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NORILSK NICKEL CELEBRATES ITS 85 ANNIVERSARY
MINING PROCESSES
Название Laboratory research data on backfill with artificial components
DOI 10.17580/gzh.2020.06.10
Автор Kisel A. A., Guzanov P. S., Lytneva A. E., Gets O. A.
Информация об авторе

Center for Geodynamic Safety, Norilsk Nickel’s Polar Division, Norilsk, Russia:

A. A. Kisel, Head of a Department
P. S. Guzanov, Chief Specialist
A. E. Lytneva, Leading Engineer
O. A. Gets, Specialist (Category I)

 

The authors appreciate participation of specialists of Norilsk Nickel’s Polar Division V. P. Marysyuk, Yu. N. Nagovitsin, A. A. Bazin, V. P. Gorpinchenko in this study.

Реферат

Implementation of the Sulfur Project at Norilsk Nickel’s Polar Division is described. Artificial gypsum calcination temperatures from the laboratory research with production of artificial gypsum plaster and artificial anhydrite are reported. Workability of the produced gypsum plaster and artificial anhydrite is examined. The laboratory test data on preparation of trial backfill mixtures with gypsum, gypsum plaster and anhydrite produced using process water and waste water from drawoff 41 of Nadezhda Metallurgical Plant are presented. It is found that the use of the produced material in backfill mixture is technologically feasible. The trial and master formulations of backfill mixtures are compared. The laboratory test data on flowability and strength of backfill mixtures in uniaxial compression within a control period are analyzed. The flow charts of flowability reduction and hardening of trial backfill mixture according to the lab-scale tests are presented. It is concluded on applicability of gypsum produced after neutralization of limestone by sulfuric acid, as well as gypsum plaster and anhydrite after gypsum calcination in preparation of trial backfill mixtures.

Ключевые слова Sulfur Project, artificial anhydrite, backfill mixture, anhydrite–slag–cement ASHTS M 30 formulation, strength development kinetics, physicochemical research
Библиографический список

1. Naftal M. N., Ilyukhin I. V., Shestakova R. D., Kozlov A. N. Alternative directions of sulphur dioxide utilization from gases of pyrometallurgical. Tsvetnye Metally. 2009. No. 8. pp. 41–47.
2. Lukyanova A. N., Starostina I. V. Construction composite materials based on modified gypsum produced from waste production. Fundamentalnye issledovaniya. 2013. No. 4-4. pp. 818–822.
3. Vasilev Yu. V., Platonov O. I. Conversion of reducted sulphurous gas from Vanyukov furnace and catalytic activity. Tsvetnye Metally. 2020. No. 1. pp. 32–37. DOI: 10.17580/tsm.2020.01.05
4. Kuzmina I. S., Litvyak M. A., Batsunov K. A., Ryabushkin A. I. Development of technology for irridium concentrate producton using a tubular autoclave at Copper Plant PGM Concentrator of PD PJSC “MMC “Norilsk Nickel”. Tsvetnye Metally. 2018. No. 6. pp. 59–64. DOI: 10.17580/tsm.2018.06.08
5. Drobot D. V., Smirnova K. A., Kulikova E. S., Musatova V. Yu. New technologies of materials synthesis on the basis of rare and non-ferrous metals. Tsvetnye Metally. 2016. No. 11. pp. 59–65. DOI: 10.17580/tsm.2016.11.06
6. Prokudina E. V., Tropnikov D. L., Karataeva A. V., Shukshina O. V. The neutralization of technical sulfuric acid with the natural limestone at JSC Svyatogor. GIAB. 2016. No. 8. pp. 340–345.
7. Galtseva N. A., Buryanov A. F., Buldyzhova E. N., Solovev V. G. The Use of Synthetic Calcium Sulfate Anhydrite for Production of Filling Mixtures. Stroitelnye materialy. 2015. No. 6. pp. 76–77.
8. Pengyu Yang, Li Li. Investigation of the short-term stress distribution in stopes and drifts backfilled with cemented paste backfill. International Journal of Mining Science and Technology. 2015. Vol. 25, Iss. 5. pp. 721–728.
9. Eren Komurlu, Ayhal Kesimal. Sulfide-ric h mine tailings usage for short-term support purposes: An experimental study on paste backfill barricades. Geomechanics and Engineering. 2015. Vol. 9, No. 2. pp. 195–205.
10. Sivakugan N., Veenstra R., Naguleswaran N. Underground Mine Backfilling in Australia Using Paste Fills and Hydraulic Fills. International Journal of Geosynthetics and Ground Engineering. 2015. Vol. 1, Iss. 2. 18. DOI: 10.1007/s40891-015-0020-8
11. Lang Liu, Zhiyu Fang, Chongchong Qi, Bo Zhang, Lijie Guo, Song K. I.-I. L. Numerical study on the pipe flow characteristics of the cemented paste backfill slurry considering hydration effects. Powder Technology. 2019. Vol. 343. pp. 454–464.
10. Galtseva N. A., Buryanov A. F., Buldyzhova E. N. Study of the properties and pros pects of using a binding agent based on synthetic anhydrite. Nauchnoe obozrenie. 2015. No. 22. pp. 157–161.
11. Grinev ich A. V., Kiselev A. A., Buryanov A. F., Kuznetsov E. M., Moshkova V. G. Method of producing calcium sulphate. Patent RF, No. 2445267. Applied 23.07.2010. Published: 20.03.2012. Bulletin No. 8.
12. Grinevich A. V., Kiselev A. A., Kuznetsov E. M., Buryanov A. F. Production of artificial anhydrite from strong sulfuric acid and milled limestone. Stroitelnye materialy. 2013. No. 11. pp. 16–19.

Language of full-text русский
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