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<article article-type="research-article" dtd-version="1.3" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xml:lang="ru"><front><journal-meta><journal-id journal-id-type="publisher-id">blackmet</journal-id><journal-title-group><journal-title xml:lang="ru">Известия высших учебных заведений. Черная Металлургия</journal-title><trans-title-group xml:lang="en"><trans-title>Izvestiya. Ferrous Metallurgy</trans-title></trans-title-group></journal-title-group><issn pub-type="ppub">0368-0797</issn><issn pub-type="epub">2410-2091</issn><publisher><publisher-name>National University of Science and Technology "MISIS"</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.17073/0368-0797-2017-4-268-275</article-id><article-id custom-type="elpub" pub-id-type="custom">blackmet-1072</article-id><article-categories><subj-group subj-group-type="heading"><subject>Research Article</subject></subj-group><subj-group subj-group-type="section-heading" xml:lang="ru"><subject>ЭКОЛОГИЯ И РАЦИОНАЛЬНОЕ ПРИРОДОПОЛЬЗОВАНИЕ</subject></subj-group><subj-group subj-group-type="section-heading" xml:lang="en"><subject>ECOLOGY AND RATIONAL USE OF NATURAL RESOURCES</subject></subj-group></article-categories><title-group><article-title>ТЕХНОЛОГИЧЕСКИЕ ОСНОВЫ АДСОРБЦИОННОГО ОБЕЗВОЖИВАНИЯ И ТЕРМОХИМИЧЕСКОГО ОКУСКОВАНИЯ КОНВЕРТЕРНЫХ ШЛАМОВ</article-title><trans-title-group xml:lang="en"><trans-title>TECHNOLOGICAL BASICS OF ADSORPTION DEHYDRATION AND THERMOCHEMICAL SINTERING OF BOF SLUDGE</trans-title></trans-title-group></title-group><contrib-group><contrib contrib-type="author" corresp="yes"><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Кузнецов</surname><given-names>С. Н.</given-names></name><name name-style="western" xml:lang="en"><surname>Kuznetsov</surname><given-names>S. N.</given-names></name></name-alternatives><bio xml:lang="ru"><p>соискатель ученой степени кандидата наук кафедры черных металлов</p></bio><bio xml:lang="en"><p>Candidates for a degree of Сand. Sci. (Eng.), the Chair of Ferrous Metallurgy</p></bio><email xlink:type="simple">mchmsis@mail.ru</email><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Школлер</surname><given-names>М. Б.</given-names></name><name name-style="western" xml:lang="en"><surname>Shkoller</surname><given-names>M. B.</given-names></name></name-alternatives><bio xml:lang="ru"><p>д.т.н., профессор кафедры теплоэнергетики и экологии</p></bio><bio xml:lang="en"><p>Dr. Sci. (Eng.), Professor of the Chair “Thermal Power and Ecology”</p></bio><email xlink:type="simple">chkoller@mail.ru</email><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Протопопов</surname><given-names>Е. В.</given-names></name><name name-style="western" xml:lang="en"><surname>Protopopov</surname><given-names>E. V.</given-names></name></name-alternatives><bio xml:lang="ru"><p>д.т.н., профессор кафедры металлургии черных металлов</p></bio><bio xml:lang="en"><p>Dr. Sci. (Eng.), Professor of the Chair of Ferrous Metallurgy, Rector (</p></bio><email xlink:type="simple">protopopov@sibsiu.ru</email><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Темлянцев</surname><given-names>М. В.</given-names></name><name name-style="western" xml:lang="en"><surname>Temlyantsev</surname><given-names>M. V.</given-names></name></name-alternatives><bio xml:lang="ru"><p>д.т.н., профессор кафедры теплоэнергетики и экологии</p></bio><bio xml:lang="en"><p>Dr. Sci. (Eng.), Professor of the Chair “Thermal Power and Ecology”, Vice-Rector for Research and Innovations</p></bio><email xlink:type="simple">uchebn_otdel@sibsiu.ru</email><xref ref-type="aff" rid="aff-1"/></contrib><contrib contrib-type="author" corresp="yes"><name-alternatives><name name-style="eastern" xml:lang="ru"><surname>Фейлер</surname><given-names>С. В.</given-names></name><name name-style="western" xml:lang="en"><surname>Feiler</surname><given-names>S. V.</given-names></name></name-alternatives><bio xml:lang="ru"><p>к.т.н., доцент, и.о. заведующего кафедрой металлургии черных металлов</p></bio><bio xml:lang="en"><p>Cand. Sci. (Eng.), Assist. Professor, Acting Head of the Chair of Ferrous Metallurgy</p></bio><email xlink:type="simple">feyler@rdtc.ru</email><xref ref-type="aff" rid="aff-1"/></contrib></contrib-group><aff-alternatives id="aff-1"><aff xml:lang="ru"><institution>Сибирский государственный индустриальный университет</institution><country>Россия</country></aff><aff xml:lang="en"><institution>Siberian State Industrial University, Novokuznetsk</institution><country>Russian Federation</country></aff></aff-alternatives><pub-date pub-type="collection"><year>2017</year></pub-date><pub-date pub-type="epub"><day>27</day><month>05</month><year>2017</year></pub-date><volume>60</volume><issue>4</issue><fpage>268</fpage><lpage>275</lpage><permissions><copyright-statement>Copyright &amp;#x00A9; Кузнецов С.Н., Школлер М.Б., Протопопов Е.В., Темлянцев М.В., Фейлер С.В., 2017</copyright-statement><copyright-year>2017</copyright-year><copyright-holder xml:lang="ru">Кузнецов С.Н., Школлер М.Б., Протопопов Е.В., Темлянцев М.В., Фейлер С.В.</copyright-holder><copyright-holder xml:lang="en">Kuznetsov S.N., Shkoller M.B., Protopopov E.V., Temlyantsev M.V., Feiler S.V.</copyright-holder><license xml:lang="ru" license-type="creative-commons-attribution" xlink:href="https://creativecommons.org/licenses/by/4.0/" xlink:type="simple"><license-p>Данная работа распространяется под лицензией Creative Commons Attribution 4.0.</license-p></license><license xml:lang="en" license-type="creative-commons-attribution" xlink:href="https://creativecommons.org/licenses/by/4.0/" xlink:type="simple"><license-p>This work is licensed under a Creative Commons Attribution 4.0 License.</license-p></license></permissions><self-uri xlink:href="https://fermet.misis.ru/jour/article/view/1072">https://fermet.misis.ru/jour/article/view/1072</self-uri><abstract><p>Общемировой объем стали, выплавленной в 2016 г., превысил 1600 млн. т, из них более 1200 млн. т стали выплавлено в агрегатах конвертерного типа. В зависимости от ряда технологических факторов в процессе выплавки 1 т стали образуется до 25 кг мелкодисперсной пыли, которая содержит до 65 % железа в форме оксидов. Рециклинг отходов, образующихся в металлургическом производстве, в два – три раза ниже затрат на подготовку концентратов, получаемых из природного сырья и минералов. В условиях решения проблемы рециклинга конвертерных шламов разработан и совершенствуется способ кондиционирования отходов высокой влажности, включающий их нетермическое адсорбционное обезвоживание и последующее термохимическое окускование. В работе в качестве адсорбента использован твердый остаток пиролиза бурого угля – мелкозернистый буроугольный полукокс, производимый на опытно-промышленной установке разреза Березовский-1. Полученные образцы из буроугольного полукокса обладают высокоразвитой и пористой структурой и, соответственно, высокой адсорбционной способностью и хорошими энергетическими свойствами. Гранулометрический состав буроугольного полукокса практически идентичен гранулометрическому составу шлама. В то же время плотность частиц буроугольного полукокса даже при условии заполнения всего пористого пространства адсорбированной влагой более чем в 2,5 раза ниже плотности частиц конвертерного шлама. При смешивании буроугольного полукокса и конвертерного шлама полукокс поглощает влагу, получаемая смесь имеет высокую сыпучесть, в то же время адсорбированная в порах влага переходит в связанное состояние и становится активным участником окислительно-восстановительных процессов. В результате экспериментов получен новый материал, содержащий до 39 % Feмет и до 49 % С. Полученные в работе результаты позволили разработать эффективную технологию утилизации конвертерных шламов с получением феррококса, пригодного для использования в доменных и сталеплавильных агрегатах в качестве теплоносителя и восстановителя. Предлагаемая технология обходится без сложного механотермического обезвоживания и брикетирования со связующим.</p><p> </p></abstract><trans-abstract xml:lang="en"><p>The global volume of steel smelted in 2016 exceeded 1600 million tons, of which more than 1200 million tons of steel were smelted in the units of converter type. Depending on the number of technological factors, up to 25 kg of fi ne dust forms in the process of smelting of 1 ton of steel, which contains up to 65 % of iron in the form of oxides. The recycling organization of waste generated in metallurgical production makes it possible to reduce production costs by two to three times in comparison with the use of concentrates obtained from natural raw materials and minerals. In the context of solving the recycling problem of converter sludge, the method for conditioning high-moisture wastes was developed and improved, including their non-thermal adsorption dehydration and subsequent thermo-chemical agglomeration. The solid residue of brown coal pyrolysis is used as the adsorbent – a fi ne-grained brown coal semi-coke produced at the pilot plant of the open-pit mine Berezovsky-1. The obtained samples from brown coal char are of highly developed and porous structure and, accordingly, high adsorption capacity and energy properties. The granulo metric composition of the brown coal semi-coke is almost identical to the granulometric composition of the slurry. At the same time, the density of the brown coal semi-coke particles, even if the entire porous space is fi lled with adsorbed moisture, is more than 2.5 times lower than the density of the converter slurry particles. When mixing brown coal semi-coke and converter slurry, the former absorbs moisture, giving the mixture a high looseness, while at the same time the moisture adsorbed in the pores transforms into a bound state and becomes an active participant in oxidation-reduction processes. As a result of the experiments, the new material was obtained – “ferrocoke” containing up to 39 % of Femet and up to 49 % of C. The results obtained in the work made it possible to develop an effi cient technology for the utilization of converter sludge with production of a ferrocoke suitable for use in blast-furnaces and steelmaking plants as a coolant and reducing agent, without a complicated mechanical-thermal dehydration and briquetting with a binder.</p><p> </p></trans-abstract><kwd-group xml:lang="ru"><kwd>конвертер</kwd><kwd>феррококс</kwd><kwd>буроугольный полукокс</kwd><kwd>шлам</kwd><kwd>адсорбция</kwd><kwd>восстановление</kwd><kwd>теплоноситель</kwd><kwd>рециклинг</kwd></kwd-group><kwd-group xml:lang="en"><kwd>converter</kwd><kwd>ferrocoke</kwd><kwd>brown coal semi-coke</kwd><kwd>sludge</kwd><kwd>adsorption</kwd><kwd>reduction</kwd><kwd>coolant</kwd><kwd>recycling</kwd></kwd-group></article-meta></front><back><ref-list><title>References</title><ref id="cit1"><label>1</label><citation-alternatives><mixed-citation xml:lang="ru">Protopopov E.V., Feyler S.V. 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