By Tao Jiang, Jiann-Yang Hwang, Patrick Masset, Onuralp Yucel, Rafael Padilla, Guifeng Zhou
Proceedings of a symposium backed by way of the Pyrometallurgy Committee and the power Committee of the Extraction and Processing department of TMS (The Minerals, Metals & fabrics Society)
Held through the TMS 2012 Annual assembly & Exhibition Orlando, Florida, USA
March 11-15, 2012
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Additional info for 3rd International Symposium on High-Temperature Metallurgical Processing
Upper ring half open f. Lower ring half open Figure 8: Measured NO x emissions for the different ring configurations. NOx-emissions are given in grams/hour. Ill 39 Discussion Both the level and the difference of the different ring constellations are surprisingly high. Particularly interesting are the results showing that the NOx level rise with a decreasing amount of air let into the furnace. This shows the ability to form NOx even at a low supply of N2 and 0 2 . One explanation might be that at a low inflow of air the overall velocity field through the hood is reduced, forming "hot spots" of air heated by the SiO combustion and still containing enough N2 and 0 2 to form NOx.
The slider can be swung-out laterally for the plate exchange. For the change of the well block, the whole slide gate unit can be laterally swung away. Short down times of the furnace and consequential savings on energy are a result of all the above. Description of the Mechanical Unit The COP FLOW slide gate is a two plate, linear, hydraulically driven system. There are three different sizes available, CF60, CF80 and CF100. The number indicates the maximum tap hole diameter in mm. The bottom and slider refractory plate are identical in shape and size and can be exchanged in a very short time.
C. Abbruzzese, "Percolation leaching of manganese ore by aqueous sulfur dioxide," Hydrometallurgy, 25(1990), 85-97. 10. G. , "The production of manganese dioxide from manganese ores of some deposits of the Siberianregion of Russia," Hydrometallurgy, 56(2000), 1-11. 11. , "Simultaneous leaching of manganese and silver from manganese-silver ores at room temperature," Hydrometallurgy, 69(2003), 177-186. 12. C. , "Biogical and chemical processing of low-grade manganese ores," Minerals Engineering, 3(4) (1990), 307-318.
3rd International Symposium on High-Temperature Metallurgical Processing by Tao Jiang, Jiann-Yang Hwang, Patrick Masset, Onuralp Yucel, Rafael Padilla, Guifeng Zhou