Chemistry

J. T. Scanlon, D. E. Willis

1985.8.1JOURNAL OF CHROMATOGRAPHIC SCIENCE

DOI: 10.1093/chromsci/23.8.333

tlooto Summary

Calculates flame ionization detector relative response factors using effective carbon number concept for analyzing polycyclic aromatic hydrocarbons and oxygenated organics.

Abstract

Equations are given for relating flame ionization detector relative response factors to the effective carbon number (ECN) of neat and derivatized components. The ECN ap­ proach can be used for calculating relative response fac­ tors in cases where pure materials are not available for detector calibration. Examples of this approach are given for the analysis of polycyclic aromatic hydrocarbons and oxygenated organics in neat form, alcohols and acids as the trimethylsilylated derivatives, and carbohydrates as the trimethylsilyl-oxime derivatives.

Citation format

SCANLON, J. T.; WILLIS, D. E. Calculation of flame ionization detector relative response factors using the effective carbon number concept. JOURNAL OF CHROMATOGRAPHIC SCIENCE, 1985, 23: 333–340.