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Application of Biosurfactants for Mineral Surface Treatments

机译:生物表面活性剂在矿物表面处理中的应用

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Treatment of mineral surfaces with appropriate surfactants plays an important role in mineral processing operations such as flotation, flocculation and dewatering. Recently biosurfactants, in particular, have received a considerable amount of attention because of their unique surface active properties and biodegradability. In this work we examined the performance of biosurfactants, sugar based alkyl glycosides and sophorolipid esters as reagents to control the hydrophobicity of minerals with selectivity of adsorption on mineral surfaces for flotation applications. It was discovered that n-dodecyl-β-D-maltoside adsorbs on alumina, titania and hematite but, interestingly, not on silica.The hydrophobicity obtained is governed both by the surface coverage as well as the nanostructure of the adsorbed layer in terms of orientation of the adsorbed species. Surprisingly, even though the above surfactants are non-ionic, their adsorption was pH-dependent. We have correlated this pH dependence to the type of species on the mineral surface. Also it is shown that mixing of these surfactants with traditional ones can help reduce the carbon footprint due to synergy between the reagents and help selectivity due to antagonism. The experimental results were analyzed to get information on optimal pH and dosage conditions, for mineral surface modification. The study provides guidance for mineral treatments using biosurfactants and the potential use of these next generation reagents in mineral processing.
机译:具有适当表面活性剂的矿物表面处理在矿物加工操作中起重要作用,例如浮选,絮凝和脱水。特别是生物表面活性剂,特别是由于其独特的表面活性性能和生物降解性而受到相当大的关注。在这项工作中,我们检查了生物表面活性剂,糖基烷基甘油酯和SophoroLipid酯的性能作为试剂,以控制矿物质的疏水性,在浮选应用中的矿物表面上的吸附选择性。发现N-十二烷基-β-D-麦芽糖苷在氧化铝,二氧化钛和赤铁矿上吸附,而是有趣的,而不是在二氧化硅上。所获得的疏水性通过表面覆盖和吸附层的纳米结构来治理吸附物种的定位。令人惊讶的是,即使上述表面活性剂是非离子的,它们的吸附是pH依赖性。我们与矿物表面上的物种类型相关联。结果表明,这些表面活性剂与传统的混合可以有助于降低由于试剂之间的协同作用而减少碳足迹,并通过拮抗作用而有助于选择性。分析实验结果以获取有关最佳pH和用量条件的信息,用于矿物表面改性。该研究提供了使用生物表面活性剂的矿物处理的指导,以及这些下一代试剂在矿物加工中的潜在使用。

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