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Hydrometallurgical Application of a Novel Porous Resin

Published online by Cambridge University Press:  15 February 2011

Peter D. Unger
Affiliation:
AlliedSignal, Inc., Research and Technology, Morristown, NJ 07962
Ronald P. Rohrbach
Affiliation:
AlliedSignal, Inc., Research and Technology, Morristown, NJ 07962
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Abstract

The technology to manufacture rigid, highly porous materials of very low density that are suitable for use in a wide range of industrial applications has recently been developed in this laboratory. These materials, derived from naturally occurring polymers, have many useful physical characteristics including very large pore volume, pore size distribution in a useful range, and high surface area. These characteristicsw, hen combinedw ith their robust mechanicals trength, make them potentially useful as support matrices for various complexing agents. One demonstrated application of this material is as a polymeric carrierfo r selective liquid metal extractants in hydrometallurgicalp rocesses. We have successfully impregnated our porous matrix with several selective metal extractants, and demonstrated retention of the basic metal binding properties of the immobilized agent. Results of bench scale pilot studies using a copper selective impregnated resin indicate excellent capacity, and good selectivity and extraction/elution kinetics.

Type
Research Article
Copyright
Copyright © Materials Research Society 1994

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References

REFERENCES

1. Flett, D. S., Trans. Inst. Min. Metal., 83, C30 (1974).Google Scholar
2. Warshawsky, A., S. Afr. Patent Appl., 71/5637, 23/8/71(1971).Google Scholar
3. Warshawsky, A., Trans. Inst. Min. Metal., 83, CIO1 (1974).Google Scholar
4. Warshawsky, A., in Ion Exchange and Solvent Extraction, Vol.8, edited by Marinsky, J. A. and Marcus, Y. (Marcel Dekker, Inc., New York, 1981), Ch. 3, p. 229.Google Scholar
5. Kroebel, R. and Meyer, A., W. German Patent AppL., 2, 162,951, 18/12/71(1971).Google Scholar
6. Kroebel, R. and Meyer, A., in Proc. Int. Solvent Extr. Conf., ISEC-74, Lyon, paper 56, (1974).Google Scholar
7. Kauczor, H. W. and Meyer, A., Hydrometallurgy, 3, 65 (1978).CrossRefGoogle Scholar
8. Rohrbach, R. P. and Unger, P. D., Companion Paper in this Volume, (1993).Google Scholar