Pesquisa

Edição
Título
Autores
Gas Content of Kuznetsk Basin Bituminous Coal
Kozyreva E., Shinkevich M.
Optimizing the Removal of Ammonia from Coke-Oven Gas by the Circulatory Phosphate Method
Kolmakov N., Protopopov V., Korobkov A.
System for Final Cooling of Coke-Oven Gas and Byproduct Extraction at Durgapur Steel Plant
Mialitsyn A., Ekgauz V., Pokryshkin K., Dementyeva N., Zolotukhina T., Todi R., Guin A., Subrahmanya U.
New Development in the Dry Quenching of Coke
Danilin E.
Disposal of Pipeline Residues from Coke-Oven Gas Transportation
Ermolova N., Pavlovich L., Strakhov V.
Removal of naphthalene and tar from coke–oven gas in primary cooling and condensation
Nazarov V.
Design Innovations in the Chemical Shop of Coke Plants
Kazak L., Kofanova V.
Influence of Inert-Gas Pressure on the Sorptional Methane Capacity of Kuznetsk Basin Coking Coal
Kozyreva E., Nepeina E.
Optimal Oven Heating of Coke Cake. 2. Selection of the Inert Gas
Zublev D., Barsky V., Kravchenko A.
Influence of Temperature on the Methane Content of Kuznetsk Basin Coking Coal
Kozyreva E., Nepeina E., Shinkevich M.
Determining the air excess in the heating of coke furnaces. 2. Sampling and analysis
Zublev D., Barsky V.
Study on the Influence Factor of Coke Pulverization Rate and Its Effect on Operating Index of Large Blast Furnace
Wencheng Zhang , Zhang X., Zheng M.
Selective Recovery of Components of Coke-Oven Gas in the Benzene Department of a Coke Plant
Bannikov L., Zelenskiy V., Nesterenko S.
Underground gasification of coal and lignite
Proshunin Y., Poturilov A.
Operation of the extreme heating channels in coke batteries
Zublev D., Barsky V., Kravchenko A.
Reducing environmental impact on the basis of risk calculations
Pavlovich L., Osokina A., Surzhikov D., Lupenko V.
Diversification at Giprokoks: New Products from Carbon-Bearing Materials
Rudyka V., Soloviov M., Tsymbal A.
3D Design in Developing a Commercial Technology for Ammonium-Sulfate Production at PAO NLMK
Kudriavtsev E., Prisniak I., Yarmoshik A., Kazak L., Manekina N., Kryklya V.
Effectiveness of the Desulfurization of Coke-Oven Gas at PAO Magnitogorskii Metallurgicheskii Kombinat
Platonov O.
Efficiency of a Claus furnace in the coke-oven gas desulphurization circuit of MMK
Gazimzyanov N., Platonov O.
Effectiveness of Complex Esters According to the Integral Criterion of Molecular Electronegativity in the Flotation of Gas Coal
Medyanik N., Mullina E., Mishurina O., Kladova A., Vafin V.
Determining the air excess in the heating of coke furnaces. 3. Calculation of the air excess
Zublev D., Modakalov S., Sizov A., Barsky V., Kravchenko A.
Determining the air excess in the heating of coke furnaces. 1. Adequacy of the chemical analysis
Zublev D., Barsky V., Kravchenko A.
Optimal Oven Heating of Coke Cake 3. Theory of Pulsating Combustion
Zublev D., Barsky V., Kravchenko A.
Methods of Desulfurizing Coke-Oven Gas: A Comparison
Kazak L., Yarmoshik A., Li V.
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