Standard

Thermal reduction of Bakal siderite ore. / Melamud, S. G.; Shatsillo, V. V.; Dudchuk, I. A. et al.
In: Steel in Translation, Vol. 40, No. 12, 01.12.2010, p. 1061-1064.

Research output: Contribution to journalArticlepeer-review

Harvard

Melamud, SG, Shatsillo, VV, Dudchuk, IA, Bratygin, EV & Yur’ev, BP 2010, 'Thermal reduction of Bakal siderite ore', Steel in Translation, vol. 40, no. 12, pp. 1061-1064. https://doi.org/10.3103/S0967091210120107

APA

Vancouver

Melamud SG, Shatsillo VV, Dudchuk IA, Bratygin EV, Yur’ev BP. Thermal reduction of Bakal siderite ore. Steel in Translation. 2010 Dec 1;40(12):1061-1064. doi: 10.3103/S0967091210120107

Author

Melamud, S. G. ; Shatsillo, V. V. ; Dudchuk, I. A. et al. / Thermal reduction of Bakal siderite ore. In: Steel in Translation. 2010 ; Vol. 40, No. 12. pp. 1061-1064.

BibTeX

@article{058a3a5fd01d4b1099a35726ec6a3162,
title = "Thermal reduction of Bakal siderite ore",
abstract = "A pyrometallurgical enrichment technology for siderite ore has been developed. By means of an inexpensive and environmentally benign technology for X-ray separation, a high-quality enriched product may be obtained. Analysis of options for producing reduced ore permits the identification of a thermal-reduction technology that is the most promising and is also relatively inexpensive. Once implemented, this approach will permit the processing of siderite ore at a rate of 2. 5 million t/yr and the production of sponge iron in quantities of around 0. 5 million t/yr after modernization of the mining and enrichment system within OAO Bakal'skoe Rudoupravlenie, without the need for the preliminary manufacture of oxidized pellets or the construction of expensive smelters.",
author = "Melamud, {S. G.} and Shatsillo, {V. V.} and Dudchuk, {I. A.} and Bratygin, {E. V.} and Yur{\textquoteright}ev, {B. P.}",
year = "2010",
month = dec,
day = "1",
doi = "10.3103/S0967091210120107",
language = "English",
volume = "40",
pages = "1061--1064",
journal = "Steel in Translation",
issn = "0967-0912",
publisher = "Allerton Press Inc.",
number = "12",

}

RIS

TY - JOUR

T1 - Thermal reduction of Bakal siderite ore

AU - Melamud, S. G.

AU - Shatsillo, V. V.

AU - Dudchuk, I. A.

AU - Bratygin, E. V.

AU - Yur’ev, B. P.

PY - 2010/12/1

Y1 - 2010/12/1

N2 - A pyrometallurgical enrichment technology for siderite ore has been developed. By means of an inexpensive and environmentally benign technology for X-ray separation, a high-quality enriched product may be obtained. Analysis of options for producing reduced ore permits the identification of a thermal-reduction technology that is the most promising and is also relatively inexpensive. Once implemented, this approach will permit the processing of siderite ore at a rate of 2. 5 million t/yr and the production of sponge iron in quantities of around 0. 5 million t/yr after modernization of the mining and enrichment system within OAO Bakal'skoe Rudoupravlenie, without the need for the preliminary manufacture of oxidized pellets or the construction of expensive smelters.

AB - A pyrometallurgical enrichment technology for siderite ore has been developed. By means of an inexpensive and environmentally benign technology for X-ray separation, a high-quality enriched product may be obtained. Analysis of options for producing reduced ore permits the identification of a thermal-reduction technology that is the most promising and is also relatively inexpensive. Once implemented, this approach will permit the processing of siderite ore at a rate of 2. 5 million t/yr and the production of sponge iron in quantities of around 0. 5 million t/yr after modernization of the mining and enrichment system within OAO Bakal'skoe Rudoupravlenie, without the need for the preliminary manufacture of oxidized pellets or the construction of expensive smelters.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=79955112210

U2 - 10.3103/S0967091210120107

DO - 10.3103/S0967091210120107

M3 - Article

VL - 40

SP - 1061

EP - 1064

JO - Steel in Translation

JF - Steel in Translation

SN - 0967-0912

IS - 12

ER -

ID: 37965035