Quaternary Research · 2007 · 138 citations · 37 references
EngineeringEarth ScienceSocial SciencesHolocenePaleoenvironmental ReconstructionPaleoenvironmental ChangeQuaternary ResearchBaikal RegionClimate ChangeLake BaikalLandscape ProcessesLake HovsgolPaleoclimatologyEarth's ClimateClimate DynamicsClimatologyHolocene Climate ChangePaleoecologyDeepest LakeQuaternary Period
Abstract Here we discuss paleoenvironmental evolution in the Baikal region during the Holocene using new records of aquatic (diatom) and terrestrial vegetation changes from Hovsgol, Mongolia's largest and deepest lake. We reconcile previous contradictory Baikal timescales by constraining reservoir corrections of AMS dates on bulk sedimentary organic carbon. Synthesis of the Holocene records in the Baikal watershed reveals a northward progression in landscape/vegetation changes and an anti-phase behavior of diatom and biogenic silica proxies in neighboring rift lakes. In Lake Baikal, these proxies appear to be responsive to annual temperature increases after 6 ka, whereas in Lake Hovsgol they respond to higher precipitation/runoff from 11 to 7 ka. Unlike around Lake Baikal, warmer summers between 6 and 3.5 ka resulted in the decline, not expansion, of forest vegetation around Lake Hovsgol, apparently as a result of higher soil temperatures and lower moisture availability. The regional climatic proxy data are consistent with a series of 500-yr time slice Holocene GCM simulations for continental Eurasia. Our results allow reevaluation of the concepts of ‘the Holocene optimum’ and a ‘maximum of the Asian summer monsoon’, as applied to paleoclimate records from continental Asia.
37
INTCAL98 Radiocarbon Age Calibration, 24,000–0 cal BP
Minze Stuiver, Paula Reimer, Édouard Bard et al. · Radiocarbon · 1998 · 4.5K citations · Full text
A long-term numerical solution for the insolation quantities of the Earth
J. Laskar, Philippe Robutel, F. Joutel et al. · Astronomy and Astrophysics · 2004 · 4.1K citations · Full text
Global Climates since the Last Glacial Maximum
John R. Mather, H. E. Wright, John E. Kutzbach et al. · Geographical Review · 1995 · 979 citations