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迈向绿色浮选:槐糖脂生物表面活性剂与硫化铜的相互作用

Toward green flotation: Interaction of a sophorolipid biosurfactant with a copper sulfide.

作者信息

Dhar Priyanka, Havskjold Hakon, Thornhill Maria, Roelants Sophie, Soetaert Wim, Kota Hanumantha Rao, Chernyshova Irina

机构信息

Department of Geoscience and Petroleum, Norwegian University of Science and Technology (NTNU), NO-7031 Trondheim, Norway.

Bio Base Europe Pilot Plant, Rodenhuizekaai 1, 9042 Ghent, Belgium; Centre for Industrial Biotechnology and Biocatalysis (InBio.be), Department of Biotechnology (BW25), Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000 Ghent, Belgium.

出版信息

J Colloid Interface Sci. 2021 Mar;585:386-399. doi: 10.1016/j.jcis.2020.11.079. Epub 2020 Nov 26.

Abstract

The United Nations' Sustainable Development Goals have sparked growing interest in biosurfactants from many surfactant-loaded industries including those utilizing froth flotation for mineral separation. However, the interaction of biosurfactants with mineral surfaces is currently poorly understood. We bridge this gap by studying adsorption of a yeast-derived bola acidic sophorolipid (ASL) biosurfactant on djurleite (CuS). The methods used include Hallimond flotation, contact angle, adsorption isotherm, zeta potential, leaching measurements, and X-ray photoelectron spectroscopy (XPS). To facilitate the interpretation of the adsorption results, we characterize the activity of ASL at the air-water interface and measure its critical micelle concentration (CMC) at different pH using static surface tension. We find ASL to be a multifunctional surfactant with an unusual, pH-sensitive interfacial behavior. At the air-water interface, ASL is most active at pH 8, while its CMC goes through minimum as low as 40 μM at pH 7. The surfactant adsorption at the djurleite-water interface makes the sulfide surface hydrophilic at acidic pH and hydrophobic at neutral and basic pH. In addition, ASL has strong affinity to copper sulfide and demonstrates metal leaching properties. Finally, ASL demonstrates detergency properties. We offer a mechanistic interpretation of these findings. Our results provide a basis for the application of acidic glycolipids in froth flotation and have implications for their application in ion separation using hydrometallurgical routes, as well as for the chemical stability of metal sulfides in environmental systems.

摘要

联合国可持续发展目标引发了包括利用泡沫浮选进行矿物分离的众多含表面活性剂行业对生物表面活性剂的兴趣日益浓厚。然而,目前人们对生物表面活性剂与矿物表面之间的相互作用了解甚少。我们通过研究酵母衍生的双酸性槐糖脂(ASL)生物表面活性剂在铜蓝(CuS)上的吸附来弥补这一差距。所采用的方法包括哈利蒙德浮选法、接触角测量、吸附等温线测定、ζ电位测量、浸出测量以及X射线光电子能谱(XPS)分析。为便于解释吸附结果,我们对ASL在气 - 水界面的活性进行了表征,并使用静态表面张力测量了其在不同pH值下的临界胶束浓度(CMC)。我们发现ASL是一种具有异常pH敏感界面行为的多功能表面活性剂。在气 - 水界面,ASL在pH 8时活性最高,而其CMC在pH 7时低至40 μM达到最小值。在铜蓝 - 水界面的表面活性剂吸附使得硫化物表面在酸性pH下呈亲水性,在中性和碱性pH下呈疏水性。此外,ASL对硫化铜具有很强的亲和力,并表现出金属浸出特性。最后,ASL还具有去污性能。我们对这些发现提供了一种机理解释。我们的结果为酸性糖脂在泡沫浮选中的应用提供了依据,并对其在湿法冶金离子分离中的应用以及金属硫化物在环境系统中的化学稳定性具有启示意义。

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