    {"personrec":{"StatusID":1,"PersStatus":null,"Status":"Valid","PersID":34917,"PersName":"Hennekam, Rick","PublicFlag":1,"CheckedFlag":0,"Surname":"Hennekam","Firstname":"Rick","Initials":"R.","AddressedAs":null,"Function":null,"DateLastModified":{"date":"2024-06-04 01:34:08.417000","timezone_type":1,"timezone":"+00:00"},"PersTitle":null,"PersStatusID":null,"AbstractEnglish":null,"AbstractOtherLang":null,"AbstractLangCode":null,"AbstractLangID":null,"AutID":258733,"ND":"2017-06-19","UD":"2017-06-19","ORCID":"0000-0002-8823-4519"},"loaninfo":null,"pictures":[],"institutes":[{"instituterec":{"OrderNr":1,"Acronym":"OCS","ENFunction":null,"InsIDtmp":13654,"OrigNameLangCode":null,"OrigNameLangID":null,"FullOrigName":null,"InsID":13654,"Function":null,"BeginDay":null,"BeginMonth":null,"BeginYear":null,"Begindate":"","Enddate":"","PIAdrID":160171,"AdrID":null,"Line1":null,"Line2":null,"Line3":null,"Line4":null,"Phone":null,"GSM":null,"Email":"rick.hennekam@nioz.nl","EnvName":null,"EncAddress":"","FullStandardName":"Koninklijk Nederlands Instituut voor Onderzoek der Zee; Ocean Sciences","DirectorFlag":null,"MarineSciFlag":null,"SpecializedFlag":null},"parent":null,"institutes":null,"references":null,"conferences":null,"datasets":null,"persons":null,"pastpers":null,"subpers":null,"projects":null,"urls":null,"pictures":null,"published":null,"affrefs":null,"collections":null,"thesterms":null,"taxterms":null,"geoterms":null,"thestermsFRIS":null,"nXtins":null,"previns":null,"spcols":null,"resmessage":"no id specified","complete":0,"participantrec":null,"peerrevs":null,"urlmaps":null}],"pastins":[],"projects":[],"datasets":null,"references":{"A1":[{"BRefID":436639,"RR":"<b>Amarathunga, U.; Brocks, J.; Meijer, P.Th.; Hope, J.M.; Zachariasse, W.-J.; Hennekam, R.; van der Hoeven, I.; Roehl, U.; Rule, S.; Troitzsch, U.; Haberle, S.; Sluijs, A.; Grant, K.M.; Krijgsman, W.; Garcia-Castellanos, D.; Hogg, A.M.; Reichart, G.-J.; Roberts, A.P.; Rohling, E.J.</b> (2025). 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Global sea-level rise in the early Holocene revealed from North Sea peats. <i>Nature (Lond.) 639(8055)</i>: 652-657. <a href=\"https://dx.doi.org/10.1038/s41586-025-08769-7\" target=\"_blank\">https://dx.doi.org/10.1038/s41586-025-08769-7</a>","AutID":258733,"MonDate":null,"AnaDate":2025,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":437483,"RR":"<b>Karancz, S.; de Nooijer, L.J.; van der Wagt, B.; van der Meer, M.T.J.; Misra, S.; Hennekam, R.; Erdem, Z.; Lattaud, J.; Haghipour, N.; Schouten, S.; Reichart, G.-J.</b> (2025). Contrasts in the marine inorganic carbon chemistry of the Benguela Upwelling System since the Last Glacial Maximum. <i>Clim. Past 21(3)</i>: 679-704. <a href=\"https://dx.doi.org/10.5194/cp-21-679-2025\" target=\"_blank\">https://dx.doi.org/10.5194/cp-21-679-2025</a>","AutID":258733,"MonDate":null,"AnaDate":2025,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":436703,"RR":"<b>Lenstra, W.K.; Lantink, M.L.; Hennekam, R.; Mason, P.; Reichart, G.-J.; Hilgen, F.J.; Slomp, C.P.</b> (2025). Precession-driven variations in phosphorus cycling facilitated Earth’s oxygenation in the early Proterozoic. <i>Chem. Geol. 691</i>: 122857. <a href=\"https://dx.doi.org/10.1016/j.chemgeo.2025.122857\" target=\"_blank\">https://dx.doi.org/10.1016/j.chemgeo.2025.122857</a>","AutID":258733,"MonDate":null,"AnaDate":2025,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":437472,"RR":"<b>Peng, F.; Toonen, W.; Yang, X.; Hennekam, R.; van Leeuwen, N.; Rip, S.; Kasse, C.</b> (2025). Lower Meuse paleoflood record reveals NAO‐driven decadal to multi‐centennial variability. <i>Geophys. Res. 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Assessing atmospheric and oceanic teleconnections between the eastern and western Mediterranean over the past 8000 years. <i>Holocene 34(2)</i>: 162-174. <a href=\"https://dx.doi.org/10.1177/09596836231211807\" target=\"_blank\">https://dx.doi.org/10.1177/09596836231211807</a>","AutID":258733,"MonDate":null,"AnaDate":2024,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":404683,"RR":"<b>Lantink, M.L.; Davies, J.H.F.L.; Hennekam, R.; Martin, D.McB.; Mason, P.R.D.; Reichart, G.-J.; Hilgen, F.J.</b> (2024). Towards an astrochronological framework for the lower Paleoproterozoic Kuruman and Brockman Iron Formations. <i>South African Journal of Geology 127(2)</i>: 325-358. <a href=\"https://dx.doi.org/10.25131/sajg.127.0005\" target=\"_blank\">https://dx.doi.org/10.25131/sajg.127.0005</a>","AutID":396657,"MonDate":null,"AnaDate":2024,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":380566,"RR":"<b>Waajen, I.M.; Busschers, F.S.; Donders, T.H.; Van Heteren, S.; Plets, R.; Wallinga, J.; Hennekam, R.; Reichart, G.-J.; Kinnaird, T.; Wagner-Cremer, F.</b> (2024). Late MIS5a in the southern North Sea: new chronostratigraphic insights from the Brown Bank Formation. <i>J. Quaternary Sci. 39(3)</i>: 408-420. <a href=\"https://dx.doi.org/10.1002/jqs.3592\" target=\"_blank\">https://dx.doi.org/10.1002/jqs.3592</a>","AutID":258733,"MonDate":null,"AnaDate":2024,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":361185,"RR":"<b>Clarkson, M.O.; Sweere, T.C.; Chiu, C.F.; Hennekam, R.; Bowyer, F.; Wood, R.A.</b> (2023). Environmental controls on very high δ238U values in reducing sediments: Implications for Neoproterozoic seawater records. <i>Earth-Sci. Rev. 237</i>: 104306. <a href=\"https://dx.doi.org/10.1016/j.earscirev.2022.104306\" target=\"_blank\">https://dx.doi.org/10.1016/j.earscirev.2022.104306</a>","AutID":258733,"MonDate":null,"AnaDate":2023,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":365765,"RR":"<b>Frieling, J.; Mather, T.A.; März, C.; Jenkyns, H.C.; Hennekam, R.; Reichart, G.-J.; Slomp, C.P.; van Helmond, N.A.G.M.</b> (2023). Effects of redox variability and early diagenesis on marine sedimentary Hg records. <i>Geochim. Cosmochim. 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Marine nitrogen cycling dynamics under altering redox conditions: Insights from deposition of sapropels S1 and the ambiguous S2 in the Eastern Mediterranean Sea. <i>Geochim. Cosmochim. Acta 354</i>: 197-210. <a href=\"https://dx.doi.org/10.1016/j.gca.2023.06.018\" target=\"_blank\">https://dx.doi.org/10.1016/j.gca.2023.06.018</a>","AutID":258733,"MonDate":null,"AnaDate":2023,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":351942,"RR":"<b>Chiu, C.F.; Sweere, T.C.; Clarkson, M.O.; de Souza, G.F.; Hennekam, R.; Vance, D.</b> (2022). Co-variation systematics of uranium and molybdenum isotopes reveal pathways for descent into euxinia in Mediterranean sapropels. <i>Earth Planet. Sci. 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Late Holocene canyon-carving floods in northern Iceland were smaller than previously reported. <i>Commun. Earth Environ. 2</i>: 86. <a href=\"https://dx.doi.org/10.1038/s43247-021-00152-4\" target=\"_blank\">https://dx.doi.org/10.1038/s43247-021-00152-4</a>","AutID":258733,"MonDate":null,"AnaDate":2021,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":330752,"RR":"<b>Dunlea, A.G.; Murray, R.W.; Tada, R.; Alvarez-Zarikian, C.A.; Anderson, C.H.; Gilli, A.; Giosan, L.; Gorgas, T.; Hennekam, R.; Irino, T.; Murayama, M.; Peterson, L.C.; Reichart, G.-J.; Seki, A.; Zheng, H.B.; Ziegler, M.</b> (2020). Intercomparison of XRF core scanning results from seven labs and approaches to practical calibration. <i>Geochem. Geophys. 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Suborbital hydrological variability inferred from coupled benthic and planktic foraminiferal‐based proxies in the southeastern Mediterranean during the last 19 ka. <i>Paleoceanography and Paleoclimatology 35(2)</i>: e2019PA003827. <a href=\"https://dx.doi.org/10.1029/2019pa003827\" target=\"_blank\">https://dx.doi.org/10.1029/2019pa003827</a>","AutID":396657,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":320910,"RR":"<b>Ménot, G.; Pivot, S.; Bouloubassi, I.; Davtian, N.; Hennekam, R.; Bosch, D.; Ducassou, E.; Bard, E.; Migeon, S.; Revel, M.</b> (2020). Timing and stepwise transitions of the African Humid Period from geochemical proxies in the Nile deep-sea fan sediments. <i>Quat. Sci. 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Alkenone distributions and hydrogen isotope ratios show changes in haptophyte species and source water in the Holocene Baltic Sea. <i>Geochem. Geophys. Geosyst. 21(2)</i>: e2019GC008751. <a href=\"https://dx.doi.org/10.1029/2019gc008751\" target=\"_blank\">https://dx.doi.org/10.1029/2019gc008751</a>","AutID":258733,"MonDate":null,"AnaDate":2020,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":318142,"RR":"<b>Bale, N.J.; Hennekam, R.; Hopmans, E.C.; Dorhout, D.; Reichart, G.-J.; Van der Meer, M.T.J.; Villareal, T.A.; Sinninghe Damsté, J.S; Schouten, S.</b> (2019). Biomarker evidence for nitrogen-fixing cyanobacterial blooms in a brackish surface layer in the Nile River plume during sapropel deposition. <i>Geology (Boulder Colo.) 47(11)</i>: 1088-1092. <a href=\"https://dx.doi.org/10.1130/g46682.1\" target=\"_blank\">https://dx.doi.org/10.1130/g46682.1</a>","AutID":258733,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":312285,"RR":"<b>Dirksen, J.P.; Hennekam, R.; Geerken, E.; Reichart, G.-J.</b> (2019). A novel approach using time-depth distortions to assess multicentennial variability in deep-sea oxygen deficiency in the Eastern Mediterranean Sea during sapropel S5. <i>Paleoceanography and Paleoclimatology 34(5)</i>: 774-786. <a href=\"https://dx.doi.org/10.1029/2018pa003458\" target=\"_blank\">https://dx.doi.org/10.1029/2018pa003458</a>","AutID":258733,"MonDate":null,"AnaDate":2019,"PeerRev":1,"outputType":"1_A1","OpenAcc":1},{"BRefID":312505,"RR":"<b>Hennekam, R.; Sweere, T.; Tjallingii, R.; de Lange, G.J.; Reichart, G.-J.</b> (2019). 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