Geochronology and Field Observations from Oligocene Nameriyek, Turkana County, Kenya

The ~29.5 Ma Topernawi Formation of the northern Turkana Depression, Kenya, is among the few Oligocene syn-rift sedimentary sections exposed in the East African Rift System. We present new 40Ar/39Ar geochronology and field reconnaissance that expand both the spatial extent and paleontological potential of the Topernawi Formation. Feldspar ages from volcaniclastic sediments in the Ekitale Basin yield a weighted mean of 29.668 ± 0.054 Ma, confirming the Oligocene depositional chronology. The first geochronology from Nameriyek, a previously undated set of outcrops ~5 km west of the Ekitale Basin, demonstrates that Oligocene sedimentation may extend beyond previously known exposures. Beneath the Nameriyek ignimbrite (29.322 ± 0.092 Ma), a newly identified fine-grained lacustrine section preserves vertebrate fossils in a low-energy depositional setting with no lithologic analog in the coarse volcaniclastic facies of the Ekitale Basin. These lacustrine facies represent a new prospective in situ Oligocene site from one of the most sparsely documented intervals in the Afro-Arabian terrestrial vertebrate record. Further fieldwork is needed to test these hypotheses and explore the geology and paleontology of Nameriyek.

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Journal
Geosciences
Published
2026-09-24
DOI
https://doi.org/10.3390/geosciences16100390
Primary Topic
Evolution and Paleontology Studies
Type
article
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article

Geochronology and Field Observations from Oligocene Nameriyek, Turkana County, Kenya

Kevin Hatton, Francis J. Sousa, Stephen E. Cox, E. Troy Rasbury et al.
Geosciences
Evolution and Paleontology Studies
article

Geochronology and Field Observations from Oligocene Nameriyek, Turkana County, Kenya

Kevin Hatton, Francis J. Sousa, Stephen E. Cox, E. Troy Rasbury, Sidney R. Hemming
article en

Abstract

The ~29.5 Ma Topernawi Formation of the northern Turkana Depression, Kenya, is among the few Oligocene syn-rift sedimentary sections exposed in the East African Rift System. We present new 40Ar/39Ar geochronology and field reconnaissance that expand both the spatial extent and paleontological potential of the Topernawi Formation. Feldspar ages from volcaniclastic sediments in the Ekitale Basin yield a weighted mean of 29.668 ± 0.054 Ma, confirming the Oligocene depositional chronology. The first geochronology from Nameriyek, a previously undated set of outcrops ~5 km west of the Ekitale Basin, demonstrates that Oligocene sedimentation may extend beyond previously known exposures. Beneath the Nameriyek ignimbrite (29.322 ± 0.092 Ma), a newly identified fine-grained lacustrine section preserves vertebrate fossils in a low-energy depositional setting with no lithologic analog in the coarse volcaniclastic facies of the Ekitale Basin. These lacustrine facies represent a new prospective in situ Oligocene site from one of the most sparsely documented intervals in the Afro-Arabian terrestrial vertebrate record. Further fieldwork is needed to test these hypotheses and explore the geology and paleontology of Nameriyek.

GeosciencesVol. 16(10)
Oregon State University (US), Lamont-Doherty Earth Observatory (US), Stony Brook University (US), Columbia University (US)
Openalex Percentile: Top 8%
Evolution and Paleontology Studies
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Geochronology and Field Observations from Oligocene Nameriyek, Turkana County, Kenya — Kevin Hatton, Francis J. Sousa, et al. · Geosciences (2026) | TGRS Research Map | TGRS