• Optoelectronics Letters
  • Vol. 18, Issue 2, 109 (2022)
Honglian LI1、2、3、*, Shizhao ZHANG1、2、3, Chenxing ZHANG1、2、3, Fan WANG1、2、3, Lide FANG1、2、3, and Xiaoting LI1、2、3
Author Affiliations
  • 1School of Quality and Technical Supervision, Hebei University, Baoding 071002, China
  • 2National & Local Joint Engineering Research Center of Metrology Instrument and System, Baoding 071002, China
  • 3Hebei Key Laboratory of Energy Metering and Safety Testing Technology, Hebei University, Baoding 071002, China
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    DOI: 10.1007/s11801-022-1110-1 Cite this Article
    LI Honglian, ZHANG Shizhao, ZHANG Chenxing, WANG Fan, FANG Lide, LI Xiaoting. Effects of KCl and KI additives on soil breakdown spectroscopy characteristics[J]. Optoelectronics Letters, 2022, 18(2): 109 Copy Citation Text show less
    References

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    [2] LI J Y, CHEN K, CHEN G F, et al. Quantitative analysis of magnesium and titanium in aluminum alloy by handheld laser-induced breakdown spectrometer analysis[J]. Progress in laser and optoelectronics, 2019, 56(2):023002.

    [3] LIU Y D, GAO X, CHENG M J, et al. Detection of camellia anthracnose by laser-induced breakdown spectroscopy[J]. Laser and optoelectronics advances in science, 2020, 57(9):093006.

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    [5] ZHANG T L, YAN C H, QI J, et al. Classification and discrimination of coal ash by laser-induced breakdown spectroscopy (LIBS) coupled with advanced chemometric methods[J]. Journal of analytical atomic spectrometry, 2017, 32(10):1960-1965.

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    [9] WINEFORDNER J D, GORNUSHKIN I B, CORRELL T, et al. Comparing several atomic spectrometric methods to the super stars:special emphasis on laser induced breakdown spectrometry, LIBS, a future super star[J]. Journal of analytical atomic spectrometry, 2004, 19(9):1061-1083.

    [10] ZHOU W D, LIU Y Y, HUANG J S. The influence of working parameters on the spectral characteristics of laser-induced soil plasma[J]. Journal of atmospheric and environmental optics, 2016, 11(05):361-366.

    [11] GUO R, ZHANG L. Analysis of the influence of sample morphology on the characteristics of laser-induced soil plasma[J]. Journal of Hebei University (natural science edition), 2015, 35(03):247-252. (in Chinese)

    [12] CHEN J Z, SONG G J, CHEN Z Y, et al. Enhancement effect of NaCl on laser-induced soil plasma radiation[J]. Powerful laser and particle beam, 2012, 24(02):476-480.

    [13] CHEN J Z, SONG G J, BAI J N, et al. The effect of CsCl additive on the nanosecond laser-induced plasma spectra of soil[J]. Journal of optoelectronics?laser, 2012, 23(09):1835-1840. (in Chinese)

    [14] CHEN J Z, ZHANG L J, SUN J, et al. Effect of CsCl additive on laser-induced soil plasma radiation[J]. Science bulletin, 2011, 56(4-5):299-303.

    [15] SHI L L, LIN Q Y, DUAN Y X. A novel specimen-preparing method using epoxy resin as binding material for LIBS analysis of powder samples[J]. Talanta, 2015, 144:1370-1376.

    [16] JIA J J, FANG H B, WANG H D, et al. Analysis of rock powders by laser-induced breakdown spectroscopy combined with the graphite doping method[J]. Journal of applied spectroscopy, 2020, 87:919-924.

    [17] LESAGE A. Experimental Stark widths and shifts for spectral lines of neutral and ionized atoms A critical review of selected data for the period 2001-2007[J]. New astronomy reviews, 2009, 52(11):471-535.

    [18] SHAIKH N M, HAFEEZ S, KALYAR M A, et al. Spectroscopic characterization of laser ablation brass plasma[J]. Journal of applied physics, 2008, 104(10): 103108.

    LI Honglian, ZHANG Shizhao, ZHANG Chenxing, WANG Fan, FANG Lide, LI Xiaoting. Effects of KCl and KI additives on soil breakdown spectroscopy characteristics[J]. Optoelectronics Letters, 2022, 18(2): 109
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