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Coking of coal blends using high volatile coals with poor coking abilities to produce a high quality coke for blast furnace application can be achieved by compacting the coal blend prior to the carbonization process.
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Chapter 15 considers the future trends in furnace control, materials of construction, furnace design, furnace applications and emission limits.
This modeling approach is optimized for full-furnace application to facilitate the design process.
It reviews current trends in the selection of furnaces, the application of filler materials, the assembly of components and the control of brazing operations.
Eddy currents induced in a power transformer core represent lost power and are undesirable; eddy currents used to produce heat for cooking or for a metallurgical furnace represent useful applications of the phenomenon.
The purpose of this paper is to improve and apply a multivariable advanced control structure on the basis of fuzzy logic technique for two flow tubular furnace having widespread applications in petroleum refinery industries.
The remaining three parts deal with the electric arc and arc-carbons of various forms, electric furnaces and their applications, and carbide of calcium and acetylene.
The potential use of solar furnaces for industrial applications has been an attractive idea in the last years due to their high flux density and the accurate control which satisfies the productive industry requirements and facilitates the implementation of the solar technology within the industrial sector.
The simultaneous application of electric arc furnace slag and ladle furnace white slag, in substitution of natural fine aggregate in masonry mortars, is presented with the principal objective of achieving mixes that show a similar performance to conventional mortars.
However, the presence of unstable constituents like free CaO limits the applications of electric furnace slag, which is stabilized by the aging process.
Yet another variation, which has found wide application in top-blown furnaces, is the injection of inert gases into the molten bath through permeable blocks in the bottom of the vessel for the purpose of enhancing chemical reactions.
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