Download 8th International Symposium on High-Temperature by Jiann-Yang Hwang, Tao Jiang, Mark William Kennedy, Onuralp PDF

By Jiann-Yang Hwang, Tao Jiang, Mark William Kennedy, Onuralp Yücel, P. Chris Pistorius, Varadarajan Seshadri, Baojun Zhao, Dean Gregurek, Ender Keskinkilic

This assortment positive aspects contributions protecting the advances and advancements of latest high-temperature metallurgical applied sciences and their functions to the components of: processing of minerals; extraction of metals; instruction of metal, refractory, and ceramic fabrics; therapy and recycling of slag and wastes; conservation of strength; and environmental security. the quantity could have a extensive effect at the teachers and pros serving the metallurgical industries world wide by means of offering them with accomplished insurance of a wide selection of topics.

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Int. J. Hydrogen Energy 40, 4733–4740 (2005) 4. Y. Shi, E. S. J. Wibberley, Modelling novel coal based direct reduction process. Ironmaking Steelmaking 35, 3–13 (2013) 5. H. Michishita, H. Tanaka, Prospects for coal-based direct reduction process. Kobelco Technol Rev 29, 69–76 (2010) 6. Z. Y. Hwang, Microwave-assisted metallurgy. Int. Mater. Rev. 60, 30–63 (2015) 7. Z. Y. Hwang, J. Mouris, R. Hutcheon, X. Huang, Microwave penetration depth in materials with non-zero magnetic susceptibility. ISIJ Int.

R. Wu, C. H. S. 6−x)O4 spinel solid solution. Material Science and Environmental Engineering, ed. by Ping Chen (Wuhan, China: International Conference on Material Science and Environmental Engineering, 2015), pp. 109–113 Effects of Hydrogen-Enriched Reduction on Metallurgical Properties of Iron-Bearing Burdens Under BF Operation with COG Injection Hongtao Wang, Mansheng Chu, Chuanguang Bi, Zhenggen Liu and Wenbin Dai Abstract Coke oven gas (COG) injection is considered as one of feasible measures to reduce carbon emission of BF.

91, 1–8 (2010) Refractory Challenges in Lead Recycling Furnaces D. Gregurek, K. Reinharter, V. Reiter, C. Wenzl and A. Spanring Abstract The refractory linings in lead furnaces are exposed to several stresses rather complex in their interaction. In the present study the magnesia-chromite brick out of a lead recycling furnace suffered from a high chemical attack by the process slag. The high CaO, BaO and sulfur bearing silicate slag, as well as a high Na2O supply from soda resulted both in a deep-reaching infiltration of the brick microstructure and a severe corrosion of the brick components.

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