In Situ Effectiveness of Alkaline and Cementitious Amendments to Stabilize Oxidized Acid-Generating Tailings

This study investigates the effectiveness of alkaline and cementitious additives in the in situ stabilization of localized acid-generating tailings from a closed gold mine in Abitibi−Témiscamingue, Québec (Eagle/Telbel mine site). Five field cells (including one control)...

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Main Authors: Abdellatif Elghali, Mostafa Benzaazoua, Bruno Bussière, Thomas Genty
Format: Article
Language:English
Published: MDPI AG 2019-05-01
Series:Minerals
Subjects:
Online Access:https://www.mdpi.com/2075-163X/9/5/314
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spelling doaj-c7bdb36b26ec4862af26defcffc4ea362020-11-25T01:38:42ZengMDPI AGMinerals2075-163X2019-05-019531410.3390/min9050314min9050314In Situ Effectiveness of Alkaline and Cementitious Amendments to Stabilize Oxidized Acid-Generating TailingsAbdellatif Elghali0Mostafa Benzaazoua1Bruno Bussière2Thomas Genty3Research Institute on Mines and Environment (RIME), Université du Québec en Abitibi Témiscamingue, 445 Boul. Université, Rouyn-Noranda, QC J9X 5E4, CanadaResearch Institute on Mines and Environment (RIME), Université du Québec en Abitibi Témiscamingue, 445 Boul. Université, Rouyn-Noranda, QC J9X 5E4, CanadaResearch Institute on Mines and Environment (RIME), Université du Québec en Abitibi Témiscamingue, 445 Boul. Université, Rouyn-Noranda, QC J9X 5E4, CanadaResearch Institute on Mines and Environment (RIME), Université du Québec en Abitibi Témiscamingue, 445 Boul. Université, Rouyn-Noranda, QC J9X 5E4, CanadaThis study investigates the effectiveness of alkaline and cementitious additives in the in situ stabilization of localized acid-generating tailings from a closed gold mine in Abitibi−Témiscamingue, Québec (Eagle/Telbel mine site). Five field cells (including one control) were constructed and equipped with mechanisms for collecting vertical water infiltration and surface runoff. The five cells included: (C1) Control cell; (C2) 5 wt % limestone amendment; (C3) 10 wt % limestone amendment; (C4) 5 wt % half ordinary Portland cement and half fly ash amendment; and (C5) 5 wt % ordinary Portland cement amendment. The control cell showed an acidic behavior (pH < 4.5) with variable concentrations of Fe, Al, Zn, and Cu. The amendments were used to neutralize the acidic leachates and decrease dissolved metal concentrations. Leachates from surface runoff samples of amended cells were less loaded with metals compared to samples of vertical infiltration. All amendment formulations increased the pH of the leachates from approximately 4 to circumneutral values. Furthermore, metal and metalloid concentrations were greatly limited, except for Cr and As for the carbonate-based amendments. Metal(-oid) stabilization was successfully achieved using the different amendment formulations, with the exception of C2, which still released As.https://www.mdpi.com/2075-163X/9/5/314acid mine drainagealkaline amendmentscementitious amendmentskinetic testingJoutel mine
collection DOAJ
language English
format Article
sources DOAJ
author Abdellatif Elghali
Mostafa Benzaazoua
Bruno Bussière
Thomas Genty
spellingShingle Abdellatif Elghali
Mostafa Benzaazoua
Bruno Bussière
Thomas Genty
In Situ Effectiveness of Alkaline and Cementitious Amendments to Stabilize Oxidized Acid-Generating Tailings
Minerals
acid mine drainage
alkaline amendments
cementitious amendments
kinetic testing
Joutel mine
author_facet Abdellatif Elghali
Mostafa Benzaazoua
Bruno Bussière
Thomas Genty
author_sort Abdellatif Elghali
title In Situ Effectiveness of Alkaline and Cementitious Amendments to Stabilize Oxidized Acid-Generating Tailings
title_short In Situ Effectiveness of Alkaline and Cementitious Amendments to Stabilize Oxidized Acid-Generating Tailings
title_full In Situ Effectiveness of Alkaline and Cementitious Amendments to Stabilize Oxidized Acid-Generating Tailings
title_fullStr In Situ Effectiveness of Alkaline and Cementitious Amendments to Stabilize Oxidized Acid-Generating Tailings
title_full_unstemmed In Situ Effectiveness of Alkaline and Cementitious Amendments to Stabilize Oxidized Acid-Generating Tailings
title_sort in situ effectiveness of alkaline and cementitious amendments to stabilize oxidized acid-generating tailings
publisher MDPI AG
series Minerals
issn 2075-163X
publishDate 2019-05-01
description This study investigates the effectiveness of alkaline and cementitious additives in the in situ stabilization of localized acid-generating tailings from a closed gold mine in Abitibi−Témiscamingue, Québec (Eagle/Telbel mine site). Five field cells (including one control) were constructed and equipped with mechanisms for collecting vertical water infiltration and surface runoff. The five cells included: (C1) Control cell; (C2) 5 wt % limestone amendment; (C3) 10 wt % limestone amendment; (C4) 5 wt % half ordinary Portland cement and half fly ash amendment; and (C5) 5 wt % ordinary Portland cement amendment. The control cell showed an acidic behavior (pH < 4.5) with variable concentrations of Fe, Al, Zn, and Cu. The amendments were used to neutralize the acidic leachates and decrease dissolved metal concentrations. Leachates from surface runoff samples of amended cells were less loaded with metals compared to samples of vertical infiltration. All amendment formulations increased the pH of the leachates from approximately 4 to circumneutral values. Furthermore, metal and metalloid concentrations were greatly limited, except for Cr and As for the carbonate-based amendments. Metal(-oid) stabilization was successfully achieved using the different amendment formulations, with the exception of C2, which still released As.
topic acid mine drainage
alkaline amendments
cementitious amendments
kinetic testing
Joutel mine
url https://www.mdpi.com/2075-163X/9/5/314
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