Very efficient sampling technique for fiber-remote optical emission spectroscopy of aqueous solutions

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dc.contributor.author MacKenzie, Steven J. -
dc.contributor.author Hodgkinson, Jane -
dc.contributor.author Johnson, Mark -
dc.contributor.author Dakin, John P. -
dc.contributor.editor Cecchi, G. -
dc.contributor.editor Lamp, T. -
dc.contributor.editor Reuter, R. -
dc.contributor.editor Weber, K. -
dc.date.accessioned 2012-07-12T23:01:56Z
dc.date.available 2012-07-12T23:01:56Z
dc.date.issued 1997-01-01T00:00:00Z -
dc.identifier.citation S.J. MacKenzie, J. Hodgkinson, M. Johnson and J.P. Dakin. Very efficient sampling technique for fiber-remote optical emission spectroscopy of aqueous solutions. Proc SPIE 3107, pp 260-271, Remote Sensing of Vegetation and Water, and Standardization of Remote Sensing Methods, Monday 16 June 1997, Munich, Germany, Giovanna Cecchi; Torsten Lamp; Rainer Reuter; Konradin Weber; Eds., 1997 -
dc.identifier.isbn 9780819425287 -
dc.identifier.uri http://dx.doi.org/10.1117/12.274757 -
dc.identifier.uri http://dspace.lib.cranfield.ac.uk/handle/1826/4370
dc.description.abstract We have measured fluorescence from a waveguide formed by a falling cylindrical stream of liquid. The configuration is suited to taking measurements from liquids with any refractive index, such as aqueous solutions. The parameters which determine the stream stability have been investigated, and the optical collection efficiency has been mathematically modelled. We have produced streams up to 350 mm long with a 2.5 mm diameter, and measured a fluorescence collection enhancement factor of 9 from a 100 mm long, 1 mm diameter stream. en_UK
dc.subject water en_UK
dc.subject aqueous en_UK
dc.subject flourescence en_UK
dc.subject Raman en_UK
dc.subject optical fiber en_UK
dc.subject spectroscopy en_UK
dc.subject falling analyte stream en_UK
dc.title Very efficient sampling technique for fiber-remote optical emission spectroscopy of aqueous solutions en_UK
dc.type Conference paper -


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