Thermogravimetric Study of Oxidation Firing of Rhenium- and Osmium-Containing Lead Sludge

Author:

Berdikulova F. A.,Sydykov A. O.,Zharmenov A. A.,Terlikbayeva A. Zh.,Seidakhmetova N. M.

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics

Reference11 articles.

1. R. P. Gel’, G. A. Drobotenko, V. N. Klosov, and N. E. Nekhoroshev, RF Patent 2061079. Method for Extracting Rhenium Oxide from Waste, Claim 05.14.1993, Publ. 05.27.1996, Bull. No. 5.

2. A. G. Vodop’yanov and G. N. Kozhevnikov, “Extraction of rhenium and osmium from sulfurous gases with slid carbon,” Ros. Zh. Prikl. Khim., 85, No. 10, 1567–1659 (2012).

3. V. N. Loseva, V. V. Parfenova, E. V. Él’suf’eva, and A. K. Trofimchuk, “Preliminary concentration and determination of osmium (VIII) using silica, chemically modified with sulfur-containing groups,” Zh. Analyt. Khim., 7, No. 7, 781–787 (2015).

4. Yu. V. Andreev, T. N. Greiver, and G. V. Petrov, RF Patent 2051193. Method for Distilling Rhenium and Osmium into a Gas Phase from Lead Rhenium-Containing Dust and Sulfuric Acid Copper Productions Sludge, Claim 10.06.1993, Publ. 12.27.1995.

5. Xi Chen, Zhe Tan, Yufeng Wu, Qijun Zhang, and Dean Pan, “Eco-friendly H2O2 leaching for noble-metals Re and W selective recovery from waste thermoelectric materials,” Thermal Science and Engineering Progress, 19, No. 1, 3–11 (2020).

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