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Gem Characterisation

Gem Characterisation

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The purpose of this Special Issue is to present the advances in gem characterisation using principally non-destructive means. The proper identification of gems is an ever-increasing challenge, especially with harder-to-detect treatments and the new demands on geographical origin determination. In order to grow, gemmology requires valuable inputs from other fields of science, as well as more fundamental studies concerning gems. Hopefully, this series of articles will contribute to a better understanding of the characteristics of some gems.

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Keywords

  • agates
  • agates with amethyst
  • alexandrite
  • application
  • beryl
  • black quartz
  • Burano Formation
  • C-O isotope
  • Chemistry
  • copper diffusion
  • diaspore
  • disordered graphite inclusions
  • dumortierite
  • EDXRF
  • Egypt
  • emerald
  • emeralds
  • faceted
  • Fennoscandia Shield
  • fluorescence decay
  • Fluorescence spectroscopy
  • FTIR
  • gemological characteristics
  • gemstone
  • gemstone testing
  • gemstones
  • Genesis
  • goethite
  • heat treatment
  • hydrozincite
  • Ilakaka (Madagascar)
  • Inclusion
  • IR spectroscopy
  • Kagem Mine
  • LA-ICP-MS
  • labradorite
  • lead glass
  • low-temperature heating
  • luminescence
  • Mesoproterozoic volcanics
  • micro-Raman spectroscopy
  • mineral chemistry
  • myanmar
  • n/a
  • O-isotope analysis
  • origin traceability
  • Panjshir Valley
  • pezzotaite
  • photoluminescence lifetime
  • pink sapphire
  • PL
  • purple-violet spinel
  • Raman
  • Raman spectrometry
  • Raman spectroscopy
  • recoloring
  • ruby
  • sapphire
  • SEM-EDS
  • spinel
  • synthetic opal
  • Tanzania
  • Tanzanite
  • Tevinskoye deposit (Northern Kamchatka, Russia)
  • time-resolved spectroscopy
  • titanate
  • tourmaline
  • UV-Vis spectroscopy
  • UV-Vis-NIR
  • X-ray diffraction
  • XRD
  • zircon inclusions
  • zoisite
  • “low” temperature heat treatment

Links

DOI: 10.3390/books978-3-7258-1334-6

Editions

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