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On the fundamentals aspects of hematite bioflotation using a Gram positive strain

机译:用革兰阳性菌株的赤铁矿生物功能塑料的基础方面

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The use of microorganisms and/or their metabolic products is becoming an attractive alternative in mineral processing. In that sense, this research deals with the use of the hydrophobic gram positive Rhodococcus erythropolis bacteria as a possible substitute of synthetic reagents used in hematite flotation. Bacterial growth experiments, using culture media of tryptic soy broth (TSB) and yeast and malt extract with glucose (YMG) separately, showed a greater bacterial density for the first one. In addition, it was observed that the isoelectric point (IEP) of hematite was shifted after biomass interaction, suggesting that the bacterial cells were adhered onto the mineral surface. Moreover, bacterial adhesion was higher at acidic pH, which also suggests an electrostatic attraction between the mineral surface and the biomass at this pH range. Microflotation tests were carried out in a modified Hallimond tube achieving a maximum hematite floatability of 83.86% at pH 6. Finally. the kinetics of the process followed a second order model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:微生物和/或其代谢产物的使用正在成为矿物加工的有吸引力的替代品。从这种意义上讲,该研究涉及使用疏水革兰氏阳性rhodococccus rythopolis细菌作为赤铁矿浮选中使用的合成试剂的替代品。细菌生长实验,使用胰蛋白酶大豆肉汤(TSB)和酵母和麦芽提取物分别用葡萄糖(YMG)的培养基和麦芽提取物,表现出更大的细菌密度。另外,观察到赤铁矿的等电点(IEP)在生物质相互作用后移位,表明将细菌细胞粘附在矿物表面上。此外,酸性pH下细菌粘附较高,这也表明在该pH范围内矿物表面和生物质之间的静电吸引。在改性的雄蕊管中进行微型透明试验在pH6上实现最大赤铁矿浮动性为83.86%。该过程的动力学遵循二阶模型。 (c)2016 Elsevier Ltd.保留所有权利。

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