Second meteor strike

Events around 3,100 BCE linked to a meteor impact?

Small meteor strikes were more common than belieived, in these times. As little as 13,000 years ago and then 5,000 years ago, there were strikes. The last one of 5,000 years ago was bigger. It did two things for the planet. The first is that it created such a shift of the mantel of the planet that the earth moved from 28 degrees tilt to 23 and 1/3. It was quite an impact! That was only 5,000 years ago.

The second is that it affected civilization. Much dust was thrown into the atmosphere up into what you call the stratosphere and the result mainly was rain. The rain terminated much of humanity. Many animals and many Humans died. It was needed, necessary, and we have spoken of it before. It was part of the plan. The main purpose was to erase all of the Lemurian knowledge and create many lakes for humanity to use. Science can see it in the strata, and it has even been associated with the mythology of a great worldwide flood and an ark.

Kryon

Given Kryon’s effects (rainfall, floods, loss of life, new lakes, societal impact, axial tilt shift), the following events from the list and searches align, considering a flexible date range (3150–2800 BCE):

  • Narrow tree rings and acidity peak (~3150 BC, Northern Ireland): Suggests climatic disruption, possibly from atmospheric dust, aligning with rainfall and societal stress.
  • Sulphate spike (~3150 BC, Greenland): Indicates a meteoric or volcanic event, fitting dust in the stratosphere and rainfall.
  • Sedimentation change (~3150 BC, Lake Van, Turkey): Rapid climatic fluctuation could result from impact-induced cooling, aligning with loss of life.
  • Moister conditions (~3000 BC, Oregon, Jordan, Sahara): Increased rainfall and higher water levels (e.g., Lake Chad) fit Kryon’s rain and new lakes, though gradual, possibly impact-related.
  • Mesopotamian Dark Age (3100–3000 BC): Societal collapse and recovery suggest impact-related disruption, aligning with loss of life and cultural reset.
  • Volcanic eruptions (~2500–2750 BCE): Close to 3000 BCE, potentially triggered by impact, contributing to rainfall and environmental stress.
  • Abrupt climate change (~3200 BCE, Hancock’s site): Multi-regional effects could include rainfall and floods, fitting Kryon’s description, though dated slightly earlier.
  • Burckle impact (~2800 BCE): Hypothesized megatsunamis and climatic effects align with rainfall, floods, and loss of life, close to 3,000 BCE, though debated.

The axial tilt shift (28 to 23.33 degrees) is scientifically dubious, as no impact at this time is known to cause such a change, but the climatic and societal effects suggest these events could be consequences.

Table of Potential Matches

EventDate (BCE)LocationDescriptionAlignment with Kryon’s Strike
Narrow tree rings, acidity peak~3150Northern IrelandClimatic disruption, possibly meteoric impactRainfall, atmospheric dust, societal stress
Sulphate spike~3150GreenlandMeteoric or volcanic event, dust in stratosphereRainfall, loss of life
Sedimentation change~3150Lake Van, TurkeyRapid climatic fluctuation, possibly impact-relatedClimatic disruption, loss of life
Moister conditions~3000Oregon, Jordan, SaharaIncreased rainfall, higher water levelsRainfall, new lakes
Mesopotamian Dark Age3100–3000MesopotamiaSocietal collapse, recoveryLoss of life, cultural reset
Volcanic eruptions~2500–2750GlobalPotentially impact-triggered, climatic effectsRainfall, environmental stress
Abrupt climate change~3200Multi-regionalClimatic shifts, possibly impact-relatedRainfall, floods, societal impact
Burckle impact (hypothesized)~2800Indian OceanMegatsunamis, climatic effects, linked to TauridsRainfall, floods, loss of life, close to 3,000 BCE

Conclusion

Events around 3150–2800 BCE, such as narrow tree rings, sulphate spikes, sedimentation changes, moister conditions, Mesopotamian Dark Age, volcanic eruptions, abrupt climate changes, and the Burckle impact, align with Kryon’s meteor strike description, suggesting climatic disruptions, floods, and societal impacts. The connection is speculative, with no definitive impact at 3,000 BCE, and the Burckle impact (~2,800 BCE) is the closest candidate, though debated.

The Huainanzi

The Huainanzi describes the cosmos as a dynamic system where Heaven and Earth are interdependent. A famous passage, often cited in cosmological discussions, appears in Chapter 4 (and is echoed in other chapters, like Chapter 3, “Tianwen xun”):

“When Heaven tilts to the northwest, the sun, moon, and stars shift accordingly. When the Earth is not level, the waters flow to the southeast, and the seas swell, submerging lands.” (Paraphrased from Major, 1993, Heaven and Earth in Early Han Thought)

Thor Heyerdahl. Early Man and the Ocean

In some instances, it may appear as though Heyerdahl believed in the myth of Atlantis. As with the biblical flood narrative, he believed there was a kernel of truth to Plato’s account. However, the historicity lay primarily in ancient folk memories of a huge cataclysm that had destroyed earlier civilizations. Heyerdahl postulated a violent natural catastrophe of global proportions occurring roughly during the same period as the cultural boom in the Mediterranean area, in Mesopotamia, and the Indus Valley, some five thousand years ago. A tree embedded in lava on Iceland, carbon
dated to this period, made him believe that enormous flood waves, caused by plate tectonics, had reached the Atlantic and Mediterranean coasts, forcing maritime cultures to relocate. As he writes in Early Man and the Ocean (1978):

Since a geological catastrophe took place in the Atlantic in the centuries around 3000 BC great enough to split Iceland, it is perhaps not entirely out of place to speculate that tidal waves could have caused far-reaching disasters, forcing population groups to search for new land.

47 Thor Heyerdahl. Early Man and the Ocean. London: George Allen & Unwin (1978), p. 335

A similar scenario took place in the bay outside the delta of the Tigris and Euphrates, burying ancient settlements in lower Mesopotamia under a three-meter-thick layer of mud. But since Heyerdahl was assuming a world-wide natural catastrophe, he believed that the tsunami must have originated in the ocean somewhere outside the Persian Gulf. Consequently, Heyerdahl must have assumed that the catastrophe affected cultures all along the coastlines and bays throughout the antediluvian world.

More sources

See Evidence Of Catastrophe That Ended An Ancient Civilisation | BBC Timestamp

ice core 2200BCE

Stanford 3000 BC: Notes and References

Maya – End of 4th World (Flood) at August 11, 3114 BCE

Published: 22 May 2025 | Updated: 9 months ago | Report Mistakes

2 thoughts on “Events around 3,100 BCE linked to a meteor impact?”

  1. Have y’all found any meteorites around the sc areas at all
    Documentary’s note there has only been 3 found in South Carolina in all its history ….
    Which I find this to be of the strangest assumption of all times …
    For I know ones who have a multitude of vast varieties of meteorites which has been found in the lower state many to which were on my property….
    I’ve researched to try to find who to reach out to but there is none listed to contact …
    Can you give me a legitimate contact

    Reply
    • That is very interesting. If somehow these meteorites in your property can be linked to that an event around 3,000 BCE it can strengthen this case. Unfortunately I don’t know who to reach out to, I’ll bring it up in case I find someone who is actively looking into it.

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