Published June 2021 | Version v1
Journal article

Tephrochronology in Aotearoa New Zealand

  • 1. School of Geography, Environment and Earth Science, Victoria University of Wellington, Wellington (New Zealand)
  • 2. School of Science, Waikato University, Hamilton (New Zealand)
  • 3. Earthquake Commission, Wellington (New Zealand)

Description

Tephra deposits in Aotearoa New Zealand (ANZ) have been studied for >180 years. The now-global discipline of tephrochronology, which has some developmental roots in ANZ, forms the basis of a powerful chronostratigraphic correlational tool and age-equivalent dating method for geological, volcanological, palaeoenvironmental, and archaeological research in ANZ. Its utility is founded on the key principle that tephras or cryptotephras provide widespread isochrons in many different environments. In the first part of this article, we summarise the history of tephra studies in ANZ and then describe how tephras have been mapped, characterised, and correlated using field and laboratory-based methods. We document advances in geochemical fingerprinting of glass; tephra/cryptotephra detection and correlation by sediment-core scanning methods (e.g. X-radiography, CT imaging, XRF elemental analysis, magnetic susceptibility); statistical correlation methods; and dating of tephras/cryptotephras. We discuss the advent of ANZ cryptotephra studies (from mid-1970s) and their more-recent growth. The second part comprises examples of applications of tephrochronology in ANZ: climate-event stratigraphy (NZ-INTIMATE project); eruptive-event stratigraphy in the Auckland Volcanic Field; developments in the marine tephra record; advances in identifying, correlating, and dating old (pre-50 ka) tephras and weathered-tephra deposits; forming soils/paleosols on tephras; tephras and archaeology; Kopouatai bog tephrostratigraphy and palaeoenvironments; and volcanic-hazard assessments. (author)

Additional details

Publishing Information

Journal Title
New Zealand Journal of Geology and Geophysics
Journal Volume
64
Journal Issue
2-3
Journal Page Range
p. 153-200
ISSN
0028-8306

Optional Information

Notes
483 refs., 19 figs., 4 tabs.