Exergo-Ecological Assessment Of Auxiliary Fuel Injection Into Blast-Furnace

Metallurgy represents complex technological chain supplied with different kinds of primary resources. Iron metallurgy based on blast-furnace process, dominates in world steel production. Metallurgical coke is the basic fuel in this case. Its production is connected with several environmental disadva...

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Veröffentlicht in:Archives of metallurgy and materials 2015-06, Vol.60 (2), p.711-719
Hauptverfasser: Stanek, W., Szega, M., Blacha, L., Niesler, M., Gawron, M.
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Sprache:eng
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Zusammenfassung:Metallurgy represents complex technological chain supplied with different kinds of primary resources. Iron metallurgy based on blast-furnace process, dominates in world steel production. Metallurgical coke is the basic fuel in this case. Its production is connected with several environmental disadvantageous impacts. One of them is the extended production chain from primary energy to final energy. The reduction of coke consumption in the process can be achieved e.g. by injection of auxiliary fuels or increasing the thermal parameters in the process. In present injection of pulverised coal dominates while recirculation of top-gas seems to be future technology. However, the latter one requires the CO removal that additionally extended the production chain. The evaluation of resources management in complex energy-technological systems required application of advanced method based on thermodynamics. In the paper the system exergo-ecological assessment of pulverised coal injection into blast-furnace and top-gas recirculation has been applied. As a comparative criterion the thermo-ecological cost has been proposed.
ISSN:2300-1909
1733-3490
2300-1909
DOI:10.1515/amm-2015-0196