Title: Remediation of tailing ponds
1Abandoned copper mine tailings deposits.Problems
and possible solutions
Henrik K. Hansen Universidad Técnica Federico
Santa Maria, Chile
2Copper production in Chile
- 6 Mton/year
- gt 40 of GNP is due to copper production
- 35 of world copper
- Several important mines and smelters
- El Teniente
- Chuquicamata
- Escondida
- Collahuasi
3Copper mine tailings
- Main residue from copper mining (separated during
concentration of copper minerals)? - Daily production gt 2.000.000 ton
- (Domestic waste 15.000 ton)?
- 95 of the mineral treated ends as tailings
- Cu concentration 0.1 0.3
- Other elements of concern As, Zn, Pb
- Accumulated in tailing deposits/ponds
4Problems with tailing ponds
- Mechanical Stability
- Damn failures
- Chemical Stability
- Leaching of contaminants
- Can cause severe environmental impact, collapse
of Tailing pond El Cobre in 1965 caused the
death of more than 200.
5Examples of pond wall collapse
- 1928 Barahona Pond (El Teniente)?
- 1965 El cobre Pond (200 deaths)?
- 1981 Minera Las Cenizas (collapse affected
severely the nearby agricultural activity)? - 2002 Cobrex (15.000 t tailings spilled)?
- 2003 Minera Cerro Negro (300.000 t tailings)?
6Chilean legislation for new mining projects
7Decreto Supremo Nº 248
- Reglamento para la aprobación de proyectos de
diseño, construción, operación y cierre de los
depósitos de relaves - Suggested December 2006
- Published April 2007
- Fiscalization unit Servicio Nacional de Geología
y Minería, SERNAGEOMIN
8Mechanical stability
- Damn construction inadequate
- Specially in small and medium scale tailing ponds
- Hydrodynamic effect, e.g. rainwater accumulation
- Seismic activity
- Wind erosion/escape of wind borne material
9Mechanical stability
Tranque Ovejería,
CODELCO
Small scale tailings deposit
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11Chemical stability
- Chemical reactions in the tailing ponds
- Pyrite oxidation (Air humidity)?
- Chemical reactions in the tailing ponds
- 2 FeS2(s) 7 O2 2 H2O ?
- 2 Fe2 4 SO42- 4 H
- Dissolution of Cu-sulphides
- Precipitation/settling of new solids
- Leaching/filtration
12Cu infiltration
Wall
Caren tailing pond
CuSO4 accumulation
8 km
Tailing inlet
13Tailing pond monitoring by SERNAGEOMIN
- Studies done 1992 and 2004
- Quantify tailing ponds
- Analyse risks
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15Abandoned and paralysed mining sites (FMA/P) with
tailing ponds representing environmental risk
20
16Abandoned and paralysed mining sites (FMA/P) with
tailing ponds representing mechanical risk 33
17Possible solutions (in Chile)?
- Stabilization
- Control of wind borne material
- Protection from rainwater
- Reforestation
- Esthetical and natural solution
- Mine tailings only inorganic material
- No natural eco-system exisitng
- Pyrite oxidation --gt pH ?
18Tailing pond Planta M. A. Matta, III Región
Application of Bischoffite (MgCl2 6H2O), to avoid
wind erosion
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20Tailing pond San José de Pucobre
21Tailing pond Ojancos, III Región Reforestation
22Tailing Pond Las Cenizas V Región Reforestation
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24Tailing pond Las cenizas Before
(1995)? After (2007)?
25Tailing pond Planta M. A. Matta, III Región
Reforestation
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27Some species used for reforestation
- Espino Acacia caven
- Aromo azul Acacia saligna
- Álamo Populus alba
- Pimiento Shinus molle
- Granado de flor Punica granatus
- Albizia Albizia lophanta
- Tamarindo Tamarix sp.
- Aromo australiano Acacia melanoxylon
28Conclusions
- Awareness of problem
- Legislacion OK for new and present project
- Problems with abandoned ponds still not generally
solved
29Abandoned copper mine tailings deposits.Problems
and possible solutions
Henrik K. Hansen and Alejandra Muñoz Universidad
Técnica Federico Santa Maria, Chile