Spectroscopy Diffraction And Tomography In Art And Heritage Science

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Spectroscopy, Diffraction and Tomography in Art and Heritage Science

Spectroscopy, Diffraction and Tomography in Art and Heritage Science gives an overview of the main spectroscopy and diffraction techniques currently available for cultural heritage research. It starts with an introductory, general discussion of spectroscopy and diffraction and the kinds of information they can give. Further sections deal with, respectively, typical laboratory methods, mobile equipment, and large-scale instruments and infrastructural methods. The work concludes with comments on combining and comparing multiple techniques, sources of error, and limitations of the analytical methods. - Explains spectroscopy and diffraction techniques in detail, yet remains accessible to those without a chemistry or physics background - Provides explanations of commonly used terms, such as destructive, non-destructive, non-invasive, in-situ, and ex-situ, and their sometimes-misleading origins - Includes real-world examples that demonstrate how each technique is used in the field - Highlights the complementary use of different analytical techniques in fully interpreting the data
Lasers in the Conservation of Artworks XIII

Light allows us not only to see the works of art, but also to take care of them and preserve them for future generations, through diagnosis of the degradation and deterioration phenomena, conservation treatments, and monitoring based on light-material interaction processes. Recent progress on this subject was discussed during the 13th International Conference on Lasers in the Conservation of Artworks (LACONA XIII, Florence, Italy, 12-16 September 2022). This volume includes selected contributions presented at the conference on preservation topics, photonic techniques, and optimization methods. In particular, the papers focus on the development and use of innovative spectroscopic and imaging characterization techniques, the diagnostic knowledge of important artworks, and the optimization of the laser solution for preserving a growing variety of cultural assets, such as stone and metal artefacts, painted surfaces, textile, feather, and plastic artefacts. Lasers in the Conservation of Artworks XIII aims at scholars and operators of the community of preservation of cultural heritage, at teachers and students of training courses on diagnostic and conservation methods, applied physics, and chemistry, as well as archaeology and art history.
Electrochemistry for Cultural Heritage

Author: Antonio Doménech-Carbó
language: en
Publisher: Springer Nature
Release Date: 2023-07-05
This monograph overviews the importance of electrochemistry in the field of cultural heritage, including archaeology, conservation and restoration topics. The application of electrochemical techniques in these domains have experienced a notable growth during the last ten years, in particular with regards to the elucidation of composition, manufacturing techniques and chronology of archaeological artefacts. This book describes the application of solid state electrochemistry techniques for the use of samples at the nanogram level from paintings, metallic, ceramic, glass, glazed, wooden, and other objects, and it also includes the description of new dating procedures for archaeological objects made of these materials. It is a valuable contribution to the field of cultural heritage and will be of great interest to archaeologists, conservators and restorers as well as to physicists and chemists working on the scientific examination of works of art.