Knowledge Agora



Scientific Article details

Title Recycling Feldspar Mining Waste as Buffering Agent for Acid Mine Drainage Mitigation
ID_Doc 8495
Authors Grieco, G; Cocomazzi, G; Naitza, S; Bussolesi, M; Deidda, ML; Ferrari, ES; Destefanis, E
Title Recycling Feldspar Mining Waste as Buffering Agent for Acid Mine Drainage Mitigation
Year 2024
Published Minerals, 14.0, 6
DOI 10.3390/min14060552
Abstract Acid mine drainage (AMD) prevention or remediation is a major issue of the environmental management of sulfide-bearing active and abandoned mining sites, the main sources of acidic waters being wastes and tailings. The present work intends to check a circular economy approach to such issues in the mining region of Sardinia, where environmental pollution, due to AMD, is a major concern. Tests were conducted on basic drainage-producing feldspar mining wastes that could be recycled as buffering agents of sulfide-bearing tailings. Among the sulfide-bearing abandoned mining sites investigated, Furtei epithermal gold deposit tailings are the most polluting and those that can better test the buffering agent efficacy. Buffering test results show that buffering to near-neutral conditions can be attained following steps similar to those of pure calcite buffer. The buffering potential of the recycled waste is due to both the buffer calcite content, which provides short-term buffering, enhanced by feldspar content that can provide long-term buffering. Buffered waters show a dramatic decrease in the concentration of most of the metals present in the leachate, down to conditions that meet the requirements for the discharge of industrial waters according to Italian legislation.
Author Keywords acid mine drainage; buffering; feldspar; Sardinia
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:001256082900001
WoS Category Geochemistry & Geophysics; Mineralogy; Mining & Mineral Processing
Research Area Geochemistry & Geophysics; Mineralogy; Mining & Mineral Processing
PDF https://www.mdpi.com/2075-163X/14/6/552/pdf?version=1716811144
Similar atricles
Scroll