An X-Ray diffraction (XRD) study to characterize the mineralogy of dinosaur bones from Arcillas de Morella Formation

An investigation by powder X-ray Diffraction (XRD), supplemented with the Rietveld analysis, was conducted on twenty-two Spanish dinosaur bone specimens from Lower Cretaceous age to investigate mineralogy, taphonomy and diagenetic processes. The diffraction approach assessed in all specimens the pre...

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Bibliographic Details
Authors: Piga, Giampaolo, Santos Cubedo, Andrés, Piccinini, Massimo, Enzo, Stefano
Format: article
Publication Date:2012
Country:España
Institution:Universidad de Huelva (UHU)
Repository:Arias Montano. Repositorio Institucional de la Universidad de Huelva
Language:English
OAI Identifier:oai:ariasmontano.uhu.es:10272/7286
Online Access:http://hdl.handle.net/10272/7286
Access Level:Open access
Keyword:X-ray Diffraction
Dinosaur bones
Mineralogy
Diagenetic processes
Difracción de rayos-X
Huesos de dinosaurios
Mineralogía
Procesos diagenéticos
Description
Summary:An investigation by powder X-ray Diffraction (XRD), supplemented with the Rietveld analysis, was conducted on twenty-two Spanish dinosaur bone specimens from Lower Cretaceous age to investigate mineralogy, taphonomy and diagenetic processes. The diffraction approach assessed in all specimens the presence of fluorapatite at various levels of percentage as the mineral phase constituting the fossil bone. In addition to fluorapatite, calcite and quartz were also found as main secondary phases in many specimens. The average crystallite size of the “apatitic” constituent phase was found to vary from a minimum of ca. 183 Å to an upper level of 2107 Å. No systematic relation between apatite crystallite size and age of the dinosaur bones was found that suggests a high variability of diagenetic processes affecting the growth of bone crystallites even in the same site