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1.
Sci Total Environ ; 759: 143456, 2021 Mar 10.
Artículo en Inglés | MEDLINE | ID: mdl-33218813

RESUMEN

Iron ore tailings (IOT) represent a major problem in the mining industry worldwide due to large volumes of waste disposed in mine sites. IOT are exposed to the environment and subjected to wind and water dispersion, even under non-catastrophic scenarios as dam collapses, and the effects of these particles to the biota are still mostly unknown. This work aimed to prepare and to characterize a suspension containing the finest (micro/nano range) particles of IOT and to evaluate its effects on development and behavior of zebrafish (Danio rerio), at both embryonic and larval stages. IOT suspension comprised 37 mg L-1 of a multi-mineral material mainly composed by hematite and quartz, in a size-range of 33-1400 nm. Regarding in vivo toxicological assays, no robust alterations were recorded in functional, morphological and behavioral end-points analyzed, although a significant adhesion of IOT particles on zebrafish chorion was observed, without a prejudice of embryo hatching. Under applied conditions, iron ore particles did not present harmful effects to the initial stages of zebrafish development, and the particle size range and potential interactions with SiO2 content might be behind such effect.


Asunto(s)
Nanopartículas , Pez Cebra , Animales , Embrión no Mamífero , Hierro , Larva , Dióxido de Silicio
3.
Chemosphere ; 253: 126665, 2020 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-32278191

RESUMEN

Acid mine drainage (AMD) represents a major problem in the mining industry worldwide due to the risk of water and soil pollution. Its active treatment involves the addition of alkaline reagents such as NaOH or Ca(OH)2 to increase the pH and precipitate the dissolved metals, although substantial amounts of dissolved ions might persists. Under a remediation approach, the aim of this work was to assess the chemical and physical characteristics of treated effluent and to evaluate its ecotoxicological effects on zebrafish (Danio rerio) embryonic and larval stages, through developmental, functional, morphological, and behavioral end-points. The studied AMD sample, highly associated with pyrite, presented high sulfate and dissolved metal ions content and was submitted to the following treatment conditions: NaOH - pH 7.0 and 8.7, and Ca(OH)2 - pH 7.0 and 8.7. All neutralizing treatments resulted in a satisfactory reduction of the metals concentration, with best results achieved using Ca(OH)2 at pH 8.7; although Mn and As still remained above or very near the discharge maximum limits according to Brazilian legislation. Therefore, an additional step was employed to Mn and As adsorption by algal biomass. Regarding in-vivo toxicological assays, no significant lethality was recorded in all treated AMD groups, although adverse effects were observed in all endpoints analyzed. Ca(OH)2 groups performed closer to control than NaOH-treated groups. The additional polishing stage treatment with the algae Scenesmus sp. allowed tenuous improvements in terms of removal of residual amounts of As and Mn but not in the toxicological characteristics of treated AMD.


Asunto(s)
Minería , Contaminantes Químicos del Agua/química , Ácidos/química , Adsorción , Animales , Brasil , Ecotoxicología , Concentración de Iones de Hidrógeno , Hierro , Metales/análisis , Sulfatos , Sulfuros , Agua , Contaminantes Químicos del Agua/análisis , Contaminantes Químicos del Agua/toxicidad , Pez Cebra/fisiología
4.
Eng. sanit. ambient ; 21(2): 337-345, tab, graf
Artículo en Portugués | LILACS | ID: lil-787455

RESUMEN

RESUMO: Rejeitos de carvão contêm vários minerais, entre os quais a pirita, que se oxida e gera a drenagem ácida de minas (DAM), um efluente ácido com alto poder poluidor. Atualmente, o setor de mineração de carvão brasileiro controla a DAM por meio do tratamento pelo método de neutralização/precipitação de metais, que consome substanciais quantidades de reagentes e gera um grande volume de lodo. O objetivo deste trabalho foi estudar a minimização da geração da DAM por outra abordagem, o método preventivo de isolamento e exclusão de sulfetos. O processo consiste na remoção da pirita da massa de resíduos, reduzindo a geração de acidez e minimizando a carga de metais nas estações de tratamento. A metodologia do trabalho consistiu na separação gravimétrica por meio denso de uma amostra típica de rejeito de carvão, obtendo-se três frações densimétricas: inferior a 2,2, entre 2,2 e 2,7 e superior a 2,7. Cada fração foi submetida às análises imediata e elementar. Também foram realizados ensaios estáticos e cinéticos em células úmidas para avaliação da geração de acidez no rejeito bruto e na fração com densidade intermediária. Os resultados demonstraram que, por intermédio do beneficiamento gravimétrico dos rejeitos, é possível reduzir em 30% o volume de material descartado. Esse material apresenta um potencial de geração de acidez líquido de 80 a 90% inferior ao do rejeito de carvão bruto. Além disso, estima-se que os custos com reagentes no tratamento de águas ácidas produzidas da mineração de carvão possam ser reduzidos em aproximadamente 85%.


ABSTRACT: Coal wastes contain many minerals, including the pyrite, which oxidize and generates the acid mine drainage (AMD), a highly polluting effluent. Currently, the Brazilian coal mining operations emphasise AMD control using waste water treatment systems which consume substantial amounts of reagents and generate large amounts of sludge. The aim of this work was to study the acid mine drainage control by another approach, the sulphide exclusion preventive method. The method comprises in removing the pyrite form coal tailings, reducing the acid generation and minimizing the metals load in wastewater treatment plants. Accordingly, a typical coal waste sample was submitted to a density separation process to divide the sample in the following relative density ranges: below 2.2, from 2.2 to 2.7 and above 2.7. All density fractions were submitted to ultimate and proximate analysis. Static and kinetic tests were carried with the raw waste and the pyrite-free fraction. The results showed that, by gravity processing of coal tailings, it is possible to decrease 30% the volume of wastes. The remaining material presents an acid generation potential of about 80-90% lower than the raw waste. Furthermore, it is expected a reduction in costs of reagents of approximately 85% in acid mine treatment plants.

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