PDF

Speciation and precipitation of heavy metals in high-metal and high-acid mine waters from the Iberian Pyrite Belt (Portugal)

Nuno Durães, Iuliu Bobos

2016enheavy metalsacid mine watersIberian Pyrite Beltspeciationprecipitation

Abstract

Language:

Acid mine waters (AMW) collected during high- and low-flow water conditions from the Lousal, Aljustrel, and São Domingos mining areas (Iberian Pyrite Belt) were physicochemically analyzed. Speciation calculation using PHREEQC code confirms the predominance of Men+ and Me–SO4 species in AMW samples. Higher concentration of sulfate species (Me–SO4) than free ion species (Men+, i.e., Al, Fe, and Pb) were found, whereas opposite behavior is verified for Mg, Cu, and Zn. A high mobility of Zn than Cu and Pb was identified. The sulfate species distribution shows that Fe3+–SO42−, SO42−, HSO4−, Al–SO4, MgSO40, and CaSO40 are the dominant species, in agreement with the simple and mixed metal sulfates and oxy-hydroxysulphates precipitated from AMW. The saturation indices (SI) of melanterite and epsomite show a positive correlation with Cu and Zn concentrations in AMW, which are frequently retained in simple metal sulfates. Lead is well correlated with jarosite and alunite (at least in very acid conditions) than with simple metal sulfates. The Pb for K substitution in jarosite occurs as increasing Pb concentration in solution. Lead mobility is also controlled by anglesite precipitation (a fairly insoluble sulfate), where a positive correlation was ascertained when the SI approaches equilibrium. The zeta potential of AMW decreased as pH increased due to colloidal particles aggregation, where water species change from SO42− to OH− species during acid to alkaline conditions, respectively. The AMW samples were supersaturated in schwertmannite and goethite, confirmed by the Men+–SO4, Men+–Fe–O–OH, or Men+–S–O–Fe–O complexes identified by attenuated total reflectance infrared spectroscopy (ATR-IR). The ATR-IR spectrum of an AMW sample with pH 3.5 (sample L1) shows well-defined vibration plans attributed to SO4 tetrahedron bonded with Fe-(oxy)hydroxides and the Men+ sorbed by either SO4 or Fe-(oxy)hydroxides. For samples with lower pH values (pH ~ 2.5— samples SD1 and SD4), the vibration plans attributed to Men+ sorption are not evidenced, indicating its release in solution.

Download

Cite This Work

@article{0e1c480f-2ffc-44b1-b296-9d91eb6d31b1,
  title={Speciation and precipitation of heavy metals in high-metal and high-acid mine waters from the Iberian Pyrite Belt (Portugal)},
  author={Nuno Durães and Iuliu Bobos},
  year={2016},
  language={en}
}
TY  - JOUR
TI  - Speciation and precipitation of heavy metals in high-metal and high-acid mine waters from the Iberian Pyrite Belt (Portugal)
AU  - Nuno Durães
AU  - Iuliu Bobos
PY  - 2016
LA  - en
ER  -

Similar Items

Chemical hazards associated with treatme

Oyuna Tsydenova, Magnus Bengtsson

This review paper summarizes the existing knowledge on the chemical hazards associated with recycling and other end-of-life treatment options of waste

2026enPDF

Biometallurgical Recovery of Metals from Waste Electrical and Electronic Equipment: a Review

Sadia Ilyas, Jae-chun Lee

The feasibility of biometallurgical processing for recovering heavy metals, precious metals, and rare earth elements from waste electrical and electro

2014enPDF

Current technologies for recovery of metals from industrial wastes: An overview

Santhana Krishnan, Nor Syahidah Zulkapli

Fast industrialization has increased the demand for heavy metals, while high-grade ore natural reserves are diminishing. Therefore, alternative source

2021enPDF

Plant auditing: a powerful tool for improving metallurgical plant performance

Deepak Malhotra

This work discusses the essential components of a rigorous auditing process aimed at enhancing metallurgical plant performance. The objective is to id

2015enPDF

THE FUTURE OF ELECTRONIC WASTE RECYCLING IN THE UNITED STATES: Obstacles and Domestic Solutions

Jennifer Namias, Dr. Nickolas J. Themelis

This study explores the future of electronic waste recycling in the United States, addressing the challenges and proposing domestic solutions. The rap

2013enPDF

A solidification/stabilization process for wastewater treatment sludge from a primary copper smelter

DRAGANA IVŠIĆ-BAJČETA, ŽELJKO KAMBEROVIĆ, MARIJA KORAĆ and MILORAD GAVRILOVSKI

Wastewater treatment sludge from a primary copper smelter is characterized as hazardous waste that requires treatment prior to disposal due to its sig

2013enPDF