Experiences of Underground Mine Backfilling Using Mine Tailings Developed in the Andean Region of Peru: A Green Mining Solution to Reduce Socio-Environmental Impacts

Опыт закладки подземных рудников с использованием хвостов обогащения, накопленных в Андском регионе Перу: решение в области экологически ответственной добычи для снижения социально-экологических воздействий
Carlos Cacciuttolo, Alex Marinovic Pulido
2023-08-26

acid rock drainagecemented paste backfillgreen miningmine tailingsunderground mine backfilling
In Peru, socio-environmental conflicts related to the development of mining-metallurgical processes and the responsible disposal of mine tailings have become central issues for accepting mining projects, especially regarding building relationships of trust with the communities. This condition has prompted the Peruvian mining industry to advance in managing alternatives to the conventional surface disposal of mine tailings. A promising and increasingly popular management strategy for mine tailings in Peru is their disposal inside underground mines. This article presents: site-specific conditions, advantages/disadvantages, and lessons learned from practical experiences of mine tailings disposal in underground mines in Peru. In addition, some techniques are highlighted, such as (i) hydraulic fill, (ii) cemented hydraulic fill, and (iii) cemented paste backfill. Finally, this article concludes that the responsible disposal of mine tailings in underground mines is a green mining solution that reduces negative socio-environmental impacts, limiting the generation of acid rock drainage (ARD) and the leaching of metals due to the decrease in contact with oxygen and rainfall, thus mitigating the contamination of surface and underground waters, reducing the footprint of affectation in the territory, and eliminating the emission of particulate matter in the environment.
1
Peruvian underground backfilling experience encompasses hydraulic fill, cemented hydraulic fill, and cemented paste backfill techniques.
2
Responsible underground tailings disposal reduces contact with oxygen and rainfall, limiting acid rock drainage generation and metal leaching.
3
The article identifies site-specific conditions, advantages, disadvantages, and practical lessons learned as critical considerations for implementing underground mine backfilling.
4
Underground backfilling can mitigate contamination of surface and groundwater, reduce the affected territorial footprint, and eliminate environmental particulate emissions.
5
Underground disposal of mine tailings is presented as a promising alternative to conventional surface storage for reducing socio-environmental conflicts in Peru.

Underground disposal of mine tailings in Peruvian mines, including hydraulic fill, cemented hydraulic fill, and cemented paste backfill

Site-specific conditions, advantages, disadvantages, lessons learned, and socio-environmental impact reduction associated with underground mine-tailings backfilling

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2023-08-26
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Carlos Cacciuttolo
Alex Marinovic Pulido
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