Журналы →  Tsvetnye Metally →  2016 →  №7 →  Назад

NOBLE METALS AND ALLOYS
Название Pilot plant tests of technology of gold leaching in grinding cycle using underwater acoustic projector
DOI 10.17580/tsm.2016.07.03
Автор Bobozoda Sh., Boboev I. R., Strizhko L. S.
Информация об авторе

Ministry of Industry and New Technologies of the Republics of Tajikistan, Dushanbe, Republic of Tajikistan:

Bobozoda Sh., Minister

 

National University of Science and Technology “MISiS”, Moscow, Russia:
Boboev I. R., Junior Researcher, Chair of Non-Ferrous Metals and Gold, e-mail: boboev-i@mail.ru
Strizhko L. S., Professor, Chair of Non-Ferrous Metals and Gold, e-mail: sls_2007.47@mail.ru

Реферат

This article shows the results of pilot plant tests of gold leaching from mixed gold-bearing ores with and without underwater acoustic projectors. All the tests were carried out using two process flowsheets: direct cyanidation of ground ore without projector (preliminary cyanidation of ground ore with further sorption leaching); cyanidation in grinding cycle feeding the alkaline solution, saturated in underwater acoustic projector. Inefficiency of direct cyanidation of ground ore during the investigated raw materials processing is shown: firstly it is connected with the process duration and low gold extraction. Cyanidation in the grinding cycle feeding the alkaline solutions, saturated in underwater acoustic projector, was industrially tested. The results show that the offered flowsheet is the most efficient. These conditions allow to reach the high gold extraction only on the stage of cyanidation in grinding cycle feeding the cyanide alkaline solutions, saturated with oxygen in the field of hydroacoustic influence.
This article was written within the implementation of the subsidiary agreement No. 14.578.21.0014 (June 5, 2014) (unique identifier No. RFMEFI57814X0014) between the National University of Science and Technology «MISiS» and the Ministry of Education and Science of the Russian Federation within the realization of the federal target program “Investigations and developments by the priority ways of development of the scientific-technological complex of Russia for the period of 2014–2020”, approved by the decree of the Government of the Russian Federation No. 1096 (November 28, 2013).

Ключевые слова Gold-bearing ore, cyanidation, grinding, underwater acoustic projector, full-scale tests, dissolved oxygen, cyanogen-ion.
Библиографический список

1. Process Intensification Technologies for Green Chemistry: Engineering Solutions for Sustainable Chemical Processing. Editors: K. Boodhoo, A. Harvey. Chichester : John Wiley & Sons, 2013. 432 р.
2. Characterization of Minerals, Metals, and Materials 2015. Editors: J. S. Carpenter, Chengguang Bai, J. P. Escobedo-Diaz, Jiann-Yang Hwang, Shadia Ikhmayies, Bowen Li, Jian Li, S. Neves Monteiro, Zhiwei Peng, Mingming Zhang. Chichester : John Wiley & Sons, 2015. 680 р.
3. Parga J. R., Valenzuela J. L., Díaz J. A. Technology for Recovery of Gold and Silver by Pressure Cyanidation Leaching and Electrocoagulation. Noble Metals. Editor: Yen-Hsun Su. 2012. pp. 71–94. DOI: 10.5772/32673
4. Reay D., Ramshaw C., Harvey A. Process intensification: engineering for efficiency, sustainability and flexibility. Amsterdam ; London : Elsevier, Butterworth-Heinemann, 2008. 444 р.
5. Voyloshnikov G. I., Mulov V. M., Khmelnitskaya O. D., Evdokimov A. V. Sravnenie effektivnosti reagentov-uskoriteley pri izvlechenii zolota iz gravitatsionnykh kontsentratov (Comparison of reagent-accelerator efficiency during the gold extraction from gravitation concentrates). Zolotodobycha = Gold mining. 2012. No. 164.
6. Evdokimov A. V. Issledovanie protsessa intensivnogo tsianirovaniya zolotosoderzhashchikh gravitatsionnykh kontsentratov : avtoreferat dissertatsii ... kandidata tekhnicheskikh nauk (Investigation of the process of intensive cyanidation of gold-bearing gravitation concentrates : thesis of inauguration of Dissertation … of Candidate of Engineering Sciences). Irkutsk, 2012. 23 p.
7. Boboev I. R., Gavrilov S., Vasilev R. A., Strizhko L. S. Meropriyatiya po uvelicheniyu prodolzhitelnosti promyshlennogo sezona kuchnogo vyshchelachivaniya zolota i opyt predpriyatiy, rabotayushchikh v klimaticheskikh usloviyakh (Measures for increasing the time of industrial season of heap gold leaching and experience of enterprises working in climatic conditions). Aktualnye problemy gumanitarnykh i estestvennykh nauk = Urgent problems of humanitarian and natural sciences. 2015. No. 5-1. pp. 51–55.
8. Elshin V. V., Kolodin A. A., Ovsyukov A. E., Malchikhin A. S. Osobennosti tsianistogo vyshchelachivaniya zolota v tsikle izmelcheniya (Features of cyanide leaching of gold in grinding curcuit). Metallurg = Metallurgist. 2013. No. 7. pp. 86–90.
9. Khmelev V. N., Slivin A. N., Barsukov R. V., Tsyganok S. N., Shalunov A. V. Primenenie ultrazvuka v promyshlennosti (Ultrasound application in industry). LLC “Tsentr ultrazvukovykh tekhnologiy”. Available at : http://u-sonic.ru/primenenie-ultrazvuka-v-promyshlennosti.
10. Zakharov B. A., Meretukov M. A. Zoloto: upornye rudy (Gold: refractory ores). Moscow : “Ore and Metals” Publishing House, 2013. 452 p.
11. Meretukov M. A., Sanakulov K. S., Zimin A. V., Arustamyan M. A. Zoloto: khimiya dlya metallurgov i obogatiteley (Gold: chemistry for metallurgists and dressers). Moscow : “Ore and Metals” Publishing House, 2014. 412 p.
12. Bobozoda Sh., Strizhko L. S., Boboev I. R. Kinetika i mekhanizm nakislorozhivaniya oborotnykh vod pri tsianirovanii v tsikle izmelcheniya (Kinetics and mechanism of oxygenation of recirculated waters during cyanidation in grinding cycle). Tsvetnye Metally = Non-ferrous metals. 2015. No. 3. pp. 10–14. DOI: 10.17580/tsm.2015.03.02
13. Bobozoda Sh., Strizhko L. S., Boboev I. R. Kinetika tsianirovaniya zolotosoderzhashchey rudy v tsikle izmelcheniya pri podache nasyshchennykh kislorodom oborotnykh vod (Kinetics of gold-containing ore cyanidation in reduction cycle when feeding oxygen-saturated circulating water). Tekhnologiya metallov = Technology of Metals. 2015. No. 5. pp. 3–10.

Language of full-text русский
Полный текст статьи Получить
Назад