Validation of a method for the determination of boron in ceramic materials by X-ray fluorescence spectrometry

被引:11
|
作者
Sánchez-Ramos, S [1 ]
Bosch-Reig, F [1 ]
Gimeno-Adelantado, JV [1 ]
Yusá-Marco, DJ [1 ]
Doménech-Carbó, A [1 ]
Berja-Pérez, JA [1 ]
机构
[1] Univ Valencia, Fac Chem, Dept Analyt Chem, E-46100 Valencia, Spain
关键词
boron determination; X-ray fluorescence; ceramics; boracic raw materials; ceramic frits;
D O I
10.1016/S0584-8547(00)00267-6
中图分类号
O433 [光谱学];
学科分类号
0703 ; 070302 ;
摘要
A method is proposed for boron determination in ceramic materials, boracic raw materials and ceramics frits of different compositions by wavelength dispersive X-ray fluorescence technique. The instrumental conditions were studied and the sample preparation procedures were optimized. The reference method used was the potentiometric titration of mannitol-boric complex acid and the technique was optimized for the determination of B2O3 in each of the materials used. The samples for XRF determination were obtained as pellets and as glass discs. For the pellets different binders were studied, such as mannitol and cellullose for the samples of raw materials, and polyvinylpirrolidone and methyl cellulose (PVP + MC) for the ceramic frits. Samples were obtained in the form of glass discs using lithium tetraborate and a barium-lead glass (BaPbG) as materials to melt, dilute and homogenize the samples, and increase the analytical signal. A series of calibration curves were obtained and the instrumental variables were optimized. The results obtained with the XRF method were compared with the reference method for several unknown samples. The results obtained with both techniques showed relative errors from 0.7 to 3.2% for B2O3 content ranging between 40.8 and 6.3%, respectively. (C) 2000 Elsevier Science B.V. All rights reserved.
引用
下载
收藏
页码:1669 / 1677
页数:9
相关论文
共 50 条
  • [41] X-Ray Fluorescence Determination of the Boron Content in Lithium Borate Glasses
    Finkelshtein, A. L.
    Dergin, A. A.
    Nepomnyashchikh, A., I
    Amosova, A. A.
    Chubarov, V. M.
    GLASS PHYSICS AND CHEMISTRY, 2022, 48 (01) : 6 - 9
  • [42] X-Ray Fluorescence Determination of the Boron Content in Lithium Borate Glasses
    A. L. Finkelshtein
    A. A. Dergin
    A. I. Nepomnyashchikh
    A. A. Amosova
    V. M. Chubarov
    Glass Physics and Chemistry, 2022, 48 : 6 - 9
  • [43] Determination of quartz in bauxite by a combined X-ray diffraction and X-ray fluorescence method
    Feret, FR
    Roy, D
    SPECTROCHIMICA ACTA PART B-ATOMIC SPECTROSCOPY, 2002, 57 (03) : 551 - 559
  • [44] An X-ray Fluorescence Determination of Platinum and Rhodium in Autocatalysts on a Ceramic Base
    Yu. V. Antonova
    A. V. Zablotskii
    O. I. Lyamina
    Yu. A. Karpov
    A. Yu. Kuzin
    T. A. Kupriyanova
    M. N. Filippov
    Measurement Techniques, 2013, 56 : 1088 - 1091
  • [45] AN X-RAY FLUORESCENCE DETERMINATION OF PLATINUM AND RHODIUM IN AUTOCATALYSTS ON A CERAMIC BASE
    Antonova, Yu. V.
    Zablotskii, A. V.
    Lyamina, O. I.
    Karpov, Yu. A.
    Kuzin, A. Yu.
    Kupriyanova, T. A.
    Filippov, M. N.
    MEASUREMENT TECHNIQUES, 2013, 56 (09) : 1088 - 1091
  • [46] Gelation method for the preparation of sample for X-ray fluorescence spectrometry
    Fu, Bin
    Fang, Ming-Wei
    Zhou, Jie
    Yue, Yong-Ping
    Li, Hua-Chang
    Wang, Hong-Xia
    Yejin Fenxi/Metallurgical Analysis, 2002, 22 (05):
  • [47] Determination accuracy of analysis refractory materials by X-ray fluorescence
    Janca, M.
    Siler, P.
    Opravil, T.
    Kotrla, J.
    INTERNATIONAL CONFERENCE BUILDING MATERIALS, PRODUCTS AND TECHNOLOGIES, 2018, 379
  • [48] Analysis of Ancient Pottery and Ceramic Objects Using X-ray Fluorescence Spectrometry
    Pillay, A.E.
    Punyadeera, C.
    Jacodson, L.
    Eriksen, J.
    2000, John Wiley and Sons Ltd (29)
  • [49] Analysis of ancient pottery and ceramic objects using x-ray fluorescence spectrometry
    Pillay, AE
    Punyadeera, C
    Jacobson, L
    Eriksen, J
    X-RAY SPECTROMETRY, 2000, 29 (01) : 53 - 62
  • [50] Preconcentration method for the determination of thorium in natural water by wavelength dispersive X-ray fluorescence spectrometry
    M. S. de Carvalho
    M. de L. F. Domingues
    J. L. Mantovano
    J. W. S. D. da Cunha
    Journal of Radioanalytical and Nuclear Chemistry, 2002, 253 : 253 - 256