• Title of article

    Method development for the determination of bromine in coal using high-resolution continuum source graphite furnace molecular absorption spectrometry and direct solid sample analysis

  • Author/Authors

    Pereira، نويسنده , , ةderson R. and Castilho، نويسنده , , Ivan N.B. and Welz، نويسنده , , Bernhard and Gois، نويسنده , , Jefferson S. and Borges، نويسنده , , Daniel L.G. and Carasek، نويسنده , , Eduardo and de Andrade، نويسنده , , Jailson B.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2014
  • Pages
    7
  • From page
    33
  • To page
    39
  • Abstract
    This work reports a simple approach for Br determination in coal using direct solid sample analysis in a graphite tube furnace and high-resolution continuum source molecular absorption spectrometry. The molecular absorbance of the calcium mono-bromide (CaBr) molecule has been measured using the rotational line at 625.315 nm. Different chemical modifiers (zirconium, ruthenium, palladium and a mixture of palladium and magnesium nitrates) have been evaluated in order to increase the sensitivity of the CaBr absorption, and Zr showed the best overall performance. The pyrolysis and vaporization temperatures were 800 °C and 2200 °C, respectively. Accuracy and precision of the method have been evaluated using certified coal reference materials (BCR 181, BCR 182, NIST 1630a, and NIST 1632b) with good agreement (between 98 and 103%) with the informed values for Br. The detection limit was around 4 ng Br, which corresponds to about 1.5 μg g− 1 Br in coal, based on a sample mass of 3 mg. In addition, the results were in agreement with those obtained using electrothermal vaporization inductively coupled plasma mass spectrometry, based on a Student t-test at a 95% confidence level. A mechanism for the formation of the CaBr molecule is proposed, which might be considered for other diatomic molecules as well.
  • Keywords
    HR-CS GF MAS , Coal analysis , Direct solid sample analysis , Bromine determination , Mechanism of molecule formation
  • Journal title
    Spectrochimica Acta Part B Atomic Spectroscopy
  • Serial Year
    2014
  • Journal title
    Spectrochimica Acta Part B Atomic Spectroscopy
  • Record number

    1689093