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MD dating: molecular decay (MD) in pinewood as a dating method
J Tintner1, B Spangl2, M Grabner3
1Institute of Physics and Materials Science, University of Natural Resources and Life Sciences, Peter Jordan Straße 82, 1190, Vienna, Austria.
Scientific Reports
|July 11, 2020
Summary
This study introduces a new wood dating method based on molecular decay, offering an alternative to dendrochronology and radiocarbon dating for specific conditions. The method shows promise for historical research and archaeology.
Area of Science:
- Wood science
- Archaeometry
- Paleoclimatology
Background:
- Accurate wood dating is crucial for historical research, archaeology, and paleoclimatology.
- Current methods like dendrochronology and radiocarbon dating have limitations.
- A novel approach utilizing molecular decay as a dating clock is explored.
Purpose of the Study:
- To develop and validate a new wood dating method based on molecular decay.
- To assess the method's accuracy under specific preservation conditions.
- To compare the new method with existing wood dating techniques.
Main Methods:
- Development of models based on molecular decay rates in wood.
- Integration of data from construction wood, waterlogged wood, and wood from living trees.
- Analysis of molecular decay under controlled, specific preservation conditions.
Main Results:
- A model covering 7,500 years achieved a root mean square error (RMSE) of 682 years for single measurements.
- A refined model for the last 800 years yielded an RMSE of 92 years.
- Molecular decay demonstrated comparable speed as a dating clock under the studied conditions.
Conclusions:
- Molecular decay offers a viable dating clock for wood under specific preservation conditions.
- The method shows potential as an alternative or complementary dating technique.
- Further research is needed to expand the model's applicability to other preservation environments.
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