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PYROMETALLURGY
Название Definition of losses of precious metals with vented gases at roasting and selene sites of Copper plant metallurgical shop
Автор Glazatov A. N., Savinova Yu. A., Batsunov K. A., Litvyak M. A., Tretyakova N. V.
Информация об авторе

LLC “Institute “Gipronikel”, Saint Petersburg, Russia:

A. N. Glazatov, Leading Researcher of Pyrometallurgy Laboratory, e-mail: angla@nikel.spb.su
Yu. A. Savinova, Junior Researcher of Pyrometallurgy Laboratory

 

Polar Division of “Norilsk Nickel” MMC, Talnakh, Russia:
K. A. Batsunov, Chief Specialist on Precious Metals of Scientific-Technical Department
M. A. Litvyak, Acting Deputy Head of Metallurgical Production Shop (Copper plant)
N. V. Tretyakova, Head of Laboratory of Control of Industrial Discharges of a Center of Radiation-Ecological Control of Control-Analytical Department

Реферат

This article gives the results of studies of determination of precious metal losses (Pt, Pd, Rh, Ru, Ir, Au, Ag, Os) with dust from the controlled air emission sources at I, II, and III (overhead) gas cleaning groups at roasting and selenium sites of the Copper Plant Metallurgical Department. Two dust sample types were taken for testing at each gas source outlet during the roasters regular operation mode. ‘Coarse’ dust fractions were sampled at the sampler filter. Gas from the gas-sampler was passed through the bubbler tank with thiourea solution, where the fine dust fraction was obtained. On the basis of results of both dust fraction analyses, considering dust and gas stream parameters, there were defined the precious metal losses in atmosphere and their reduction recommendations. Maximum losses are typical for silver. Rough estimates show that this element is removed from the clean gas bleeders of the I, II and overhead gas cleaning groups, together with fine dust fraction in the amount of ~0.3, 0.6 and 0.11 g/h, respectively. Ag losses to both dust fractions are ~0.55, 0.63 and 0.12 g/h, respectively. Total precious metal losses with venting gases can reach ~21 kg/year (roasting and selenium sites). There was established that precious metals are mainly emitted into the atmosphere in the form of micron and submicron size components. The ‘coarse’ dust samples were subject to qualitative analysis for platinum, palladium and silver phases. To a certain degree of possibility, silver phase occurs in the metallic form. As a component of finely dispersed chlorine-containing compound, this phase is associated with Cu – Se – O multi-phase component. Platinum and palladium are in the metallic form.

Ключевые слова Losses, precious metals, roasters, slimes, gas cleaning, air venting gases, atmosphere, emission sources, dust material composition
Библиографический список

1. TI 44577806.14.56-5–2011. Poluchenie kontsentratov metallov platinovoy gruppy v metallurgicheskom tsekhe Mednogo zavoda (Instruction Manual 44577806.14.56-5–2011. Obtaining of concentrates of platinum group metals in metallurgical shop of Copper plant). (in Russian).
2. Kazenas E. K., Astakhova G. K., Penkina T. N. K voprosu ob otsenke skorosti ispareniya metallov (To the question about estimation of metal evaporation rate). Metally = Metals. 1998. No. 1. pp. 33–40.
3. Kulikov I. S. Termicheskaya dissotsiatsiya soedineniy (Thermal dissociation of compounds). Moscow : Metallurgiya, 1969. 576 p.
4. GOST R 50820–95. Metody opredeleniya zapylennosti gazopylevykh potokov (State Standard R 50820–95. Methods of definition of dustiness of gas-dust flows). (in Russian)
5. PND F 12.1.2.–99. Metodicheskie rekomendatsii po otboru prob pri opredelenii kontsentratsiy vzveshennykh chastits (pyli) v vybrosakh promyshlennykhpredpriyatiy (Natural Protection Federal Normative Documents 12.1.2.–99. Methodical Recommendations to sampling in the time of definition of concentrations of weighted particles (dust) in discharges of industrial enterprises). (in Russian)
6. TU 6-48-43–90. Steklotkan rovingovaya iz steklyannykh nitey alyumoborosilikatnogo stekla marki E (Technical Conditions 6-48-43–90. Glass fiber woven roving of “E” alumina-borosilicate glass). (in Russian)
7. Gutnikov S. I., Lazoryak B. I., Seleznev A. N. Steklyannye volokna: uchebnoe posobie dlya studentov po spetsialnosti “Kompozitsionnye nanomaterialy” (Glass fibers: tutorial for students in “Composition nanomaterials” degree). Moscow, 2010. 53 p.
8. GOST 1779–83. Shnury asbestovye. Tekhnicheskie usloviya (State Standard 1779–83. Asbestos wires. Technical requirements). (in Russian)
9. Ertseva L. N. Opyt primeneniya metodov rastrovoy elektronnoy mikroskopii i rentgeno-spektralnogo mikroanaliza dlya issledovaniya materialov tsvetnoy metallurgii (Experience of application of scanning electron microscopy methods and Х-ray spectral microanalysis for research of non-ferrous metallurgy materials). Tsvetnye Metally = Non-ferrous metals. 2011. No. 8/9. pp. 86–91.
10. Prakticheskaya rastrovaya elektronnaya mikroskopiya (Practical scanning electron microscopy). Under the editorship of J. I. Goldstein, Kh. Yakovits. Moscow : Mir, 1978. 231 p.
11. Joseph I. Goldstein, Dale E. Newbury, Patrick Echlin, David C. Joy. et al. Rastrovaya elektronnaya mikroskopiya i rentgenospektralnyy mikroanaliz (Scanning Electron Microscopy and X-ray Microanalysis). In two volumes. Moscow : Mir, 1984. Vol. 1. 203 p; Vol. 2. 348 p.

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