Anodic Dissolution Behaviour of Tungsten Carbide Scraps in Ammoniacal Media

Author:

Katiyar Prvan Kumar1,Randhawa Navneet Singh2,Hait Jhumki2,Jana Ranajit Kumar2,Singh K.K.1,Mankhand T.R.1

Affiliation:

1. IIT (BHU)

2. CSIR-National Metallurgical Laboratory

Abstract

In the present paper, potentiodynamic studies of WC scrap have been carried out as these studies give better idea about the anodic dissolution behaviour of the scrap material to recover the metal values. However, it has been seen that anodic passivation retards the dissolution of the scrap and adversely affects the recovery of metals. To minimize the passivity and to increase the anodic dissolution, some chemicals are often used as additives. Two different electrolytes namely hydrochloric acid and aqueous ammonia at varying concentrations had been employed for the above studies. The additives citric acid and oxalic acid were added to the acidic electrolyte whereas ammonium chloride, ammonium carbonate and ammonium sulphate were added in different concentration to the ammoniacal electrolyte. The studies revealed that 2% citric acid in 1N HCl was the optimum to achieve maximum anodic dissolution (current) of WC scrap. On the other hand, 5% NH4Cl was found suitable to obtain maximum anodic dissolution (current) in the ammoniacal (150 g/L) medium. The potentiodynamic studies were followed by the actual electrodissolution experiments in an electrolytic cell with the help of a rectifier. The W and Co recoveries were encouraging.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference6 articles.

1. B. S. Luyckx, C. Osborne, L. A. Cornish, D. Whitefield, Fine grained WC-VC-Co hard metal, Powder Metallurgy 39 (1996) 210-212.

2. S.W.H. Yih, C.T. Wang, Tungsten: Sources, Metallurgy, Properties, and Applications, Plenum Press, New York, 1979, p.385.

3. S.W.H. Yih, C.T. Wang, Tungsten: Sources, Metallurgy, Properties, and Applications, Plenum Press, New York, 1979, p.125.

4. Kieffer, E.F. Baroch, In: Proceedings Extractive Metallurgy of Refractory Metal H.Y. Sohn, O.N. Carlson and J.T. Smith (Eds. ), 110th AIME Annual Meeting, Chicago, (1981), p.273.

5. Vanderpool and T. K. Kim, U. S. Patent 5, 021, 133, (1991).

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