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Selective Flotation of Pyrite from Galena Using Chitosan with Different Molecular Weights

机译:使用不同分子量的壳聚糖从方铅矿选择性浮选黄铁矿

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Pyrite is a major gangue mineral associated with galena and other valuable minerals, and it is necessary to selectively remove pyrite to upgrade the lead concentrate by froth flotation. In this study, the flotation experiments of a single mineral and mixed minerals were performed using chitosan with different molecular weights (MW = 2?3, 3?6, 10 and 100 kDa) as a depressant, ethyl xanthate as a collector, and terpineol as a frother, in a bid to testify the separation of pyrite from galena. Flotation results showed that the selective flotation of pyrite from galena can be achieved under the preferred reagent scheme, i.e., 400 g/t chitosan (10 kDa), 1600 g/t ethyl xanthate, and 100 g/t terpineol, while chitosan with other molecular weights cannot. Furthermore, the results of the zeta potential and contact angle measurements revealed that chitosan (10 kDa) has a strong adsorption on galena yet a very weak adsorption on pyrite at the dosage of 400 g/t. This study showed that chitosan (10 kDa) has great potential in the industrial flotation separation of pyrite from lead concentrates.
机译:黄铁矿是与方铅矿和其他有价值的矿物相关的主要脉石,并且有必要选择性地去除黄铁矿以通过泡沫浮选来提纯铅精矿。在这项研究中,使用具有不同分子量(MW = 2?3、3?6、10和100 kDa)的壳聚糖作为抑制剂,黄原酸乙酯作为捕收剂和萜品醇进行了单一矿物和混合矿物的浮选实验。作为起泡剂,以证明从方铅矿中分离出黄铁矿。浮选结果表明,方铅矿可选择性浮选方铅矿中的黄铁矿,即400 g / t的壳聚糖(10 kDa),1600 g / t的黄原酸乙酯和100 g / t的松油醇,而脱乙酰壳多糖可与其他分子量不能。此外,zeta电位和接触角测量的结果表明,壳聚糖(10 kDa)在方铅矿上具有很强的吸附能力,而剂量为400 g / t时,对黄铁矿的吸附能力很弱。这项研究表明,壳聚糖(10 kDa)在从浮选铅精矿中分离黄铁矿的工业浮选中具有巨大潜力。

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