Environmental Technology for the Integrated Disposal of Man-Made Wastes of the Metallurgical Industry: Self-Curing, Chemically Resistant Refractory Mass1

Author:

Satbaev B. N.,Koketaev A. I.,Aimbetova É. O.,Shalabaev N. T.,Satbaev A. B.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Ceramics and Composites

Reference16 articles.

1. Program for the Development of the Mining and Metallurgical Industry in the Republic of Kazakhstan for 2010 – 2014 [in Russian], approval by the Decree of the Government of the Republic of Kazakhstan dated October 30, 2010, No. 1144.

2. E. S. Abdrakhimova, “Study of acid-resistant material properties based on non-ferrous metallurgy waste using regression analysis,” Refract. Ind. Ceram., 56(5), 510 – 516 (2016).

3. H. Yi, G. Xu, H. Cheng, et al., “An overview of utilization of steel slag,” The 7thInt. Conf. on Waste Management and Technology. Procedia Environmental Sciences, 791 – 801 (2012).

4. W. L. Ferreira, E. L. Reis, and R. M. F. Lima, “Incorporation of residues from the minero- metallurgical industry in the production of clayelime brick,” J. Clean. Prod., No. 87, 505 – 510 (2015).

5. A. Loìpez-Delgado, H. Tayibi, C. Peìrez, et al., “A hazardous waste from secondary aluminium metallurgy as a new raw material for calcium aluminate glasses,” J. Hazar. Mater., No. 165, 180 – 186 (2009).

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