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BENEFICIATION PROCESSES
Название «Alaska-35» washing plant sluice boxes and jigging machines rational operating parameters
DOI 10.17580/or.2016.03.06
Автор Litvintsev V. S., Sas P. P.
Информация об авторе

Institute of Mining, Far Eastern Branch of the Russian Academy of Sciences (Russia):

Litvintsev V. S., Doctor of Engineering Sciences, Head of Laboratory
Sas P. P., Researcher, petersas@mail.ru

Реферат

At present time, gold placer deposits with fine-dispersed and fine-grained gold are widely brought into development, but conventional equipment, as hydraulic elevator sluice boxes, barrel sluice boxes practically do not recover fine gold particles, therefore the interest to jigging technology will increase in the near future. Special features of gold placer deposit sands mineral composition, as well as «Alaska-35» washing plant design parameters and process-dependent variables that significantly affect gold recovery level, are analyzed. Operating regimes of jigging machines are studied in detail. It was established that the main size fraction of sands causing sand-clay refuse in sluice boxes and jigging machine’s bed is –0.5+0.1 mm that includes both ferromagnetic and weakly magnetic minerals. Bed layer height increase and, as a consequence, its weighting by fine size fraction, result in metal losses increase: with bed layer height increasing from 15 to 40 mm, losses in jigging machine tailings increased from 15.2 to 19.6 %. Effect of jigging machine’s bed material was exposed: when jig shot (6.45 g/cm3) was used, metal recovery was 75.74 %, with magnetite (5.17 g/cm3) – 62.92 %, almost 13 % lower (all other conditions being equal). Jigging machine’s optimal operating parameters were established: solid-to-liquid ratio from 1 : 2 to 1 : 4, with reciprocating speed of piston being 350 and 750 min–1, piston travel 7 mm, bed material — jig shot; bed layer height — 20 mm with piston reciprocating speed of 350 min–1 and underscreen water flow rate of 15–18 m3/h, bed layer height — 20–30 mm with piston reciprocating speed of 750 min–1 and underscreen water flow rate of 21–24 m3/h. Sluice washing plant optimal design parameters and process-dependent variables were determined in operation: sluice boxes inclination angle — 11°, sluice riffle height — 45 mm, sluice riffle inclination angle — 70°, sluice width — 750 mm. Optimal operational regimes of sluice boxes and jigging machines permitted to decrease metal losses in tailings to 11 %.

Ключевые слова «Alaska-35» washing plant, sluice washing plant, jigging machines, gold recovery, metal losses
Библиографический список

1. Litvintsev V. S., Banshchikova T. S., Sas P. P. Resource potential of gold placer fields of the Far Eastern Federal District and the problems of their development. Geomekhanicheskiye i geotekhnologicheskiye problemy effektivnosti osvoyeniya mestorozhdeniy tverdykh poleznykh iskopayemykh severo-vostochnykh regionov Rossii (Geomechanical and geotechnical problems of efficiency of solid minerals deposits development in the North-Eastern regions of Russia). Proceedings of the second All-Russian scientific and practical conf., dedicated to the memory of corresponding member of RAS M. D. Novopashin (Yakutsk, Sept. 17–19, 2013). Yakutsk, Melnikov Permafrost Institute SB RAS, 2014, pp. 85–89.
2. Litvintsev V. S., Pulyaevsky A. M., Sas P. P. Optimization of flushing sluice flow in hydrohoist gold washing machines. Fizikotekhnicheskiye Problemy Razrabotki Poleznykh Iskopayemykh = Journal of Mining Sciences, 2012, No. 6, pp. 134–139.
3. Litvintsev V. S., Banshchikova T. S., Sas P. P. Assessing the impact of hydraulic flow parameters on the efficiency of extraction of gold at the gateway of the washing unit. Problemy kompleksnogo osvoyeniya georesursov (Problems of integrated development of georesources). Proceedings of the V All-Russian conf. with participation of foreign scientists, dedicated to the 30th anniversary of the Institute of Mining FEB RAS and the 100th anniversary of the birth of Corresponding Member of RAS E. I. Bogdanov, Khabarovsk, Oct. 2–4, 2013. Khabarovsk, Institute of Mining FEB RAS, 2013, pp. 70–75.
4. Kachan I. N. To study the process of depositing a thin material. Sbornik trudov instituta «Mekhanobr» (Proceedings of «Mekhanobr» Institute). Moscow, 1953, Iss. 88, pp. 106–132.
5. Verkhovskiy I. M., Vinogradov N. N., Arutyunov O. M. New ideas about the nature of the material separation in the process of hydraulic jigging. Voprosy teorii gravitatsionnykh metodov obogashcheniya poleznykh iskopayemykh (Problems in the theory of gravitational methods of minerals processing). Moscow, Gosgortekhizdat, 1960, pp. 68–77.
6. Kuznetsov G. G. Some patterns of fine materials jigging. Ibidem, pp. 44–55.
7. Bert P. O. Tekhnologiya gravitatsionnogo obogashcheniya (Gravity concentration technology). Moscow, Nedra, 1990, 574 pp.
8. Samylin N. A. Otsadka (Jigging). Moscow, Nedra, 1976, 320 pp.
9. Takeuchi M. et al. Hybrid jig separation of plastic particles and surface modification of the plastics. XXVI International Mineral Processing Congress (IMPC 2012), New Delhi, Sept. 24–28, 2012. Book of Abstracts. New Delhi, 2012, Vol. 1, p. 275.

10. Feng Jin-peng, Mo Qiu-hong, Luo Mei-xiu, Ma Shao-jian et al. Experimental study on separation of cassiterite polymetallic sulfide ore using ST saw tooth jigger. J. Guangxi Univ. (Nat. Sci. Ed.), 2014, Vol. 39, No. 2, pp. 449–453.
11. Osoba M. Polskie osadzarki wodne pulsacyjne do wzbogacania surowców mineralnych. Inynieria Mineralna Rocznik, 2014, Vol. 15, No. 2, pp. 287–294.
12. Jeon Ho-Seok, Angadi A. I., Baek Sang-Ho. Selection of gravity concentrators for the beneficiation of cassiterite ore — a holistic approach // XXVI International Mineral Processing Congress (IMPC 2012), New Delhi, Sept. 24–28, 2012. Book of Abstracts. New Delhi, 2012, Vol. 2, p. 482.
13. Aleksandrova T. N., Korchevenkov S. A. Comparative analysis of the efficiency of spiral separation and jigging techniques when extracting platinum group metals. Problemy kompleksnogo osvoyeniya georesursov (Problems of integrated development of georesources). Proceedings of the V All-Russian conf. with participation of foreign scientists, dedicated to the 30th anniversary of the Institute of Mining FEB RAS and the 100th anniversary of the birth of Corresponding Member of RAS E. I. Bogdanov, Khabarovsk, Oct. 2–4, 2013. Khabarovsk, Institute of Mining FEB RAS, 2013, pp. 205–208.
14. Slepcova E., Fedoseev S., Matveev A. Analytical calculation of rational work [of] jig with bed from magnetic structure chains. Gorny Informatsionno-Analiticheskiy Byulleten (nauchno-teknicheskii zhurnal) = Mining Informational and Analytical Bulletin (scientific and technical journal), 2013, No. 12, pp. 148–150.
15. Pyatakov V. G., Gushchenko V. V., Sokolov A. S. The results of the application of jigging process flowsheet washing plants for industrial placers. Zolotodobycha, 2015, No. 7, pp. 14–17.
16. Sleptsova E. S. The process of gold-bearing concentrates beneficiation in the jig with a magnetic system. Puti resheniya aktualnykh problem dobychi i pererabotki poleznykh iskopayemykh. Dobycha zolota v usloviyakh Kraynego Severa (Ways of solving the actual problems of mining and processing of minerals. Gold mining in the Far North). Proceedings of the Rep. scientific and practical conf., dedicated to the 90th anniversary of gold mining in Sakha (Yakutia) (Yakutsk, Oct. 16, 2014), pp. 94–97.
17. Sleptsova E. S. A method of minerals jigging in а magnetic field. VIII Congress of dressers of CIS countries. Collection of materials (Moscow, 28 Feb. — 2 March, 2011). Moscow, 2011, Vol. 1, pp. 179–182.

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