Jump to main content
Jump to site search


Long-term repeatability improvement of quantitative LIBS using a two-point standardization method

Author affiliations

Abstract

To improve long-term repeatability in quantitative analysis of laser-induced breakdown spectroscopy (LIBS), a two-point standardization (TPS) method was used to perform a standard procedure on the measured intensities of test samples before quantitative analysis. Based on a self-developed LIBS analyzer, the TPS method was used to measure trace elements such as Mn, Si, Cr, Ni, Cu, Ti, Al, V and Mo in low alloy steel samples. Quantitative validations with six test samples were performed every 24 hours for three days. The results demonstrated that the instrument drift was effectively corrected using the TPS method, and the average relative errors (AREs) of repeated measurements decreased by 45%, 32%, 3%, 16%, 15%, 54%, 11%, 11%, and 91% for Mn, Si, Cr, Ni, Cu, Mo, Al, V, and Ti elements, respectively. The long-term repeatability of quantitative LIBS was improved using the TPS method. The performance of the TPS method for different elements is mainly influenced by the characteristics of test samples, correction samples, experimental conditions, etc. In practice, the TPS method is a very promising way to improve the repeatability of quantitative LIBS.

Graphical abstract: Long-term repeatability improvement of quantitative LIBS using a two-point standardization method

Back to tab navigation

Publication details

The article was received on 11 May 2018, accepted on 17 Jul 2018 and first published on 17 Jul 2018


Article type: Technical Note
DOI: 10.1039/C8JA00148K
Citation: J. Anal. At. Spectrom., 2018, Advance Article
  •   Request permissions

    Long-term repeatability improvement of quantitative LIBS using a two-point standardization method

    Z. Hao, L. Liu, M. Shen, R. Zhou, J. Li, L. Guo, X. Li, Y. Lu and X. Zeng, J. Anal. At. Spectrom., 2018, Advance Article , DOI: 10.1039/C8JA00148K

Search articles by author

Spotlight

Advertisements