Home Book Archive > Extraction Processing > Download e-book for kindle: 4th International Symposium on High Temperature by Tao Jiang,Jiann-Yang Hwang,Phillip J. Mackey, et al.John

Download e-book for kindle: 4th International Symposium on High Temperature by Tao Jiang,Jiann-Yang Hwang,Phillip J. Mackey, et al.John

By Tao Jiang,Jiann-Yang Hwang,Phillip J. Mackey, et al.John Wiley & Sons, Inc.|Wiley||Wiley-TMSAdult NonfictionTechnologyLanguage(s): EnglishOn sale date: 01.03.2013Street date: 21.02.2013Preview

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Extra info for 4th International Symposium on High Temperature Metallurgical Processing

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In this present study, the silicon carbide crucible was selected as the auxiliary heating medium. The silicon carbide has upper dielectric loss, and can effectively absorb ability in the microwave heating processing' '. Thermogravimetric Analysis The sample was placed in the thermal analyzer, and heated with 10°C/min. The results were shown in Figure 2. 29 Figure2 The TG-DTA curves of ammonium tetramolybdate thermal decomposition at heating rate of 10°C/min The Figure 2 showed that the variation of TG-DTG curves of ammonium tetramolybdate thermal decomposition at heating rate is 10°C/min.

Bale, P. Chartrand, S. A. Decterov, G. Eriksson, K. Hack, R. B. Mahfoud, J. D. Pelton and S. Petersen, 2002, FactSage, Ecole Polytechnique, Montre al. com/. 10 4th International Symposium on High-Temperature Metallurgical Processing Edited by: Tao Jiang, Jiann-YangHwang, Phillip J. Mackey, Onuralp Yucel, and Guifeng Zhou TMS (The Minerals, Metals & Materials Society), 2013 A NOVEL VACUUM ALUMINOTHERMIC REDUCTION LITHIUM PROCESS Yuezhong Di, Zhihui Wang, Shaohu Tao, Naixiang Feng School of Materials and Metallurgy, Northeastern University, Shenyang, Liaoning 110819, China Keywords: Vacuum, Aluminothermic reduction, Lithium, Leaching Abstract A novel vacuum aluminothermic reduction lithium process was developed in present work which used lithium carbonate, alumina and calcium oxide as raw material.

40 In a flash furnace, molten copper is blown through atomizers with preheated air (250 °C) to oxidize the copper to fine particulate CuO. This highly exothermic reaction provides significant potential for energy capture. It is understood that molten CuO is highly corrosive, so following flash oxidation cool air is introduced to solidify the CuO. The CuO is therefore cooled down to 600 °C before it exits as a fine particulate and is recycled back at temperature to the first furnace. Looping of this material in this system at temperature and at high processing speed enhances the overall energy balance of the process.

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4th International Symposium on High Temperature Metallurgical Processing by Tao Jiang,Jiann-Yang Hwang,Phillip J. Mackey, et al.John Wiley & Sons, Inc.|Wiley||Wiley-TMSAdult NonfictionTechnologyLanguage(s): EnglishOn sale date: 01.03.2013Street date: 21.02.2013Preview


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