期刊文献+

A mathematical model for electrochemical chloride removal from marine cast iron artifacts 被引量:3

A mathematical model for electrochemical chloride removal from marine cast iron artifacts
下载PDF
导出
摘要 The aim of this article was to theoretically study diffusion and migration of chloride ions during electrochemical chloride removal. The proposed model would enable optimization of its application by predicting the optimal treatment time and current combination. A mathematical model for simulating the transport behavior of chloride ions was developed by consideration of diffusion and migration of chloride ions when a constant DC current density was applied through the marine cast iron artifacts. The corresponding tests were conducted to validate the mathematical model. This model predicted the data of the extraction ratio of the chloride ion that correlated satisfactorily with the experimental values. An important issue in electrochemical chloride removal was to understand how chloride ions moved, taking account of diffusion and migration of chloride ions and the release of binding chloride ions. The effects of the treatment time, externally applied current density, chloride diffusion coefficient, and rate constant of release of binding chloride ion on chloride removal are studied. The specific quantitative details applied to one-dimensional model were discussed here. This article has proposed a mathematical model for the first time, which was showed to be a useful tool that can reveal the ionic transport mechanism and optimize the application during electrochemical chloride removal. The aim of this article was to theoretically study diffusion and migration of chloride ions during electrochemical chloride removal. The proposed model would enable optimization of its application by predicting the optimal treatment time and current combination. A mathematical model for simulating the transport behavior of chloride ions was developed by consideration of diffusion and migration of chloride ions when a constant DC current density was applied through the marine cast iron artifacts. The corresponding tests were conducted to validate the mathematical model. This model predicted the data of the extraction ratio of the chloride ion that correlated satisfactorily with the experimental values. An important issue in electrochemical chloride removal was to understand how chloride ions moved, taking account of diffusion and migration of chloride ions and the release of binding chloride ions. The effects of the treatment time, externally applied current density, chloride diffusion coefficient, and rate constant of release of binding chloride ion on chloride removal are studied. The specific quantitative details applied to one-dimensional model were discussed here. This article has proposed a mathematical model for the first time, which was showed to be a useful tool that can reveal the ionic transport mechanism and optimize the application during electrochemical chloride removal.
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2009年第2期91-99,共9页 金属学报(英文版)
基金 the National Key Technologies R&D Program of the Tenth Five-Year Plan Period for financial support (Contract No.2001BA805B01)
关键词 Marine cast iron Electrochemical chloride removal Mathematical model Marine cast iron Electrochemical chloride removal Mathematical model
  • 相关文献

参考文献10

  • 1R.Walker. British Corrosion Journal . 1996
  • 2S.Selwyn,W.R.MaKinnon,V.Argyropoulous. Studies in Conservation . 2001
  • 3M.R.Gilberg,N.J.Seeley. Studies in Conservation . 1981
  • 4S.Turgoose.National Maritime Museum Monographs and Reports[]..1982
  • 5L.Y.Li,C.L.Page. Corrosion Science . 2000
  • 6L.Y.Li,C.L.Page.Computational Modelling of Concrete Structures[]..1998
  • 7S.Selwyn,,P.J.Sirois,V.Argyropoulous. Studies in Conservation . 1998
  • 8.
  • 9F. Dalard,,Y. Gourbeyre,,C. Degrigny.Chloride removal from archaeological cast ironby pulsating current[].Studies in Conservation.2002
  • 10Gil MLA,Santos A,Bethencourt M,et al.Using of X-raydiffraction and other techniques to analyze the phase transfor-mation induced in archaeological cast iron after its stabilizationby the electrolytic method[].Analytica Chimica Acta.2003

同被引文献51

引证文献3

二级引证文献18

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部