Overview
Eltanin Impact
The Eltanin impact occurred about 2.51 million years ago in the Gelasian, earliest Pleistocene under the current International Chronostratigraphic Chart; older papers call it late Pliocene because they used the former boundary. Sediment cores preserve noble-metal enrichment, meteoritic material, glassy spherules, and disturbed marine layers. Its importance for this map is mostly comparative. It shows that a sizable asteroid or bolide impact into deep ocean is geologically possible and can leave evidence without an obvious crater. It does not explain the Younger Dryas, post-Ice-Age flood traditions, or human civilization-reset stories because it occurred roughly 2.5 million years ago, far before the relevant human cultural period.
Evidence on this page
- High noble metal concentrations in a late Pliocene sediment
- Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
- Impact tsunami–Eltanin
Important limits
- Bibliographic verification does not by itself establish that the full text was read.
- The evidence does not automatically support broader causal, technological, transmission, or literalizing claims beyond the cited record.
Current assessment
This assessment belongs to this record only. A connection never transfers evidence status from another topic.
Source foundation
6 public source records are linked to this topic. Source quantity does not replace source quality or methodological review.
- 3 Academic
- 1 Primary
- 1 Corrective
- 1 Reference
5 academic-paper records · 0 with explicit free-full-text or open-access status
Evidence and claims
Recorded claims
The Eltanin event, described as late Pliocene in older literature, is placed near 2.51 Ma in the Gelasian earliest Pleistocene under current formal chronology.
What the cited material supports
The core evidence is physical and scientific. The weak part is not the impact claim itself, but the attempt to connect it to much later human stories.
Canonical sources cited
The Eltanin event, described as late Pliocene in older literature, is placed near 2.51 Ma in the Gelasian earliest Pleistocene under current formal chronology.
Well supportedWhere the interpretations diverge
See Internet Folklore and Claim Mutation section.
What the cited evidence does not establish
Follow the claim source trail
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- High noble metal concentrations in a late Pliocene sediment
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- International Chronostratigraphic Chart v2024/12
Reference · partially_verified
Bibliographic verification does not by itself establish that the full text was read.
The evidence strongly supports a major extraterrestrial event in deep-ocean sediments.
What the cited material supports
Answer / theory: The evidence strongly supports a major extraterrestrial event in deep-ocean sediments. What supports it: Noble-metal enrichment, meteoritic material, microspherules, and disturbed sediment layers. What is weak or disputed: No confirmed crater has been found, so exact mechanics remain uncertain. Evidence level: Strong Evidence.
Canonical sources cited
The evidence strongly supports a major extraterrestrial event in deep-ocean sediments.
Well supportedWhere the interpretations diverge
See Internet Folklore and Claim Mutation section.
What the cited evidence does not establish
Follow the claim source trail
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- High noble metal concentrations in a late Pliocene sediment
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- Constraints on interpretation of the Eltanin impact from numerical simulations
Corrective · verified
Bibliographic verification does not by itself establish that the full text was read.
The Eltanin event is dated to about 2.51 Ma.
What the cited material supports
Answer / theory: No. The date is millions of years too early. What supports it: Eltanin is roughly 2.5 million years old, while the Younger Dryas began around 12,900 years ago. What is weak or disputed: The connection is a chronology error, not an open debate. Evidence level: Debunked or Very Unlikely.
Canonical sources cited
The Eltanin event is dated to about 2.51 Ma.
Well supportedWhere the interpretations diverge
See Internet Folklore and Claim Mutation section.
What the cited evidence does not establish
Follow the claim source trail
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- International Chronostratigraphic Chart v2024/12
Reference · partially_verified
Bibliographic verification does not by itself establish that the full text was read.
Eltanin is reconstructed chiefly from deep-sea sedimentary and geochemical evidence; the absence of an identified crater leaves exact location and mechanics uncertain.
What the cited material supports
Answer / theory: Deep-ocean impacts may preserve differently than land impacts, so sediment evidence can matter even without a crater. What supports it: Eltanin's core evidence is geochemical and sedimentary. What is weak or disputed: Exact impact location and mechanics remain harder to reconstruct. Evidence level: Mixed Evidence for exact mechanics; Strong Evidence for extraterrestrial material.
Canonical sources cited
Eltanin is reconstructed chiefly from deep-sea sedimentary and geochemical evidence; the absence of an identified crater leaves exact location and mechanics uncertain.
Active debateWhere the interpretations diverge
See Internet Folklore and Claim Mutation section.
What the cited evidence does not establish
Follow the claim source trail
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- High noble metal concentrations in a late Pliocene sediment
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- Constraints on interpretation of the Eltanin impact from numerical simulations
Corrective · verified
Bibliographic verification does not by itself establish that the full text was read.
Eltanin's sedimentary and geochemical evidence cannot by itself confirm another proposed ocean-impact structure.
What the cited material supports
Answer / theory: It helps as a comparison case, not as proof. Eltanin shows what stronger ocean-impact evidence looks like. What supports it: Eltanin has sediment-core and geochemical evidence, while Burckle relies more heavily on indirect claims. What is weak or disputed: Comparison does not confirm Burckle. Evidence level: Strong Evidence as comparison; Weak Evidence for extending it to other claims.
Canonical sources cited
Eltanin's sedimentary and geochemical evidence cannot by itself confirm another proposed ocean-impact structure.
Misrepresented sourceWhere the interpretations diverge
See Internet Folklore and Claim Mutation section.
What the cited evidence does not establish
Follow the claim source trail
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- High noble metal concentrations in a late Pliocene sediment
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- Constraints on interpretation of the Eltanin impact from numerical simulations
Corrective · verified
Bibliographic verification does not by itself establish that the full text was read.
Eltanin is supported by noble-metal, meteoritic, and disturbed-sediment evidence, while exact impact mechanics remain constrained by modeling.
What the cited material supports
Answer / theory: It helps as a comparison case, not as proof. Eltanin shows what stronger ocean-impact evidence looks like. What supports it: Eltanin has sediment-core and geochemical evidence, while Burckle relies more heavily on indirect claims. What is weak or disputed: Comparison does not confirm Burckle. Evidence level: Strong Evidence as comparison; Weak Evidence for extending it to other claims.
Canonical sources cited
Eltanin is supported by noble-metal, meteoritic, and disturbed-sediment evidence, while exact impact mechanics remain constrained by modeling.
Well supportedWhere the interpretations diverge
See Internet Folklore and Claim Mutation section.
What the cited evidence does not establish
Follow the claim source trail
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- High noble metal concentrations in a late Pliocene sediment
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
- Constraints on interpretation of the Eltanin impact from numerical simulations
Corrective · verified
Bibliographic verification does not by itself establish that the full text was read.
Evidence Ledger
High noble metal concentrations in a late Pliocene sediment
High noble metal concentrations in a late Pliocene sediment
What this supports
- The Eltanin event, described as late Pliocene in older literature, is placed near 2.51 Ma in the Gelasian earliest Pleistocene under current formal chronology.
- The evidence strongly supports a major extraterrestrial event in deep-ocean sediments.
- Eltanin is reconstructed chiefly from deep-sea sedimentary and geochemical evidence; the absence of an identified crater leaves exact location and mechanics uncertain.
- Eltanin's sedimentary and geochemical evidence cannot by itself confirm another proposed ocean-impact structure.
- Eltanin is supported by noble-metal, meteoritic, and disturbed-sediment evidence, while exact impact mechanics remain constrained by modeling.
What this does not establish
Bibliographic verification does not by itself establish that the full text was read.
Follow the Source
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- High noble metal concentrations in a late Pliocene sediment
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in t…
Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
What this supports
- The Eltanin event, described as late Pliocene in older literature, is placed near 2.51 Ma in the Gelasian earliest Pleistocene under current formal chronology.
- The evidence strongly supports a major extraterrestrial event in deep-ocean sediments.
- The Eltanin event is dated to about 2.51 Ma.
- Eltanin is reconstructed chiefly from deep-sea sedimentary and geochemical evidence; the absence of an identified crater leaves exact location and mechanics uncertain.
- Eltanin's sedimentary and geochemical evidence cannot by itself confirm another proposed ocean-impact structure.
- Eltanin is supported by noble-metal, meteoritic, and disturbed-sediment evidence, while exact impact mechanics remain constrained by modeling.
What this does not establish
Bibliographic verification does not by itself establish that the full text was read.
Follow the Source
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
Impact tsunami–Eltanin
Impact tsunami–Eltanin
What this supports
No direct public claim-support relationship is recorded for this evidence item.
What this does not establish
Bibliographic verification does not by itself establish that the full text was read.
Follow the Source
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- Impact tsunami–Eltanin
Primary · verified
Bibliographic verification does not by itself establish that the full text was read.
The Eltanin asteroid impact: possible South Pacific palaeomegatsunami footprint and potential…
The Eltanin asteroid impact: possible South Pacific palaeomegatsunami footprint and potential implications for the Pliocene–Pleistocene transition
What this supports
No direct public claim-support relationship is recorded for this evidence item.
What this does not establish
Bibliographic verification does not by itself establish that the full text was read.
Follow the Source
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- The Eltanin asteroid impact: possible South Pacific palaeomegatsunami footprint and potential implications for the Pliocene–Pleistocene transition
Academic · verified
Bibliographic verification does not by itself establish that the full text was read.
Constraints on interpretation of the Eltanin impact from numerical simulations
Constraints on interpretation of the Eltanin impact from numerical simulations
What this supports
- The evidence strongly supports a major extraterrestrial event in deep-ocean sediments.
- Eltanin is reconstructed chiefly from deep-sea sedimentary and geochemical evidence; the absence of an identified crater leaves exact location and mechanics uncertain.
- Eltanin's sedimentary and geochemical evidence cannot by itself confirm another proposed ocean-impact structure.
- Eltanin is supported by noble-metal, meteoritic, and disturbed-sediment evidence, while exact impact mechanics remain constrained by modeling.
What this does not establish
Bibliographic verification does not by itself establish that the full text was read.
Follow the Source
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- Constraints on interpretation of the Eltanin impact from numerical simulations
Corrective · verified
Bibliographic verification does not by itself establish that the full text was read.
International Chronostratigraphic Chart v2024/12
International Chronostratigraphic Chart v2024/12
What this supports
- The Eltanin event, described as late Pliocene in older literature, is placed near 2.51 Ma in the Gelasian earliest Pleistocene under current formal chronology.
- The Eltanin event is dated to about 2.51 Ma.
What this does not establish
Bibliographic verification does not by itself establish that the full text was read.
Follow the Source
This trail lists canonical source records attached to this item. Display order does not imply evidentiary rank or historical sequence.
- International Chronostratigraphic Chart v2024/12
Reference · partially_verified
Bibliographic verification does not by itself establish that the full text was read.
View as Evidence Matrix
Each row remains a separate evidence record. One proxy or finding does not automatically determine the assessment of an entire compound claim.
| ID | Evidence | Supports | Challenges | Main limitation | Sources |
|---|---|---|---|---|---|
| CM-035-EV-001 | High noble metal concentrations in a late Pliocene sediment | The Eltanin event, described as late Pliocene in older literature, is placed near 2.51 Ma in the Gelasian earliest Pleistocene under current formal chronology.; The evidence strongly supports a major extraterrestrial event in deep-ocean sediments.; Eltanin is reconstructed chiefly from deep-sea sedimentary and geochemical evidence; the absence of an identified crater leaves exact location and mechanics uncertain.; Eltanin's sedimentary and geochemical evidence cannot by itself confirm another proposed ocean-impact structure.; Eltanin is supported by noble-metal, meteoritic, and disturbed-sediment evidence, while exact impact mechanics remain constrained by modeling. | No direct public challenge relationship recorded | Bibliographic verification does not by itself establish that the full text was read. | 1 |
| CM-035-EV-002 | Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean | The Eltanin event, described as late Pliocene in older literature, is placed near 2.51 Ma in the Gelasian earliest Pleistocene under current formal chronology.; The evidence strongly supports a major extraterrestrial event in deep-ocean sediments.; The Eltanin event is dated to about 2.51 Ma.; Eltanin is reconstructed chiefly from deep-sea sedimentary and geochemical evidence; the absence of an identified crater leaves exact location and mechanics uncertain.; Eltanin's sedimentary and geochemical evidence cannot by itself confirm another proposed ocean-impact structure.; Eltanin is supported by noble-metal, meteoritic, and disturbed-sediment evidence, while exact impact mechanics remain constrained by modeling. | No direct public challenge relationship recorded | Bibliographic verification does not by itself establish that the full text was read. | 1 |
| CM-035-EV-003 | Impact tsunami–Eltanin | No direct public support relationship recorded | No direct public challenge relationship recorded | Bibliographic verification does not by itself establish that the full text was read. | 1 |
| CM-035-EV-004 | The Eltanin asteroid impact: possible South Pacific palaeomegatsunami footprint and potential implications for the Pliocene–Pleistocene transition | No direct public support relationship recorded | No direct public challenge relationship recorded | Bibliographic verification does not by itself establish that the full text was read. | 1 |
| CM-035-EV-005 | Constraints on interpretation of the Eltanin impact from numerical simulations | The evidence strongly supports a major extraterrestrial event in deep-ocean sediments.; Eltanin is reconstructed chiefly from deep-sea sedimentary and geochemical evidence; the absence of an identified crater leaves exact location and mechanics uncertain.; Eltanin's sedimentary and geochemical evidence cannot by itself confirm another proposed ocean-impact structure.; Eltanin is supported by noble-metal, meteoritic, and disturbed-sediment evidence, while exact impact mechanics remain constrained by modeling. | No direct public challenge relationship recorded | Bibliographic verification does not by itself establish that the full text was read. | 1 |
| CM-035-EV-006 | International Chronostratigraphic Chart v2024/12 | The Eltanin event, described as late Pliocene in older literature, is placed near 2.51 Ma in the Gelasian earliest Pleistocene under current formal chronology.; The Eltanin event is dated to about 2.51 Ma. | No direct public challenge relationship recorded | Bibliographic verification does not by itself establish that the full text was read. | 1 |
Timeline
~2.5 million BCE
Approximate ordering never replaces this visible date basis.
Around 2.51 million years ago: Eltanin impact event occurs near the Pliocene-Pleistocene boundary.
Approximate ordering never replaces this visible date basis.
Local Atlas Map
Accessible local relationship list
No reviewed connections in the local graph
The local graph shows only explicitly recorded connections. Open the full Atlas Map to browse the complete connection network.
Documented connections
No reviewed connection currently links this topic
Connections appear only where a reviewed connection record exists between canonical topics.
Sources
Academic papers
5 paper citations support or limit this topic; 0 carry explicit free-full-text or open-access status.
Academic
High noble metal concentrations in a late Pliocene sediment
Why Ancient Inquiry uses this source
Earliest major geochemical evidence for extraterrestrial material in the Eltanin layer
What it does not establish
Bibliographic verification does not by itself establish that the full text was read.
Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean
Why Ancient Inquiry uses this source
Core sedimentological and geochemical reconstruction of the impact event
What it does not establish
Bibliographic verification does not by itself establish that the full text was read.
The Eltanin asteroid impact: possible South Pacific palaeomegatsunami footprint and potential implications for the Pliocene–Pleistocene transition
Why Ancient Inquiry uses this source
Proponent source for a possible shoreline megatsunami footprint; interpretive rather than confirmation
What it does not establish
Bibliographic verification does not by itself establish that the full text was read.
Corrective
Constraints on interpretation of the Eltanin impact from numerical simulations
Why Ancient Inquiry uses this source
Corrective modeling source limiting impactor, crater, and consequence interpretations
What it does not establish
Bibliographic verification does not by itself establish that the full text was read.
Primary
Impact tsunami–Eltanin
Why Ancient Inquiry uses this source
Primary numerical modeling source for possible tsunami generation and propagation
What it does not establish
Bibliographic verification does not by itself establish that the full text was read.
Other sources
Reference
International Chronostratigraphic Chart v2024/12
Why Ancient Inquiry uses this source
Current formal chronology placing 2.51 Ma within the Gelasian earliest Pleistocene
What it does not establish
Bibliographic verification does not by itself establish that the full text was read.
Research detail
Topic ID: CM-035 Last reviewed: 2026-08-10 Corrections: /corrections/ Change history: Recorded in the Connected Atlas topic changelog.
Overview
The Eltanin impact occurred about 2.51 million years ago in the Gelasian, earliest Pleistocene under the current International Chronostratigraphic Chart; older papers call it late Pliocene because they used the former boundary. Sediment cores preserve noble-metal enrichment, meteoritic material, glassy spherules, and disturbed marine layers. Its importance for this map is mostly comparative. It shows that a sizable asteroid or bolide impact into deep ocean is geologically possible and can leave evidence without an obvious crater. It does not explain the Younger Dryas, post-Ice-Age flood traditions, or human civilization-reset stories because it occurred roughly 2.5 million years ago, far before the relevant human cultural period.
Plain-language explanation
Eltanin is not a crater people can walk around and photograph. It is mainly a sediment-core event. Researchers found a distinctive layer in deep-sea sediments containing extraterrestrial chemical signatures and meteoritic material. Later work interpreted the disturbed layers as evidence of a large impact into deep ocean. That matters because deep-ocean impacts are hard to preserve in the same way as land impacts. A crater can be masked, destroyed, or never form in the familiar way if the impact happened through several kilometers of water and into mobile seafloor sediment. For this reason, the absence of a clear crater does not automatically make the event imaginary.
Historical and scholarly context
The conventional view is that Eltanin is a strong candidate for a real deep-ocean asteroid impact. The best support comes from physical sediment evidence, not from mythology or later storytelling.
- Impact evidence: Noble-metal enrichment, meteoritic material, microspherules, and disturbed sediment layers support an extraterrestrial event.
- Crater problem: No crater has been confidently identified. This weakens exact reconstruction, but it does not erase the sediment evidence because deep-ocean impacts preserve differently than land impacts.
- Tsunami effects: Tsunami modeling is plausible but depends heavily on assumptions about impactor size, water depth, velocity, and energy transfer.
- Climate effects: A direct role in the Pliocene-Pleistocene transition remains less secure than the impact evidence itself.
- Human relevance: The chronology makes human memory, flood myths, or civilization-reset interpretations very unlikely.
What the evidence supports
- The strongest support is the physical sediment-core record, especially geochemical anomaly and meteoritic material.
- Independent reconstruction work and numerical modeling support an impact interpretation.
- The event fits a known class of impact processes: high-energy extraterrestrial material delivered into ocean sediments.
- The strongest website use is as a comparison case for impact evidence, crater absence, and tsunami modeling.
Limits and disputed claims
- Weak: Using Eltanin as evidence for Younger Dryas. The dates do not match.
- Weak: Using Eltanin as evidence for flood myths. The event predates the relevant human cultures by millions of years.
- Disputed: Exact impactor size and tsunami reach.
- Disputed: Whether the event had major global climate consequences.
- Misleading: Treating tsunami modeling as direct proof of a specific shoreline deposit or myth.
Claim status
- Well supported: The Eltanin event, described as late Pliocene in older literature, is placed near 2.51 Ma in the Gelasian earliest Pleistocene under current formal chronology.
- Well supported: The evidence strongly supports a major extraterrestrial event in deep-ocean sediments.
- Well supported: The Eltanin event is dated to about 2.51 Ma.
- Active debate: Eltanin is reconstructed chiefly from deep-sea sedimentary and geochemical evidence; the absence of an identified crater leaves exact location and mechanics uncertain.
- Misrepresented source: Eltanin's sedimentary and geochemical evidence cannot by itself confirm another proposed ocean-impact structure.
- Well supported: Eltanin is supported by noble-metal, meteoritic, and disturbed-sediment evidence, while exact impact mechanics remain constrained by modeling.
Sources
- High noble metal concentrations in a late Pliocene sediment — https://doi.org/10.1038/292417a0
- Geological record and reconstruction of the late Pliocene impact of the Eltanin asteroid in the Southern Ocean — https://doi.org/10.1038/37044
- Impact tsunami–Eltanin — https://doi.org/10.1016/S0967-0645(01)00147-3
- The Eltanin asteroid impact: possible South Pacific palaeomegatsunami footprint and potential implications for the Pliocene–Pleistocene transition — https://doi.org/10.1002/jqs.2571
- Constraints on interpretation of the Eltanin impact from numerical simulations — https://doi.org/10.1111/maps.12326
- International Chronostratigraphic Chart v2024/12 — https://stratigraphy.org/ICSchart/ChronostratChart2024-12.pdf
This public draft omits internal numeric scoring and administrative notes. Claim labels describe evidentiary status, not topic importance.