Laboratorios gemológicos
Un informe es la única parte de una transacción de piedras preciosas redactada por alguien que no tiene ningún interés en la venta. Esto hace referencia a las entidades que los emiten: dónde opera cada una de ellas, qué información recoge en el informe y si indica el país de origen.
Todos los datos aquí recogidos se han recopilado a partir de la propia página web del laboratorio e incluyen la página de la que proceden y la fecha en que se consultaron. No clasificamos a los laboratorios, no recibimos remuneración alguna de ninguno de ellos, y la inclusión de un dato aquí no supone el respaldo a ningún informe ni a ninguna piedra.
Elaboración de informes
21 laboratorios registrados
American Gemological Laboratories, LLCAGLThe trade uses AGL for coloured stone identification, enhancement reporting and country-of-origin opinions.New York, United States1977Opiniones sobre el origen
American International GemLabAIGAIG issues coloured stone, jewellery and diamond reports from the Jewelry Trade Center in Bangkok, and states that it provides enhancement and country-of-origin reports.Bangkok, ThailandOpiniones sobre el origen
Asian Institute of Gemological SciencesAIGSThe Bangkok trade uses AIGS for coloured stone and jade laboratory reports and for gemmological training.Bangkok, Thailand1978Opiniones sobre el origen
Bellerophon GemlabBellerophonThe trade uses Bellerophon for identification, treatment detection and geographic origin determination on coloured stones and diamonds.Paris, France2018Opiniones sobre el origen
CENTRAL GEM LABORATORY Co., Ltd.CGLThe Japanese trade uses CGL for diamond grading reports and for gem identification, including analytical reports on unheated corundum, jade and pearl.Tokyo, Japan1970Opiniones sobre el origen
DSEF German Gem LabDSEFThe trade uses DSEF for identification, treatment detection and origin determination on coloured stones and pearls.Idar-Oberstein, Germany1969Opiniones sobre el origen
E.G.L. PlatinumEGL PlatinumThe Israeli diamond trade uses EGL Platinum for diamond grading and gem identification reports.Ramat Gan, Israel
EGL USA Gemological LaboratoryEGL USAThe North American trade uses EGL USA for diamond and coloured stone reports.New York, United States1977
Gemological Institute of AmericaGIAThe trade uses GIA for diamond grading against its own 4Cs scale and for coloured stone and pearl identification reports.Carlsbad, United States1931Opiniones sobre el origen
GGTL LaboratoriesGGTLThe trade uses GGTL for diamond grading and testing and for gemstone identification including treatment and geographic origin assessment.2011Opiniones sobre el origen
GRS GemResearch Swisslab AGGRSThe trade uses GRS for origin determination, treatment classification and colour terminology on ruby, sapphire, emerald and other coloured stones.Meggen, Switzerland1996Opiniones sobre el origen
Gubelin Gem LabGubelinThe trade uses Gubelin for identification, treatment detection and country-of-origin opinions on high-value coloured stones.Lucerne, Switzerland1923Opiniones sobre el origen
GUILD Gem LaboratoriesGUILDGUILD issues coloured stone, feicui jade and pearl reports, and lists an origin report among its services.Shenzhen, China1980Opiniones sobre el origen
HRD AntwerpHRDThe trade uses HRD Antwerp for grading reports on polished natural and laboratory-grown diamonds and on finished jewellery.Antwerp, Belgium1973
ICA Gem Laboratories.Co., Ltd.ICA GemLabThe trade uses ICA GemLab for origin determination and treatment detection on coloured gemstones.Bangkok, ThailandOpiniones sobre el origen
International Gemological InstituteIGIThe trade uses IGI for grading reports on natural and laboratory-grown diamonds, coloured stones and finished jewellery, and for its gemmology schools.Antwerp, Belgium1975Opiniones sobre el origen
Lotus Gemology Co. Ltd.LotusThe trade uses Lotus for ruby, sapphire and spinel identification, treatment disclosure and origin opinions.Bangkok, ThailandOpiniones sobre el origen
Stone Group LabsSGLA trade-only laboratory used in the United States for coloured stone testing and diamond verification.United States1999
Swiss Gemmological Institute SSEFSSEFThe trade uses SSEF for identification, treatment detection and country-of-origin opinions on high-value coloured stones and pearls.Basel, Switzerland1972Opiniones sobre el origen
The Gem and Jewelry Institute of Thailand (Public Organization)GITThe Thai trade uses GIT for gem identification, treatment inspection and geographic origin examination of ruby, sapphire and emerald.Bangkok, Thailand2003Opiniones sobre el origen
The Gemmological Association of Great BritainGem-AThe trade uses Gem-A for gemmological qualifications and for the FGA and DGA credentials held by working gemmologists.London, United Kingdom1908Ya no se emiten
En el sector siguen circulando informaciones procedentes de estas empresas, por lo que la noticia sigue vigente. Hoy en día, nadie en esas direcciones está dispuesto a confirmar dicha información.
Cómo se analiza una piedra preciosa
Lo que se encuentra sobre la mesa de trabajo del laboratorio y lo que cada instrumento analiza. Casi todo el proceso es no destructivo: la piedra sale tal y como llegó.
10x loupe
No destructivoGives the trade-standard tenfold magnified view of a stone's surface and near-surface interior.
Ten times magnification is the reference condition under which clarity is described in the diamond trade, so it sets the baseline for what counts as an eye-visible rather than a magnification-visible feature.
Gemmological microscope, darkfield and immersion
No destructivoReveals internal inclusions, growth structures, fractures and residues at magnifications typically between 10x and 90x, with immersion in a liquid to suppress surface reflections.
Inclusion scenes are the primary evidence a laboratory uses to separate natural from synthetic material and to recognise heat treatment or fracture filling.
Refractometer
No destructivoMeasures refractive index and birefringence by reading the critical angle of light at a polished facet.
Refractive index narrows a stone to a small set of candidate species and is one of the fastest checks that a stone is the material it is described as.
Polariscope
No destructivoDetermines whether a material is singly refractive, doubly refractive or aggregate, and shows strain and optic figures between crossed polarising filters.
Optic character separates whole groups of gems and imitations from one another before any costly analysis is commissioned.
Specific gravity by hydrostatic weighing
No destructivoCompares a stone's weight in air with its weight suspended in water to derive its density relative to water.
Density distinguishes look-alike species of similar colour and can be measured on an unmounted stone without any polished facet.
Chelsea colour filter and related absorption filters
No destructivoShows how a stone transmits in two narrow bands of the visible spectrum when viewed through a paired-filter assembly.
It is a rapid sorting aid for emerald and its imitations and for some dyed material, though a filter reaction on its own never settles an identification.
Handheld spectroscope
No destructivoDisperses light transmitted through or reflected from a stone so that absorption lines and bands can be seen directly.
Characteristic absorption features point to the colouring element present, which supports species identification and flags some dyes and synthetics.
Ultraviolet lamp, long-wave and short-wave
No destructivoRecords the colour and strength of fluorescence and any phosphorescence under 365 nm and 254 nm excitation.
Fluorescence behaviour separates many natural stones from their synthetic counterparts and reveals filled fractures, some dyes and assembled stones.
UV-Vis-NIR spectroscopy
No destructivoRecords absorption across ultraviolet, visible and near-infrared wavelengths to map the electronic transitions responsible for colour.
It underpins natural versus synthetic calls and the detection of colour treatment in stones such as diamond, corundum and beryl.
FTIR spectroscopy
No destructivoRecords infrared absorption arising from molecular vibrations, including water, hydroxyl, carbon dioxide and polymer species inside a stone.
Infrared signatures identify resin and polymer fillers in emerald and jadeite and separate several natural and synthetic materials by their growth chemistry.
Raman spectroscopy
No destructivoReads the inelastic light scattering signature of a material to give a structural fingerprint of the host and of individual inclusions.
It identifies mineral inclusions in place without opening the stone, which is central to origin work and to recognising fillers and synthetic growth residues.
Photoluminescence spectroscopy
No destructivoMeasures light emitted after laser excitation, usually at cryogenic temperature, to detect defect centres present at very low concentrations.
It is the principal method for separating laboratory-grown from natural diamond and for detecting high pressure high temperature treatment.
EDXRF spectrometry
No destructivoDetermines the major and minor chemical elements present by reading the characteristic X-ray fluorescence a sample emits under X-ray excitation.
Chemical fingerprints separate species and varieties, flag some treatments and give a first indication of geographic source without marking the stone.
LA-ICP-MS
Deja huellaVaporises a microscopic volume of material with a laser and measures trace element concentrations down to parts per million or lower.
Trace element ratios compared against a reference database are the quantitative basis of most country-of-origin opinions for ruby, sapphire and emerald.
X-ray radiography and microtomography
No destructivoImages internal structure by differential X-ray absorption, in two dimensions or as a reconstructed three-dimensional volume.
It is the standard means of separating natural from cultured pearls by revealing the internal growth structure and any bead nucleus.
X-ray diffraction
No destructivoDetermines crystal structure from the angles at which a sample diffracts a monochromatic X-ray beam.
It confirms the crystalline species where optical and chemical data are ambiguous, including polycrystalline and opaque materials such as jade.
Las prácticas de certificación constituyen una cuarta parte de la «GV Score» de un concesionario. Esto se refiere a los laboratorios con los que trabaja la empresa, la coherencia con la que comunica el contenido de los informes y si entrega la documentación antes de que usted pague, en lugar de después. Esta referencia es la base sobre la que se asienta el criterio de evaluación.
Los datos se han contrastado por última vez con fuentes oficiales en 18 ago 2026.