélie penguin colony reflects Holocene climatic and environmental changes in the Ross Sea, Antarctica
.
Quaternary Science Reviews. 284:107494.
DOI
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Winkler TS
,
van Hengstum PJ
,
Donnelly JP
,
Wallace EJ
,
D'Entremont N
,
Hawkes AD
,
Maio CV
,
Sullivan RM
,
Woodruff JD
. 2022.
Oceanic passage of hurricanes across Cay Sal Bank in The Bahamas over the last 530 years
.
Marine Geology. 443:106653.
DOI
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Douglas MM
,
Li GK
,
Fischer WW
,
Rowland JC
,
Kemeny PC
,
A. West J
,
Schwenk J
,
Piliouras AP
,
Chadwick AJ
,
Lamb MP
. 2022.
Organic carbon burial by river meandering partially offsets bank erosion carbon fluxes in a discontinuous permafrost floodplain
.
Earth Surface Dynamics. 10(3):421-435.
DOI
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Shervette VR
,
Hernández JMRivera
. 2022.
Queen triggerfish Balistes vetula: Validation of otolith-based age, growth, and longevity estimates via application of bomb radiocarbon
.
PLOS ONE. 17(1):e0262281.
DOI
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Patrut A
,
Patrut RT
,
Rakosy L
,
Rakosy D
,
Oliver W
,
Ratiu IA
,
Lowy DA
,
Shiimbi G
,
Woodborne S
,
von Reden KF
. 2022.
Radiocarbon Investigation of the Historic African Baobabs of Omusati, Namibia
.
Forests. 13(11):1899.
DOI
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Braddock S
,
Hall BL
,
Johnson JS
,
Balco G
,
Spoth M
,
Whitehouse PL
,
Campbell S
,
Goehring BM
,
Rood DH
,
Woodward J
. 2022.
Relative sea-level data preclude major late Holocene ice-mass change in Pine Island Bay
.
Nature Geoscience. 15:568-573.
DOI
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Oguri K
,
Masqué P
,
Zabel M
,
Stewart HA
,
MacKinnon G
,
Rowden AA
,
Berg P
,
Wenzhöfer F
,
Glud RN
. 2022.
Sediment Accumulation and Carbon Burial in Four Hadal Trench Systems
.
Journal of Geophysical Research: Biogeosciences. n/a(n/a):e2022JG006814.
DOI
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Seo J
,
Kim G
,
Hwang J
. 2022.
Sources and Behavior of Particulate Organic Carbon in the Yellow Sea and the East China Sea Based on 13C, 14C, and 234Th
.
Frontiers in Marine Science. 9
DOI
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Thompson LG
,
Severinghaus JP
,
Yao T
,
Davis ME
,
Mosley-Thompson E
,
Beaudon E
,
M. Sierra-Hernández R
,
Porter SE
. 2022.
Use of δ18Oatm in dating a Tibetan ice core record of Holocene/Late Glacial climate
.
Proceedings of the National Academy of Sciences. 119:e2205545119.
DOI
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Thompson LG
,
Severinghaus JP
,
Yao T
,
Davis ME
,
Mosley-Thompson E
,
Beaudon E
,
M. Sierra-Hernández R
,
Porter SE
. 2022.
Use of δ18Oatm in dating a Tibetan ice core record of Holocene/Late Glacial climate
.
Proceedings of the National Academy of Sciences. 119:e2205545119.
DOI
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Puleo PJK
,
Masterson AL
,
Medeiros AS
,
Schellinger G
,
Steigleder R
,
Woodroffe S
,
Osburn MR
,
Axford Y
. 2022.
Younger Dryas and early Holocene climate in south Greenland inferred from oxygen isotopes of chironomids, aquatic Moss, and Moss cellulose
.
Quaternary Science Reviews. 296:107810.
DOI
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Puleo PJK
,
Masterson AL
,
Medeiros AS
,
Schellinger G
,
Steigleder R
,
Woodroffe S
,
Osburn MR
,
Axford Y
. 2022.
Younger Dryas and early Holocene climate in south Greenland inferred from oxygen isotopes of chironomids, aquatic Moss, and Moss cellulose
.
Quaternary Science Reviews. 296:107810.
DOI
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2023
Overly KE
,
Shervette VR
. 2023.
Caribbean deepwater snappers: Application of the bomb radiocarbon age estimation validation in understanding aspects of ecology and life history
.
PLOS ONE. 18(12):e0295650.
DOI
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Chu M
,
Bao R
,
Strasser M
,
Ikehara K
,
Everest J
,
Maeda L
,
Hochmuth K
,
Xu L
,
McNichol A
,
Bellanova P
et al.
. 2023.
Earthquake-enhanced dissolved carbon cycles in ultra-deep ocean sediments
.
Nature Communications. 14:5427.
DOI
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Chu M
,
Bao R
,
Strasser M
,
Ikehara K
,
Everest J
,
Maeda L
,
Hochmuth K
,
Xu L
,
McNichol A
,
Bellanova P
et al.
. 2023.
Earthquake-enhanced dissolved carbon cycles in ultra-deep ocean sediments
.
Nature Communications. 14:5427.
DOI
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