Slabov Vladislav, Kota Hanumantha Rao, Chernyshova Irina V
Department of Geoscience and Petroleum, Norwegian University of Science and Technology (NTNU), Trondheim NO-7031, Norway.
Department of Earth and Environmental Engineering, Columbia University, New York, New York 10027, United States.
ACS Omega. 2024 Sep 27;9(40):41456-41467. doi: 10.1021/acsomega.4c04818. eCollection 2024 Oct 8.
The search for environmentally friendly alternatives to petroleum-based reagents in mineral processing requires fundamental studies of novel chemicals in model mineral systems. In this study, we evaluate the potential of acidic (ASL) and lactonic sophorolipids (LSL) as collectors in the froth flotation of ultrafine ceria, which serves as a model rare earth mineral (REM). We compare these two biosurfactants to a conventional petroleum-based collector, benzohydroxamic acid (BHA), in the flotation of ceria against hematite and quartz particles. Our research shows the effect of the oxidation state of ceria on its interaction with both conventional and sophorolipid collectors, which can serve as a tool for selective separation in the applied chemistry of froth flotation. It was found that the affinity of the metal oxides to the biosurfactants at pH 4 decreases in the order of α-FeO > CeO > CeO , where the best collector of ultrafine ceria against hematite is BHA. To support our findings, we study collector-mineral interactions through mini-flotation tests, adsorption density, contact angle, and zeta potential analyses. In addition, we evaluate the stability of the froth during the flotation of the biosurfactants. Our results indicate that modifying the oxidation state of ceria and using sophorolipids hold promise for the sustainable flotation of REM.
在矿物加工中寻找石油基试剂的环保替代品需要在模型矿物系统中对新型化学品进行基础研究。在本研究中,我们评估了酸性槐糖脂(ASL)和内酯型槐糖脂(LSL)作为超细氧化铈泡沫浮选捕收剂的潜力,氧化铈作为一种典型的稀土矿物(REM)。在氧化铈与赤铁矿和石英颗粒的浮选过程中,我们将这两种生物表面活性剂与传统的石油基捕收剂苯甲羟肟酸(BHA)进行了比较。我们的研究表明了氧化铈的氧化态对其与传统捕收剂和槐糖脂捕收剂相互作用的影响,这可以作为泡沫浮选应用化学中选择性分离的一种手段。结果发现,在pH值为4时,金属氧化物对生物表面活性剂的亲和力按α-FeO>CeO>CeO的顺序降低,其中超细氧化铈对赤铁矿的最佳捕收剂是BHA。为了支持我们的研究结果,我们通过微型浮选试验、吸附密度、接触角和zeta电位分析研究了捕收剂与矿物的相互作用。此外,我们评估了生物表面活性剂浮选过程中泡沫的稳定性。我们的结果表明,改变氧化铈的氧化态并使用槐糖脂对稀土矿物的可持续浮选具有前景。