首页> 外文学位 >Interactions des residus miniers et du lixiviat d'une couverture de sous-produits de desencrage dans le contexte du controle du drainage minier acide (French text).
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Interactions des residus miniers et du lixiviat d'une couverture de sous-produits de desencrage dans le contexte du controle du drainage minier acide (French text).

机译:在酸性矿山排水控制的背景下,脱墨副产品覆盖层中矿山尾矿和渗滤液的相互作用(法文)。

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Mine-wastes contain sulfide minerals, which are able to react with atmospheric water and oxygen to produce sulfuric acid. This production induces the decrease of pH and favors the solubilization of heavy metals. These reactions are called acid mine drainage and is one of the environmental priority of mine industry.; To prevent the oxygen flow through the mine tailings, a cover of deinking by-products were set on two mine sites: Eustis and Albert (PQ, Canada). The production of an organic-rich leachate from the cellulose degradation was noticed. This leachate eventually flows through the mine tailings. This study aims at understanding the interactions between the organic leachate and mine tailings in the point of view of preventing acid mine drainage and of the biodegradation of the organic components from the leachate.; In-situ observations, batch and column essays showed that the anaerobic environment induced by the cover of deinking by-products, the seepage and the organic- and carbonates-rich leachate cause an increase of the pH and improve the characteristics of the oxidized mine tailings. The initiation of acid mine drainage was not noticed in the unoxidized and mixed tailings. Moreover, sulfate-reduction and methanogenesis allowed the attenuation of the organic components from the deinking by-products leachate, producing alkalinity that improved the acid mine drainage characteristics.
机译:矿山废料中含有硫化物,这些硫化物能够与大气中的水和氧气反应生成硫酸。该产生引起pH降低,并有利于重金属的溶解。这些反应称为酸性矿山排水,是矿山工业的环境优先事项之一。为了防止氧气流过矿山尾矿,在两个矿场(Eustis和Albert)(加拿大PQ)设置了脱墨副产物的覆盖层。注意到从纤维素降解产生富含有机物的浸出液。该渗滤液最终流过矿山尾矿。从防止酸性矿山排水和渗滤液中有机成分的生物降解的角度出发,本研究旨在了解有机渗滤液与矿山尾矿之间的相互作用。现场观察,批处理和专栏文章表明,脱墨副产物的覆盖,渗流以及富含有机和碳酸盐的浸出液引起的厌氧环境导致pH值升高,并改善了氧化矿渣的特性。 。在未氧化和混合的尾矿中未发现酸性矿山排水的开始。此外,硫酸盐的还原和甲烷化作用使脱墨副产物渗滤液中的有机成分衰减,产生碱度,从而改善了酸性矿山的排水特性。

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