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Recovery of Copper from Pyritic Copper Ores Using a Biosurfactant-Producing Mixotrophic Bacterium as Bioflotation Reagent

机译:使用生物表面活性剂的混合营养细菌从基质铜矿中恢复铜,作为生物透明试剂

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In an attempt to investigate the use of bacteria and their metabolites as bioflotation reagents for environmentally friendly mineral processing, laboratory cell flotation tests were carried out using copper sulfide ores bearing a high content of pyrite, which were mixed with a biosurfactant-producing mixotrophic bacterium as bioflotation reagents. The interaction of bacterial cells and their metabolic products with the sulfide ores resulted in the alteration of the surface chemistry of both ores and bacterial cells as evidenced by FTIR and SEM-EDS observations as well as surface tension and contact angle measurements. The change in the surface properties of the sulfide ores in turn enabled the bacterium to function as flotation bioregeants in the flotation of copper sulfide ores as a function of bacterial cell concentration, conditioning time, flotation time and pH. Overall, the bacterium and its metabolites as bioreagents yielded flotation recoveries which might be attributed to the multi-function of the bacterium as depressant, collector and frother. Thus, the bacteria tested in this study could potentially be used as flotation bioreagents, providing an alternative to conventional flotation reagents.
机译:在尝试研究使用细菌和代谢物作为生物透明化试剂进行环保矿物加工时,使用承载高含量的硫铁矿的硫化铜矿进行实验室细胞浮选试验,其与生物表面活性剂的混合营养细菌混合生物透明试剂。细菌细胞及其代谢产物与硫化物矿石的相互作用导致矿石和细菌细胞的表面化学改变,如FTIR和SEM EDS观察和表面张力和接触角测量所证明的。硫化物矿石的表面性质的变化又使细菌能够在硫化铜矿石中的浮选中作为细菌细胞浓度,调理时间,浮选时间和pH的函数来用作浮选生物的功能。总体而言,细菌及其代谢产物作为生物学产生浮选回收率,其可能归因于细菌的多功能作为抑制剂,收集器和其他。因此,本研究中测试的细菌可能被用作浮选生物,提供常规浮选试剂的替代方法。

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