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1.
Opt Express ; 22(19): 22382-7, 2014 Sep 22.
Article in English | MEDLINE | ID: mdl-25321709

ABSTRACT

The most sensitive lines of carbon, used nowadays for its determination in steels by laser-induced-breakdown spectroscopy (LIBS), are at vacuum UV and, thereby, LIBS potential is significantly reduced. We suggested the use of the C I 833.51 nm line for carbon determination in low-alloy steels (c(C)~0.186-1.33 wt.%) in air. Double-pulse LIBS with the collinear scheme was performed for maximal enhancement of a carbon emission signal without substantial complication of experimental setup. Since this line is strongly broadened in laser plasma, it overlapped with the closest iron lines greatly. We implemented a PCR method for the construction of a multivariate calibration model under spectral interferences. The model provided a RMSECV = 0.045 wt.%. The predicted carbon content in the rail templet was in an agreement with the reference value obtained by a combustion analyzer within the relative error of 6%.


Subject(s)
Carbon/analysis , Lasers , Manganese/analysis , Spectrum Analysis/methods , Steel/chemistry , Calibration , Ions
2.
Talanta ; 69(4): 1046-8, 2006 Jun 15.
Article in English | MEDLINE | ID: mdl-18970678

ABSTRACT

The novel approach using a slope of correlation line (laser-enhanced ionization of lithium versus laser-induced plasma emission of aluminum) as analytical signal was proposed for reduction of matrix interferences in laser-enhanced ionization spectrometric determination of Li with laser sampling.

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