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  • 100-625; 104-642; 108-662; 115-709; 117-722; 122-763; 130-806; 138-846; 159-959; 162-907; 162-982; 165-999; 175-1081; 175-1082; 175-1084; 175-1087; 177-1090; 181-1125; 184-1143; 202-1241; 22-214; 306-U1313; 321-U1337; 339-U1387; 341-U1417; 72-516; 90-593; 90-594; 93-603; 94-607; 94-609; Arabian Sea; Benguela Current, South Atlantic Ocean; Calculated from Mg/Ca ratios (this study); Calculated from Mg/Ca ratios using the BAYMAG calibration; Calculated from UK37 (Müller et al, 1998); Calculated from UK37 using the BAYSPLINE calibration; Caribbean Sea; COMPCORE; Composite Core; DRILL; Drilling/drill rig; ELEVATION; Event label; Exp306; Exp321; Exp339; Exp341; Glomar Challenger; Gulf of Guinea; Gulf of Mexico; Iceland Sea; Indian Ocean//RIDGE; Italy; Joides Resolution; LATITUDE; Leg100; Leg104; Leg108; Leg115; Leg117; Leg122; Leg130; Leg138; Leg159; Leg162; Leg165; Leg175; Leg177; Leg181; Leg184; Leg202; Leg22; Leg72; Leg90; Leg93; Leg94; LONGITUDE; Mediterranean Outflow; North Atlantic/FLANK; North Atlantic Climate 2; North Pacific Ocean; Norwegian Sea; Ocean Drilling Program; ODP; OUTCROP; Outcrop sample; Pacific Equatorial Age Transect II / Juan de Fuca; Punta_Piccola; Reference/source; Season; Sea surface temperature; Sea surface temperature, anomaly; Site; South Atlantic/CONT RISE; South Atlantic Ocean; South China Sea; Southern Alaska Margin: Tectonics, Climate and Sedimentation; South Indian Ridge, South Indian Ocean; South Pacific/CONT RISE; South Pacific/Tasman Sea/PLATEAU; South Pacific Ocean; Species  (1)
  • Leaf waxes
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  • 1
    Publication Date: 2024-04-25
    Description: We examine a single interglacial during the late Pliocene (KM5c, ca. 3.205 +/- 0.01 Ma) when atmospheric CO2 concentrations were higher than pre-industrial, but similar to today and to the lowest emission scenarios for this century. As orbital forcing and continental configurations were also similar to today, we are able to focus on equilibrium climate system response to modern and near-future CO2. We have synthesised largely published datasets, scrutinised their age models, and generated mean absolute SSTs and their anomaly relative to the pre-industrial. Here we present those values for both alkenone and foraminifera-Mg/Ca proxies.
    Keywords: 100-625; 104-642; 108-662; 115-709; 117-722; 122-763; 130-806; 138-846; 159-959; 162-907; 162-982; 165-999; 175-1081; 175-1082; 175-1084; 175-1087; 177-1090; 181-1125; 184-1143; 202-1241; 22-214; 306-U1313; 321-U1337; 339-U1387; 341-U1417; 72-516; 90-593; 90-594; 93-603; 94-607; 94-609; Arabian Sea; Benguela Current, South Atlantic Ocean; Calculated from Mg/Ca ratios (this study); Calculated from Mg/Ca ratios using the BAYMAG calibration; Calculated from UK37 (Müller et al, 1998); Calculated from UK37 using the BAYSPLINE calibration; Caribbean Sea; COMPCORE; Composite Core; DRILL; Drilling/drill rig; ELEVATION; Event label; Exp306; Exp321; Exp339; Exp341; Glomar Challenger; Gulf of Guinea; Gulf of Mexico; Iceland Sea; Indian Ocean//RIDGE; Italy; Joides Resolution; LATITUDE; Leg100; Leg104; Leg108; Leg115; Leg117; Leg122; Leg130; Leg138; Leg159; Leg162; Leg165; Leg175; Leg177; Leg181; Leg184; Leg202; Leg22; Leg72; Leg90; Leg93; Leg94; LONGITUDE; Mediterranean Outflow; North Atlantic/FLANK; North Atlantic Climate 2; North Pacific Ocean; Norwegian Sea; Ocean Drilling Program; ODP; OUTCROP; Outcrop sample; Pacific Equatorial Age Transect II / Juan de Fuca; Punta_Piccola; Reference/source; Season; Sea surface temperature; Sea surface temperature, anomaly; Site; South Atlantic/CONT RISE; South Atlantic Ocean; South China Sea; Southern Alaska Margin: Tectonics, Climate and Sedimentation; South Indian Ridge, South Indian Ocean; South Pacific/CONT RISE; South Pacific/Tasman Sea/PLATEAU; South Pacific Ocean; Species
    Type: Dataset
    Format: text/tab-separated-values, 243 data points
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  • 2
    Publication Date: 2022-05-25
    Description: Author Posting. © American Geophysical Union, 2012. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Journal of Geophysical Research 117 (2012): D19108, doi:10.1029/2012JD018060.
    Description: Existing paleoclimate data suggest a complex evolution of hydroclimate within the Indo-Pacific Warm Pool (IPWP) during the Holocene epoch. Here we introduce a new leaf wax isotope record from Sulawesi, Indonesia and compare proxy water isotope data with ocean-atmosphere general circulation model (OAGCM) simulations to identify mechanisms influencing Holocene IPWP hydroclimate. Modeling simulations suggest that orbital forcing causes heterogenous changes in precipitation across the IPWP on a seasonal basis that may account for the differences in time-evolution of the proxy data at respective sites. Both the proxies and simulations suggest that precipitation variability during the September–November (SON) season is important for hydroclimate in Borneo. The preëminence of the SON season suggests that a seasonally lagged relationship between the Indian
    Description: J. Tierney acknowledges the NOAA Climate and Global Change Postdoctoral Fellowship for support.
    Description: 2013-04-04
    Keywords: Holocene climate ; Indian monsoon ; Indo-Pacific warm pool ; Leaf waxes ; Stable isotopes ; Walker circulation
    Repository Name: Woods Hole Open Access Server
    Type: Article
    Format: application/pdf
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