Magnesium Technology 2000 : proceedings of the symposium by Howard I Kaplan

By Howard I Kaplan

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M. Charron2; Dr. J. Peacey1; Dr. E. Chin2, Mr. G. , 125 Chemin Pinacle, Danville, Quebec, Canada, JOA 1A0 Abstract Noranda will become a major producer of magnesium following the commissioning of its 63,000 tpa Magnola Plant in 2000. The Magnola Plant will utilise new process technology to extract magnesium from serpentine mine tailings. 's Technology Centre through to operation of the Demonstration Plant in 1996 & 1997 and finally to design of the full scale Magnola Plant. In particular, this paper will present some of the major conclusions and improvements derived from the Demonstration Plant stage and will evaluate their impact on the development of the overall Magnola Process.

Tm 2 0 3 (d). Dy 2 0 3 (e). Graphite in NaCl-KCl melts at 700°C Instrument used was Model 273 potentiostat/galvaniostat of HG&G PARe. Controlling and sampling was performed via M270 electrochemical research software. Current interruption signal was produced by Model 273. Lecroy LSI40 Digital Oscilloscope , whose Bandwidth is lOOMhz and Sample Rate 100MS/S, was used to capture the wave variation at the instant of current interruption. 25 Overpotential / V vs Ag/AgCl Figure. 3. Polarization curves of oxide electrodes (a).

The plant will be located in Danville, Quebec, adjacent to the source of the Serpentine feed material. Site construction commenced in April 1998. At the time of writing this paper construction was on schedule for the first magnesium metal to be produced in the second half of 2000. During initial operation, problems were encountered with (i) blocking of the ducting between the chlorinator and the thermal quench unit, and (ii) significantly higher levels of infiltration air in the gas than expected.

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