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  4. Electrothermal atomic absorption spectrometric determination of lead and tin in slurries. optimization study
 
research article

Electrothermal atomic absorption spectrometric determination of lead and tin in slurries. optimization study

Slaveykova, V. I.  
•
Hoenig, M.
1997
Analyst

A comparative study of the efficiencies of W, Mg, Mg + Pd, Ir + Mg and Ir + W + PO43- as chem. modifiers for the thermal stabilization of Pb and Sn in slurries was performed. The Ir + Mg modifier contributes more than the others to minimizing matrix effects and preventing double peak formation. The influences of slurry concn., amt. of modifier and pyrolysis step on the integrated absorbance signals for Pb and Sn in sediment slurry were studied. The potential of fractional factorial design was explored to evaluate the effect on the absorbance signals of different factors such as drying and pyrolysis times, pyrolysis and atomization temps., presence of modifier and incorporation of a cool-down step in the electrothermal program. The Pb and Sn integrated absorbance signals are increased by lower and higher pyrolysis and atomization temps., resp. The Ir + Mg modifier also increases the absorbance signal for Sn. The use of an Ir + Mg modifier and ultrasonic agitation in the direct introduction of slurries into the graphite atomizer provides a consistent performance with good sensitivity, precision and anal. recovery. [on SciFinder (R)]

  • Details
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Type
research article
DOI
10.1039/A607920B
Author(s)
Slaveykova, V. I.  
Hoenig, M.
Date Issued

1997

Published in
Analyst
Volume

122

Issue

4

Start page

337

End page

343

Subjects

Optimization (electrothermal at. absorption spectrometric detn. of lead and tin in slurries. optimization study)

•

Phosphates Role: ARU (Analytical role

•

unclassified)

•

ANST (Analytical study) (electrothermal at. absorption spectrometric detn. of lead and tin in slurries. optimization study)

•

Wastes (slurry

•

electrothermal at. absorption spectrometric detn. of lead and tin in slurries. optimization study)

•

electrothermal atomic absorption spectrometry metal slurry

•

lead tin detn slurry optimization

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GR-SLV  
Available on Infoscience
November 27, 2007
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/14957
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