Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Lead Mobilization and Speciation in Mining Waste: Experiments and Modeling

Domaine:

environment and energy

Type de record:

paper
Créateur:
DraArgDelBla
Éditeur:
DirUniLabÉco
Éditeur:
CCSDMDPI
Hôte:avatar
International audience Mining produces significant amounts of solid mineral waste. Mine waste storage facilities are often challenging to manage and may cause environmental problems. Mining waste is often linked to contaminated mine drainage, including acidic waters with more or less elevated concentrations of trace metals such as lead. This work presents a study on the mobilization of lead from waste from two typical mining sites: Zeida and Mibladen, two now-closed former Pb–Zn mines in the Moulouya region of Morocco. Our research investigates the mobilization potential of Pb from the waste of these mines. The study involved acid–base neutralization capacity tests (ANC–BNC) combined with geochemical modeling. Experimental data allowed for the quantification of the buffering capacity of the samples and the mobilization rates of lead as a function of pH. The geochemical model was fitted to experimental results with thermodynamic considerations. The geochemical model allowed for the identification of the mineral phases involved in providing the buffering capacity of carbonated mining waste (Mibladen) and the meager buffering capacity of the silicate mining waste (Zeida). These cases are representative of contaminated neutral drainage (CND) and acid mine drainage (AMD), respectively. The results highlight the consistency between the ANC–BNC experimental data and the associated modeling in terms of geochemical behavior, validating the approach and identifying the main mechanisms involved. The modeling approach identifies the dissolution of the main solid phases, which impact the pH and the speciation of lead as a function of the pH. This innovative approach, combining ANC–BNC experiments and geochemical modeling, allowed for the accurate identification of mineral phases and surface complexation phenomena, which control the release of lead and its speciation in drainage solutions, as well as within solid phases, as a function of pH.

Visit

univ-lyon1.hal.science

Tags

speciationmodelingmobilizationleadmining drainage[SDE.IE]Environmental Sciences/Environmental Engineering

Licenses

info:eu-repo/semantics/OpenAccess

Similaires

The impact of gold ore mining on total lead (Pb) concentration in some mining and residential communities in Zamfara State, NigeriaModeling Machine Learning and Data Mining Problems with FO(*)A Mixed-Methods Analysis of Repression and Mobilization in Bangladesh's July Revolution Using Machine Learning and Statistical ModelingHeavy Metal Contamination of Soil and Surface Water in the Arufu Lead-Zinc Mining District, Middle Benue Trough, NigeriaVarietal Differences Influence Arsenic and Lead Contamination of Rice Grown in Mining Impacted Agricultural Fields of Zamfara State, NigeriaGeochemical Fractionation, Mobility and Environmental Risk of Lead, Cadmium and Zinc in Agricultural Soils from an Abandoned Mining Area in Jos-South, Nigeria

The impact of gold ore mining on total lead (Pb) concentration in some mining and residential communities in Zamfara State, Nigeria

Illegitimate artisanal gold mining quite often results in elevated lead (Pb) concentrations in minin

Modeling Machine Learning and Data Mining Problems with FO(*)

International audience This paper reports on the use of the FO(*) language and the ID

A Mixed-Methods Analysis of Repression and Mobilization in Bangladesh's July Revolution Using Machine Learning and Statistical Modeling

The 2024 July Revolution in Bangladesh represents a landmark event in the study of civil resistance.

Heavy Metal Contamination of Soil and Surface Water in the Arufu Lead-Zinc Mining District, Middle Benue Trough, Nigeria

Varietal Differences Influence Arsenic and Lead Contamination of Rice Grown in Mining Impacted Agricultural Fields of Zamfara State, Nigeria

Geochemical Fractionation, Mobility and Environmental Risk of Lead, Cadmium and Zinc in Agricultural Soils from an Abandoned Mining Area in Jos-South, Nigeria

The total amount of a potentially toxic element in soil, on its own, provides limited information ab