Published 1996 | Version v1
Book

Remote metal analysis by laser induced breakdown spectroscopy

Creators

  • 1. Magnox Electric plc, Dartford (United Kingdom)

Description

This paper describes a new technique by which the composition of irradiated or inaccessible reactor components can be determined remotely. The technique uses very short duration, high energy laser pulses at a wavelength which can be transmitted down an optical fibre to ablate a tiny plasma from the surface of a metal component. Light from the plasma is collected by a second fibre and returned to a spectrometer where it is split into the characteristic emission wavelengths of the elements in the sample. Comparison of the emission line amplitude for a particular element with that of a chosen calibrationline can be used to deduce the concentration of the element in the sample. The technique has been used successfully to differentiate between highly radioactive control rod batches at Sizewell 'A' and Hinkley Point 'A Power Stations. The material analysis accuracy is comparable with that obtained from electron microprobe analysis and other direct spectroscopic methods. However, by analysing the mild steel control rod casing material remotely, difficult sample removal becomes unnecessary and the integrity of the component remains essentially unaltered. In addition, removal of deposits or surface corrosion is incorporated very neatly into the process. These factors make remote laser induced breakdown spectroscopy an ideal tool for material analysis in the nuclear environment. (Author)

Part of:
Remote techniques for hazardous environments

Additional details

Publishing Information

Publisher
Thomas Telford Publishing.
Imprint Place
London (United Kingdom)
ISBN
0 7277 2537 8
Imprint Title
Remote techniques for hazardous environments. Proceedings
Imprint Pagination
322 p.
Journal Page Range
p. 259-263.

Conference

Title
International conference on remote techniques for hazardous environments.
Dates
29-30 Apr 1996.
Place
Leicestershire (United Kingdom).

Optional Information