On-Line Measuring Principle of Ferrous Ion in Fluxing

Article Preview

Abstract:

A spectral absorption of the ferrous ion in fluxing was investigated in this paper due to the significant effect of ferrous ion on the quality of hot-dip galvanizing production. Based on analysis of spectrophotometry, an automatic detection equipment of ferrous ions is developed according to its special characteristics. On-line measuring of ferrous ion in fluxing of the hot-dip galvanizing is realized by the micro-pump and the equipment. Results show that the lowest limit to be detected is 0.1 g/L, measuring errors are less than 0.05 g/L, the linear equations of the absorption and concentration of the ferrous ions shows a good correlation coefficient which is 0.99995 when the ferrous ions concentration is between 0.1g/L and 10g/L in fluxing.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1810-1815

Citation:

Online since:

October 2010

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2010 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Z.M. Yuan, S.R. Zhang: Corrosion & Proctection. Vol. 23 (2002), p.225.

Google Scholar

[2] H.E. Townsend, L. Allegra and R.J. Dutton, et al.: Materials Performance. Vol. 36 (1986), p.36.

Google Scholar

[3] G.A. Moller, U.S. Patent 2, 315, 725. (1948).

Google Scholar

[4] B. Yang, X.G. Shen, L. Ma, et al.: Electroplating & Finishing, Vol. 24 (2005), p.14.

Google Scholar

[5] R. Fratesip, N. Ruffinin, M. Malavoltam, et al.: Sur. & Coat. Tech. Vol. 157(2002), p.34.

Google Scholar

[6] D. Tzur, V. Dosortzev, E. Kiroma-Eisner: Analytica Chimica Acta. Vol. 392(1999), p.307.

DOI: 10.1016/s0003-2670(99)00226-3

Google Scholar

[7] P.C. Nascimento, C.L. Jost, M.V. Guterres: Talanta. Vol. 70 (2006), p.540.

Google Scholar

[8] S. ZarVba, K. Szarwilo, A. Pomykalski: Ⅱ Formaco. Vol. 60 (2005), p.459.

Google Scholar

[9] F. Sabermahani, M.A. Taher: Analytica Chimica Acta. Vol. (2006), p.152.

Google Scholar

[10] G.Z. Cheng, X.Z. Huang: Ultraviolet: Visible Spectrophotometry (Atomic Energy Press, Beijing 1987).

Google Scholar

[11] A. Fonseca, I.M. Jr. Raimundo: Analytica Chimica Acta. Vol. 596 (2007), p.66.

Google Scholar

[12] C. You: Opt. Eng. Vol. 44 (2005), p.111.

Google Scholar

[13] G.J. Chen, H. Cao: Nuclear Electronics and Detection Technology. Vol. 25 (2005), p.243.

Google Scholar

[14] W.T. Liu: Examples of Single-Chip Application Development (Tsinghua University Press, Beijing, 2005).

Google Scholar