PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
June 1, 2026Frontiers in Earth Science0 citationsOpen Access

Astronomic forcing climate changes recorded in the Late Cretaceous Nenjiang Formation, Gulong area, Songliao Basin, NE China

View Full Paper
YGYubin GuoJHJinyou HeSGShaobin Guo

Key Points

  • This research aims to explore the relationship between climatic changes and astronomical parameters in the Nenjiang Formation during the Late Cretaceous.
  • Conducted cyclostratigraphic analysis on the second and third members of the Nenjiang Formation using high-resolution gamma-ray logging data.
  • Performed paleoclimatic analysis using palynological data from fossil spores and pollen to deduce vegetation and climate characteristics.
  • Established a 3.24-Myr floating astronomical timescale validated by volcanic ash data.
  • Identified persistent sedimentary cycles of 405-kyr, 95-kyr, 38.3-kyr, and 22.8-kyr, indicating significant astronomical influence on sedimentation.
  • Analysis confirmed semi-warm and semi-humid paleoclimatic conditions for the lower K 2 n 3.
  • Vertical transitions in plant assemblages aligned with the 38.3-kyr obliquity cycle, highlighting its role in paleoclimate dynamics.

Abstract

The Songliao Basin preserves a complete Cretaceous continental sedimentary succession. Previous researchers have conducted extensive cyclostratigraphic studies on the Upper Cretaceous Nenjiang Formation, but paleoclimatic research has primarily focused on the lower part of the formation. The relationship between climatic changes and astronomical parameters in the middle and upper sections of the Nenjiang Formation has not yet been fully investigated. This study conducted cyclostratigraphic analysis of the second to third members of Nenjiang Formation Late Cretaceous (K 2 n 2-3 ) in the Songliao Basin using high-resolution gamma-ray logging (GR) data, while also performing paleoclimatic analysis in conjunction with palynological data. The fossil spores and pollen from the K 2 n 3 indicate the geological age of the Late Cretaceous Campanian. Based on the ecological data of the parent plants of the spores and pollen, the vegetation types, climatic zones, and humidity types of the lower part of the K 2 n 3 were analyzed, confirming its semi-warm and semi-humid paleoclimatic characteristics. Time-series analysis reveals persistent 405-kyr (long eccentricity), 95-kyr (short eccentricity), 38.3-kyr (obliquity), and 22.8-kyr (precession) sedimentary cycles, further validated by an optimal sedimentation rate model. We established a 3.24-Myr floating astronomical time scale for K 2 n 2-3 by tuning the GR series to orbital targets. This timescale is anchored by a volcanic ash age (83.269 ± 0.044 Ma) at the K 2 n 2 base, generating an absolute age framework spanning 83.33–80.00 Ma. Vertical transitions in palynofloral assemblages correspond to the 38.3-kyr obliquity cycle, indicating significant obliquity forcing on regional paleoclimate dynamics.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/6a1d208702fbce9130636e42https://doi.org/10.3389/feart.2026.1816528
Ask AI
Helpful
Bookmark
Share
View Full Paper