Early Oligocene continental climate ofthe Paleogene Basin in Hungary and Slovenia


Autoria(s): Erdei, Boglarka; Utescher, Torsten; Hably, Lilla; Tamas, Julia; Roth-Nebelsick, Anita; Grein, Michaela
Cobertura

MEDIAN LATITUDE: 46.220075 * MEDIAN LONGITUDE: 17.118891 * SOUTH-BOUND LATITUDE: 41.500000 * WEST-BOUND LONGITUDE: 11.900000 * NORTH-BOUND LATITUDE: 51.330000 * EAST-BOUND LONGITUDE: 24.983000

Data(s)

16/11/2012

Resumo

This paper concentrates on the Early Oligocene palaeoclimate of the southern part of Eastern and Central Europe and gives a detailed climatological analysis, combined with leaf-morphological studies and modelling of the palaeoatmospheric CO2 level using stomatal and d13 C data. Climate data are calculated using the Coexistence Approach for Kiscellian floras of the Palaeogene Basin (Hungary and Slovenia) and coeval assemblages from Central and Southeastern Europe. Potential microclimatic or habitat variations are considered using morphometric analysis of fossil leaves from Hungarian, Slovenian and Italian floras. Reconstruction of CO2 is performed by applying a recently introduced mechanistic model. Results of climate analysis indicate distinct latitudinal and longitudinal climate patterns for various variables which agree well with reconstructed palaeogeography and vegetation. Calculated climate variables in general suggest a warm and frost-free climate with low seasonal variation of temperature. A difference in temperature parameters is recorded between localities from Central and Southeastern Europe, manifested mainly in the mean temperature of the coldest month. Results of morphometric analysis suggest microclimatic or habitat difference among studied floras. Extending the scarce information available on atmospheric CO2 levels during the Oligocene, we provide data for a well-defined time-interval. Reconstructed atmospheric CO2 levels agree well with threshold values for Antarctic ice sheet growth suggested by recent modelling studies. The successful application of the mechanistic model for the reconstruction of atmospheric CO2 levels raises new possibitities for future climate inference from macro-flora studies.

Formato

application/zip, 6 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.855004

doi:10.1594/PANGAEA.855004

Idioma(s)

en

Publicador

PANGAEA

Direitos

CC-BY: Creative Commons Attribution 3.0 Unported

Access constraints: unrestricted

Fonte

Supplement to: Erdei, Boglarka; Utescher, Torsten; Hably, Lilla; Tamas, Julia; Roth-Nebelsick, Anita; Grein, Michaela (2012): Early Oligocene continental climate of the Palaeogene basin (Hungary and Slovenia) and the surrounding area. Turkish Journal of Earth Sciences, 21, 153-186, doi:10.3906/yer-1005-29

Palavras-Chave #A. tardensis; Abundance estimate; Ailanthus sp.; Ailanthus tardensis; ANOVA, analysis of variance; Area; Area in square milimeter; Average; C. acutiloba; C. aquense; C. bronnii; C. flichei; C. floersheimensis; C. hardtii; C. schrankii; C. suleticensis; Calocedrus macrolepis; Calocedrus suleticensis; Carbon dioxide, simulated; Cedrelospermum aquense; Cedrelospermum flichei; Ceratozamia floersheimensis; Ceratozamia sp.; Chamaecyparites hardtii; Chronozone; ci/ca; CMT # = Craigia; CMT max; CMT min; CO2 simul; Coexistence Approach (Mosbrugger, V & Utescher, T, 1997); Comment; Comptonia acutiloba; Comptonia schrankii; Comptonia sp.; Craigia bronnii; D. bella; D. bilinica; D. taxiformis var. hungaricus; Dalbergia bella; Daphnogene bilinica; Daphnogene sp.; Density stom; Depth assim tis; Depth of assimilation tissue; Depth of stomatal pore; Depth stom pore; Doliostrobus taxiformis var. hungaricus; E. andreanszkyi; E. furcinervis; E. macroptera; E. orsbergensis; Engelhardtia macroptera; Engelhardtia orsbergensis; Eotrigonobalanus andreanszkyi; Eotrigonobalanus furcinervis; Event; ff; Group; H. hermis; Hill's circular grid (Hill 1980); HMP; HMP max; HMP min; Hooleya hermis; Humidity, relative; Hydrangea sp.; I. castellii; Ilex castellii; l; L. acutimontanum; L. hradekense; L. kvaceki; L. markvarticense; L. medimontanum; Lauraceae; Laurophyllum acutimontanum; Laurophyllum hradekense; Laurophyllum kvaceki; Laurophyllum markvarticense; Laurophyllum medimontanum; Laurophyllum sp.; Leaf A; Leaf area; Leaf internal carbon dioxide concentration/ambient carbon dioxide ratio; Leaf l; Leaf l/w; Leaf length; Leaf length, maximum; Leaf length, minimum; Leaf length/width ratio; Leaf l max; Leaf l min; Leaf w; Leaf width; Leaves; Leguminosae; Length; LMP; LMP max; LMP min; M. lignitum; M. longifolia; M. menzelii; MAP; MAP max; MAP min; MAT; MAT max; MAT min; Matudaea menzelii; Maximum; Measured using callipers; Minimum; Mitochondrial respiration rate; Mitochondrial resp rate; Myrica lignitum; Myrica longifolia; NECLIME; Neogene Climate Evolution in Eurasia; No; Number; Number of leaves; Number of taxa; of Eotrigonobalanus furcinervis leaves; of Sloanea olmediaefolia leaves; of triangles; P. neptuni; P. schimperi; Palmae; Pinus sp.; Platanus neptuni; Platanus schimperi; Precipitation, annual mean, maximum; Precipitation, annual mean, minimum; Precipitation, warmest month, maximum; Precipitation, warmest month, minimum; Precipitation of the driest month maximum; Precipitation of the driest month minimum; Precipitation of the wettest month maximum; Precipitation of the wettest month minimum; R. lignitum; Range maximum; Range minimum; Reference; Reference/source; RH; Ribulose 1,5-biphosphate-saturated rate of carboxylation, maximum; Rosa lignitum; Rosa sp.; S. eocenica; S. major; S. olmediaefolia; S. peolai; S. tenuilobatum; S. weberi; Sabal major; Sassafras tenuilobatum; Sloanea eocenica; Sloanea olmediaefolia; Sloanea peolai; Smilax sp.; Smilax weberi; statistical groups, a and b mean significantly different groups of data according to Dunn's Multiple Comparisons Tests, while ab is intermediate; Stomatal density; Stomatal pore; T. brachyodon; T. brogniartii; T. harpyiarum; T. salicornoides; Taxa; Taxa anal; Taxa analyzed; Taxa with climate data; Taxodiaceae; Taxon/taxa; Temperature, annual mean; Temperature, annual mean, maximum; Temperature, annual mean, minimum; Temperature, coldest month, maximum; Temperature, coldest month, minimum; Temperature, warmest month, maximum; Temperature, warmest month, minimum; Tetraclinis brachyodon; Tetraclinis brogniartii; Tetraclinis salicornoides; Tetrapterys harpyiarum; Ulmaceae; Vcmax; w; Width; Wind speed; WMP # = Rosa; Sloanea; WMP max; WMP min; WMT; WMT max; WMT min; Z. zizyphoides; Zizyphus zizyphoides
Tipo

Dataset