Unsaturated mine tailings disposal

Abstract Filtered tailings is the disposal technology that is most likely to yield an unsaturated state of the tailings. Such state has important benefits. A dam to contain the mine wastes is no longer needed, the risk of polluting seepage is minimized, and liquefaction of tailings is prevented. Filtering also allows most of the water mixed with the tailings to be recovered and reused in the process. The resulting material can be handled with traditional soil moving equipment to form a stack, for instance. While the idea is simple, the multiple phenomena involved in the tailings unsaturated disposal make up a complex process. The present work is based on a case study, the Casposo Mine filtered tailings disposal facility, located in the central Andes of Argentina. Throughout ten years of operation, a series of field and laboratory studies have been carried out to characterize the phenomena that intervene in the disposal of filtered tailings. Two stages were studied in detail: air drying upon tailings discharge and tailings compression under the weight of the subsequent lifts of the stack. Flocculant agents were found to have an outstanding influence in the tailings behaviour. Because of the multiple influencing factors, the process outcome (namely, the tailings water content and their void ratio) is highly variable. To deal with such variability, projects must include enough redundancy. In this regard, the case study's incorporation of waste rock layers interspersed between tailings layers was a successful experience.

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Main Authors: Oldecop,Luciano A., Rodari,Germán J.
Format: Digital revista
Language:English
Published: Associação Brasileira de Mecânica dos Solos 2021
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S2675-54752021000300601
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spelling oai:scielo:S2675-547520210003006012021-08-20Unsaturated mine tailings disposalOldecop,Luciano A.Rodari,Germán J. Tailings dewatering Filtered tailings Flocculant Tailings air-drying Tailings compressibility Dry stacking Abstract Filtered tailings is the disposal technology that is most likely to yield an unsaturated state of the tailings. Such state has important benefits. A dam to contain the mine wastes is no longer needed, the risk of polluting seepage is minimized, and liquefaction of tailings is prevented. Filtering also allows most of the water mixed with the tailings to be recovered and reused in the process. The resulting material can be handled with traditional soil moving equipment to form a stack, for instance. While the idea is simple, the multiple phenomena involved in the tailings unsaturated disposal make up a complex process. The present work is based on a case study, the Casposo Mine filtered tailings disposal facility, located in the central Andes of Argentina. Throughout ten years of operation, a series of field and laboratory studies have been carried out to characterize the phenomena that intervene in the disposal of filtered tailings. Two stages were studied in detail: air drying upon tailings discharge and tailings compression under the weight of the subsequent lifts of the stack. Flocculant agents were found to have an outstanding influence in the tailings behaviour. Because of the multiple influencing factors, the process outcome (namely, the tailings water content and their void ratio) is highly variable. To deal with such variability, projects must include enough redundancy. In this regard, the case study's incorporation of waste rock layers interspersed between tailings layers was a successful experience.info:eu-repo/semantics/openAccessAssociação Brasileira de Mecânica dos SolosSoils and Rocks v.44 n.3 20212021-01-01info:eu-repo/semantics/reporttext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S2675-54752021000300601en10.28927/sr.2021.067421
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country Brasil
countrycode BR
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databasecode rev-scielo-br
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region America del Sur
libraryname SciELO
language English
format Digital
author Oldecop,Luciano A.
Rodari,Germán J.
spellingShingle Oldecop,Luciano A.
Rodari,Germán J.
Unsaturated mine tailings disposal
author_facet Oldecop,Luciano A.
Rodari,Germán J.
author_sort Oldecop,Luciano A.
title Unsaturated mine tailings disposal
title_short Unsaturated mine tailings disposal
title_full Unsaturated mine tailings disposal
title_fullStr Unsaturated mine tailings disposal
title_full_unstemmed Unsaturated mine tailings disposal
title_sort unsaturated mine tailings disposal
description Abstract Filtered tailings is the disposal technology that is most likely to yield an unsaturated state of the tailings. Such state has important benefits. A dam to contain the mine wastes is no longer needed, the risk of polluting seepage is minimized, and liquefaction of tailings is prevented. Filtering also allows most of the water mixed with the tailings to be recovered and reused in the process. The resulting material can be handled with traditional soil moving equipment to form a stack, for instance. While the idea is simple, the multiple phenomena involved in the tailings unsaturated disposal make up a complex process. The present work is based on a case study, the Casposo Mine filtered tailings disposal facility, located in the central Andes of Argentina. Throughout ten years of operation, a series of field and laboratory studies have been carried out to characterize the phenomena that intervene in the disposal of filtered tailings. Two stages were studied in detail: air drying upon tailings discharge and tailings compression under the weight of the subsequent lifts of the stack. Flocculant agents were found to have an outstanding influence in the tailings behaviour. Because of the multiple influencing factors, the process outcome (namely, the tailings water content and their void ratio) is highly variable. To deal with such variability, projects must include enough redundancy. In this regard, the case study's incorporation of waste rock layers interspersed between tailings layers was a successful experience.
publisher Associação Brasileira de Mecânica dos Solos
publishDate 2021
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S2675-54752021000300601
work_keys_str_mv AT oldecoplucianoa unsaturatedminetailingsdisposal
AT rodarigermanj unsaturatedminetailingsdisposal
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