High‐Definition X‐Ray Fluorescence: Applications
Author(s) -
W. M. Gibson,
Z. W. Chen,
Danhong Li
Publication year - 2008
Publication title -
x-ray optics and instrumentation
Language(s) - English
Resource type - Journals
eISSN - 1687-7640
pISSN - 1687-7632
DOI - 10.1155/2008/709692
Subject(s) - x ray fluorescence , elemental analysis , microbeam , fluorescence , materials science , analytical chemistry (journal) , chemistry , physics , optics , environmental chemistry , organic chemistry
Energy dispersive X-ray fluorescence (EDXRF) is a well-established and powerful tool for nondestructive elemental analysis of virtually any material. It is widely used for environmental, industrial, pharmaceutical, forensic, and scientificresearch applications to measure the concentration of elemental constituents or contaminants. The fluorescing atoms can be excited by energetic electrons, ions, or photons.A particular EDXRF method, monochromatic microbeam X-ray fluorescence (MμEDXRF), has proven to be remarkably powerful in measurement of trace element concentrations and distributions in a large variety of important medical, environmental, and industrial applications. When used with state-of-the-art doubly curved crystal (DCC) X-ray optics, this technique enables high-sensitivity, compact, low-power, safe, reliable, and rugged analyzers for insitu, online measurements in industrial process, clinical, and field settings. This new optic-enabled MμEDXRF technique is known as high-definition X-Ray fluorescence (HD XRF). Selected applications of HD XRF are described in this paper including air particulate analysis, analysis of body fluid contamination at ppb levels, elemental mapping of brain tissue and bone samples, as well as analysis of toxins in toys and other consumer products
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