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Recovery of Iron-Nickel Alloy Etching Waste Solution in Pilot Scale

파일럿 규모에서 철-니켈 합금 에칭폐액 재생

  • Received : 2017.02.27
  • Accepted : 2017.07.04
  • Published : 2017.12.31

Abstract

In this study, we have developed a process for separating and recovering Ni and Fe in solution through a new solvent instead of TBP and Alamine336, which are solvents used in the conventional solvent extraction method. Experimental conditions were optimized through lab test and a $10L\;h^{-1}$ pilot plant was constructed for commercialization. In addition, the process data for mass production were obtained through pilot experiment and it was confirmed that there is no problem in product quality that can be used through the corrosion test of ferric chloride.

본 연구에서는 염화제이철의 재생공정으로 기존 용매추출법에서 사용하고 있는 용매인 TBP 및 Alamine336 대신에 새로운 용매를 통해 용액 내에 존재하는 Ni과 Fe를 분리 및 회수하는 공정을 개발하였다. Lab 실험을 통하여 실험조건을 최적화하였으며, 이를 바탕으로 상업화를 위한 $10L\;h^{-1}$급 파일럿 설비를 구축하였다. 또한 파일럿 실험을 통하여 양산을 위한 공정 데이터를 확보하였으며, 제조된 염화제이철의 부식실험을 통하여 사용할 수 있는 제품 품질에 문제없음을 확인하였다.

Keywords

References

  1. Lee, K. J., "Separation of $FeCl_3$ from Spent Etching Solutions Containing Nickel by Solvent Extraction," M.S. Dissertation, University of Mokpo, Mokpo (2003).
  2. Lee, H. M., Park, M., Park, G. H., and Park, C., "Wet Etching of Stainless Steel Foil by Aqueous Ferric Chloride Solution," Korean Chem. Eng. Res., 50(2), 211-216 (2012). https://doi.org/10.9713/kcer.2012.50.2.211
  3. Allen, D. M., and Almond, H. J. A., "Characterisation of Aquous Ferric Chloride Etchants Used in Industrial Photochemical Machining," J. Mater. Proc. Technol., 149, 238-245 (2004). https://doi.org/10.1016/j.jmatprotec.2004.02.044
  4. Allen, D. M., and Ler, L. T., "Increasing Utilisation Efficiency of Ferric Chloride Etchant in Industrial Photochemical Machining," J. Environ. Monit., 1, 103-108 (1999). https://doi.org/10.1039/a808158a
  5. Lee, H. Y., Ahn, E. S., Park, C. H., and Tak, Y. S., "Regenration of Waste Ferric Chloride Etchant Using HCl and $H_2O_2$," Appl. Chem. Eng., 24(1), 67-71 (2013).
  6. Yoo, K. G., Jha, M. K., Kim, M. S., Yoo, J. M., Jeong, J. K., and Lee, J. C., "Separation of Ni and Fe from $H_2SO_4$ Leaching Solution of Scrapped Fe-Ni Alloy," J. Korean Inst. Resour. Recycl., 17(1), 80-87 (2008).
  7. Ahn, J. W., and Yang, J. W., "Solvent Extraction for the Recovery of Copper from Hydrochloric Etching Solutions by Alamine336," J. Korean Inst. Resour. Recycl., 6(3), 9-14 (1997).
  8. Lee, M. S., and Kim M. S., "Recovery of Nickel Metal from the Spent $FeCl_3$ Etching Solution by Solvent Extraction and Chemical Reduction," J. Korean Inst. Resour. Recycl., 14(3), 48-54 (2005).
  9. Lee, M. S., and Chae, J. G., "Stripping of Ferric Chloride by Mineral Acid Solution from the Loaded Alamine336 Phase," J. Korean Inst. Resour. Recycl., 17(5), 37-43 (2008).
  10. Lee, M. S., and Kwak, Y. K., "Comparison of Solvent Extraction of Iron(III) from Chloride Solution between Alamine336 and TBP by Using Extraction Isotherm," J. Korean Inst. Resour. Recycl., 17(3), 29-34 (2008).
  11. Park, M. Y., Kim, Y. W., Park, J. H., and Park, C. H., " Separation of Iron and Nickel from Heavily Concentrated Aqueous Ferric Chloride Solution by Liquid-liquid Extraction," Clean Technol., 13(4), 274-280 (2007).
  12. Lee ,M. S., and Lee, K. J., "Solvent Extraction Equilibria of $FeCl_3$ with Alamine336 Salt," J. Korean Inst. Met. & Mater., 42(2), 205-211 (2004).
  13. Perry, R. H., and Don, W. G., "Perry's Chemical Engineers Handbook," McGraw-Hill Professional, 15-29 (1999).
  14. Park, I. J., Kim, D. W., Kim, G. H., Chae, H. J., Lee, S. W., and Jung, H. C., "The Optimization of Solvent Extraction Process of Iron Chloride Etching Waste Solution," Clean Technol., 23(3), 279-285 (2017).