2024

A ∼5000 year multiproxy record of summer climate in NE Greenland

Garcia-Oteyza, J., Giralt, S., Pla-Rabes, S., Antoniades, D., Oliva, M., Ghanbari, H., Osorio-Serrano, R., & Palacios, D. (2024). A ∼5000 year multiproxy record of summer climate in NE Greenland. Science of The Total Environment, 906, 167713. https://doi.org/10.1016/j.scitotenv.2023.167713

Abstract

The High Arctic plays a vital role in Earth’s climate system, and its ecosystems are highly sensitive to global climate change. High Arctic lakes are valuable sentinels of climate change, as their sediments integrate long-term natural climatic fluctuations and anthropogenic influences. Here, we present a high-resolution ∼5000 year-reconstruction of NE Greenland climate variability from Aucella Lake (74°N, 20°E) based on physical, chemical, and biological properties of lake sediments. We use CT-scans, hyperspectral imaging, organic matter, XRD, and diatom analyses to show that changing air temperatures were controlled by a mix of regional climatic changes and local landscape feedbacks. The latest Mid-Holocene (∼5.0–3.8 cal. ka BP) was characterized by relatively warmer conditions, while the onset of the Late-Holocene was marked by abrupt temperature decreases that coincided with the beginning of glacial advances elsewhere (∼3.8–3.4 cal. ka BP). From ∼3.4–2.4 cal. ka BP, the sedimentary record indicated progressive warming, with temperature peaking during the Medieval Climate Anomaly, although temperature rises were punctuated by abrupt, short-lived cold periods. From ∼1.1–0.05 cal. ka BP, the influence of landscape factors over the system diminished. Sedimentary indicators suggested a transition towards a colder, more humid climate, coinciding with the beginning of the Little Ice Age, that was characterized by a marked decrease in air temperature that reached minimum values at the end of this period. The last 50 years at Aucella Lake were marked by abrupt temperature rises, consistent with recently observed anthropogenic global warming. Our results illustrate the importance of high-resolution multiproxy studies for accurately characterizing lake linkages to their environment and climate.

Original article

Privacy policy

In accordance with the Organic Law 3/2018, dated 5 December, on Personal Data Protection and Guarantee of Digital Rights (LOPDGDD), the General Regulation of Data Protection (RGPD) and the related legislation, GEO3BCN-CSIC undertakes to comply with the obligation of secrecy with regard to personal data and the duty to treat them confidentially after carrying out the corresponding risk analyses, in particular, in accordance with the First Additional Provision of the LOPDGDD, the security measures corresponding to those provided for in the National Security Scheme, necessary to prevent its alteration, loss, processing or unauthorised access.

Users may exercise their rights of access, rectification, cancellation, opposition, limitation or portability at any time by writing to the Secretary General of the CSIC at C/Serrano 117, 28006 MADRID (Spain), providing a photocopy of their National Identity Document (DNI) or through the CSIC’s Electronic Register, located at its Electronic Headquarters, for which they must have a recognised electronic certificate. It is possible to contact with the CSIC’s Data Protection Delegate though this email: delegadoprotecciondatos@csic.es

GEO3BCN-CSIC reserves the right to modify this Privacy Policy in order to adapt it to the latest legislations, jurisprudences or interpretations made by the Spanish Data Protection Agency.  In this case, the CSIC will announce such changes, clearly indicating in advance the modifications made, and requesting, if considered necessary, their acceptance.

No
Accept

Este sitio web utiliza cookies para que usted tenga la mejor experiencia de usuario. Si continúa navegando está dando su consentimiento para la aceptación de las mencionadas cookies y la aceptación de nuestra política de cookies, pinche el enlace para mayor información.

ACEPTAR
Aviso de cookies
Scroll to Top