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On the fundamental aspects of apatite and quartz flotation using a Gram positive strain as a bioreagent

机译:关于使用革兰氏阳性菌株作为生物试剂的磷灰石和石英浮选的基本方面

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Mineral bioflotation encompasses the principles and methods used in mineral flotation using microorganisms as flotation reagents. This work deals with the fundamental aspects of apatite and quartz flotation using Rhodococcus opacus bacteria as a bioreagent. Each mineral sample was conditioning with the bacterial suspension in a rotary shaker under specific conditions as particle size, biomass concentration, pH solution and conditioning time, for all the studies done during the research. The zeta potential results showed a change in zeta potential measurements of the minerals after the bacterial interaction. This change was more significant in the zeta potential curves of apatite than those for quartz. The results also suggest that the bacterial adhesion onto the mineral surfaces was predominantly specific. The greatest apatite notability achieved 90% at pH around 5, in the presence of 150 mg L~(-1) of bacteria after 5 min of flotation. On the other hand, quartz achieved a flotability of 14% under identical experimental conditions. The fundamental flotation studies revealed the prospect that R. opacus presents as a biocoUector and biofrother and indicate its promising application in phosphate flotation industry.
机译:矿物生物浮选法包括使用微生物作为浮选剂进行矿物浮选的原理和方法。这项工作涉及使用不透明红球菌作为生物试剂的磷灰石和石英浮选的基本方面。对于所有矿物样品,在研究过程中进行的所有研究中,均使用细菌悬浮液在旋转振荡器中在特定条件下进行调节,例如粒径,生物质浓度,pH溶液和调节时间。 zeta电位结果表明细菌相互作用后矿物的zeta电位测量值发生了变化。这种变化在磷灰石的ζ电势曲线中比在石英中更显着。结果还表明细菌粘附在矿物表面上主要是特异性的。浮选5分钟后,在存在150 mg L〜(-1)细菌的条件下,pH值约为5时,最大的磷灰石显着性达到90%。另一方面,在相同的实验条件下,石英的浮选度为14%。基本的浮选研究揭示了不透明隐孢子作为生物凝聚剂和生物起泡剂存在的前景,并表明了其在磷酸盐浮选工业中的应用前景。

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