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Efficient way to use of non-coking coals in non-recovery cokemaking process

Published online by Cambridge University Press:  26 June 2014

H.P. Tiwari
Affiliation:
Researcher, Raw Material & Coke Making Research, R&D, Tata Steel Ltd., 831001 Jamshedpur, Jharkhand, India. e-mail: [email protected]
P.K. Banerjee
Affiliation:
Chief, Raw Material & Coke Making Research, R&D, Tata Steel Ltd., 831001 Jamshedpur, Jharkhand, India; e-mail: [email protected]
V.K. Saxena
Affiliation:
Head, Department of Chemical Engineering, ISM, Dhanbad, India; e-mail: [email protected]
R. Sharma
Affiliation:
Principal Researcher, Raw Material & Coke Making Research, R&D, Tata Steel Ltd., 831001 Jamshedpur, Jharkhand, India; e-mail: [email protected]
S.K. Haldar
Affiliation:
Chief, Coke Plants, Tata Steel Ltd., 831001 Jamshedpur, Jharkhand, India; e-mail: [email protected]
S. Verma
Affiliation:
GM, Hooghly Met Coke (HMC) Division, Tata Steel Ltd., 831001 Jamshedpur, Jharkhand, India; e-mail: [email protected]
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Abstract

Maximization of non-coking coal in coal blend is eloquent interest among researchers incoke making throughout the world. To maximize the non-coking coals in coal blend with thescarce and expensive coking coals is an essential practice in the iron and steel industry.The fundamental aspect of the coal blending theory of low value coals to produce goodquality of metallurgical coke in non-recovery coke making process was investigated in thisstudy by using the composite coking potential technique. The implementation of thetechnique has yielded use of up to 25% pulverized coal injection, 20% raw petroleum cokeas a component of coal blend. Results show that the coal blend having composite cokingpotential value of \hbox{$\geqslant $}4.8 is desired to achieve the targeted coke strengthafter reaction of \hbox{$\geqslant $}65.

Type
Research Article
Copyright
© EDP Sciences 2014

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