The climate evolution of the last 2700 years in the central - western Mediterranean Sea has been reconstructed from marine sedimentrecords by integrating planktonic foraminifera and geochemical signals. The results provide the characterization of six climatic phases: Balearic Bronze Age (BA), Roman Period (RP), Dark Age (DA), Medieval Climate Anomaly (MCA), Little Ice Age (LIA) and Industrial Period (IP). Paleoclimatic curve inferred from planktonic foraminifera associated with heavy values in δ18O Globigerinoides ruber during the BA document two cold intervals (spanning ca. 200 years) related to the Homeric and Greek solar minima. The dominance of Turborotalita quinqueloba –Globigerinita glutinata gr. and Globigerina bulloides during the R...
This study presents the reconstructed evolution of sea surface conditions in the central-western Me...
The oceanic system has been rapidly changing under human-induced climate change that is taking place...
Planktonic foraminiferal assemblages were studied at high-resolution in core KC01B from the Ionian S...
The climate evolution of the last 2700 years in the central - western Mediterranean Sea has been rec...
The climate evolution of the last 2700 years in the central - western Mediterranean Sea has been rec...
We present a high-resolution paleoclimatic and paleoenvironmental reconstruction of the last five mi...
Planktonic foraminiferal assemblages were studied at high-resolution in core KC01B from the Ionian S...
International audienceThis experimental work addresses the need for high-resolution, long and homoge...
Planktonic foraminiferal assemblages were studied at high-resolution in core KC01B from the Ionian S...
Unidad de excelencia María de Maeztu MdM-2015-0552This study presents the reconstructed evolution of...
This study presents the reconstructed evolution of sea surface conditions in the central-western Med...
Highlights • Climate progression in the Balearic basin is examined between 140 and 100 ka. • ...
This study presents the reconstructed evolution of sea surface conditions in the central-western Med...
A review of the climatic variability over the last two millennia based on oxygen stable isotopic (G1...
Three high resolution multicore records from two western Mediterranean Sea regions (Alboran and Bale...
This study presents the reconstructed evolution of sea surface conditions in the central-western Me...
The oceanic system has been rapidly changing under human-induced climate change that is taking place...
Planktonic foraminiferal assemblages were studied at high-resolution in core KC01B from the Ionian S...
The climate evolution of the last 2700 years in the central - western Mediterranean Sea has been rec...
The climate evolution of the last 2700 years in the central - western Mediterranean Sea has been rec...
We present a high-resolution paleoclimatic and paleoenvironmental reconstruction of the last five mi...
Planktonic foraminiferal assemblages were studied at high-resolution in core KC01B from the Ionian S...
International audienceThis experimental work addresses the need for high-resolution, long and homoge...
Planktonic foraminiferal assemblages were studied at high-resolution in core KC01B from the Ionian S...
Unidad de excelencia María de Maeztu MdM-2015-0552This study presents the reconstructed evolution of...
This study presents the reconstructed evolution of sea surface conditions in the central-western Med...
Highlights • Climate progression in the Balearic basin is examined between 140 and 100 ka. • ...
This study presents the reconstructed evolution of sea surface conditions in the central-western Med...
A review of the climatic variability over the last two millennia based on oxygen stable isotopic (G1...
Three high resolution multicore records from two western Mediterranean Sea regions (Alboran and Bale...
This study presents the reconstructed evolution of sea surface conditions in the central-western Me...
The oceanic system has been rapidly changing under human-induced climate change that is taking place...
Planktonic foraminiferal assemblages were studied at high-resolution in core KC01B from the Ionian S...