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SEM and EDS observations of carrollite bioleaching with a mixed culture of acidophilic bacteria

机译:嗜酸性细菌混合培养物对钙镁矿生物浸出的SEM和EDS观察

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Bioleaching of high purity carrollite minerals with mesophilic bacteria was carried out and monitored by observations in scanning electron microscopy (SEM) and elemental X-ray microanalysis (EDS) to provide evidence of the interaction pattern between carrollite and microorganisms. A bacterial consortium involving three different acidophilic chemolithotrophs was adopted. The evolution of the surface topography, inside alteration effects and elemental composition of the mineral with leaching time was followed. It could be postulated that bacterial adhesion takes place on the mineral surface, resulting in the formation of dissolution pits of various shapes and continues by boring elongated channels deep inside the mineral grains. Enhanced concentration of ferric iron and sulphur could be assumed in vicinity of the zones where mineralized polymer substances are precipitated. It could be inferred that carrollite dissolution is governed by cooperative bioleaching involving oxidation induced by bacteria attached to the surface and ferric iron re-oxidized by planktonic bacteria in suspension. (C) 2014 Elsevier Ltd. All rights reserved.
机译:通过扫描电子显微镜(SEM)和元素X射线显微分析(EDS)的观察,进行了中温细菌对高纯度卡罗莱特矿物的生物浸提和监测,以提供卡罗莱特与微生物之间相互作用模式的证据。一个细菌财团涉及三种不同的嗜酸化学嗜盐菌。随浸出时间追踪了矿物的表面形貌,内部变化效应和元素组成的演变。可以推测,细菌粘附发生在矿物表面上,导致形成各种形状的溶蚀坑,并通过在矿物颗粒内部深处钻出细长的通道而继续。可以假设在矿化的聚合物物质沉淀的区域附近,铁和硫的浓度增加。可以推断出,钙镁矿的溶解是由协同生物浸出控制的,该生物浸出涉及附着在表面的细菌引起的氧化和悬浮水中浮游细菌再氧化的三价铁。 (C)2014 Elsevier Ltd.保留所有权利。

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