Recycling and Reuse of Mine Tailings: A Review of Advancements and Their Implications
Переработка и повторное использование хвостов рудников: обзор достижений и их последствий
2022-08-27
SCID: 54.1/fb4wv738
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environmental impacts of abandoned minesmine tailings recyclingmining waste managementtailings restoration techniquestailings reuse
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Abstract (AI)
Mining is an important industry, accounting for 6.9% of global GDP. However, global development promotes accelerated demand, resulting in the accumulation of hazardous waste in land, sea, and air environments. It reached 7 billion tonnes of mine tailings generated yearly worldwide, and 19 billion solid tailings will be accumulated by 2025. Adding to this, the legacy of environmental damage from abandoned mines is worrying; there are around 10,000 abandoned mines in Canada, 50,000 in Australia, and 6000 in South Africa, as well as 9500 coal mines in China, reaching 15,000 by 2050. In this scenario, restoration techniques from mining tailings have become increasingly discussed among scholars due to their potential to offer benefits towards reducing tailing levels, thereby reducing environmental pressure for the correct management and adding value to previously discarded waste. This review paper explores the available literature on the main techniques of mining tailing recycling and reuse and discusses leading technologies, including the benefits and limitations, as well as emerging prospects. The findings of this review serve as a supporting reference for decision makers concerning the related sustainability issues associated with mining, mineral processing, and solid waste management.
Key Findings
1
Findings are intended to support decision-makers on sustainability issues in mining, mineral processing, and solid waste management.
2
Global mining generates about 7 billion tonnes of mine tailings annually and is projected to reach 19 billion tonnes of solid tailings by 2025.
3
Large numbers of abandoned mines (e.g., ~10,000 in Canada, ~50,000 in Australia, ~6,000 in South Africa, ~9,500 coal mines in China) create persistent legacy environmental damage.
4
Recycling and reuse of mining tailings are increasingly studied as restoration techniques that can reduce tailings volumes and environmental pressure.
5
The review identifies and discusses leading recycling and reuse technologies for tailings, including their benefits, limitations, and emerging prospects for sustainable waste management.
Research Object
Mine tailings (mining solid waste)
Research Subject
Techniques and technologies for recycling and reuse of mine tailings, including their benefits, limitations, and sustainability implications for management and restoration
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2022-08-27
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