新型羟肟酸类捕收剂在稀土矿物选别中的应用研究进展

Research Progress in the Application of Novel Hydroxamic Acid Collectors for the Beneficiation of Rare−earth Minerals

  • 摘要: 稀土作为关键战略资源,在新能源、高端制造等领域具有不可替代的核心应用价值。浮选是应用最广的稀土矿物分离技术,其核心环节在于捕收剂的选择,捕收剂直接决定分选效果与资源利用效率。综述了近年来新型羟肟酸类捕收剂的研究进展。新型烷基羟肟酸类主要通过柔性脂肪链改性引入氨基/酰胺基、杂化硫氮官能团、构建双异羟肟酸头基及优化烷基链等策略,显著提升在氟碳铈矿浮选中的性能;新型芳香族羟肟酸类则引入杂环、烯烃、卤素等修饰刚性芳环骨架或构建双异羟肟酸对稀土离子进行多齿螯合,以改善捕收能力与选择性,其性能受空间位阻及抑制剂协同作用影响较大。然而,当前研究仍存在应用高度集中于氟碳铈矿、对关键脉石抑制不足及工业验证缺失等局限。未来应拓展对独居石、磷钇矿等其他稀土矿物的应用研究;融合烷基和芳香族两类结构优势设计综合型捕收剂;开发低成本、环境友好的合成路线;以及研究其在复杂矿浆体系中与调整剂的协同作用机制,以推动工业应用。

     

    Abstract: Rare earth elements (REEs) serve as critical strategic resources with irreplaceable core application value in fields such as renewable energy and advanced manufacturing. Froth flotation is the most widely employed separation technology for REE minerals, where the selection of collectors is the pivotal step, directly determining the separation efficiency and resource utilization. This review summarizes recent advances in novel hydroxamic acid collectors. For alkyl hydroxamic acids, performance in bastnaesite flotation has been significantly enhanced through strategies including introducing amino/amide groups via flexible aliphatic chain modification, hybridizing sulfur-nitrogen functional groups, constructing di-hydroxamic acid headgroups, and optimizing alkyl chain structures. For aromatic hydroxamic acids, modifications such as incorporating heterocycles, olefin groups, or halogen atoms into the rigid aromatic framework, or forming di-hydroxamic acid structures for multidentate chelation with REE ions, have been employed to improve collecting capability and selectivity, with performance notably influenced by steric hindrance and synergistic effects with depressants. Nevertheless, current research exhibits notable limitations, including a predominant focus on bastnaesite, insufficient suppression of key gangue minerals, and a lack of industrial validation. Future research should extend the application studies to other rare earth minerals such as monazite and xenotime; integrate the structural advantages of both alkyl and aromatic types to design comprehensive collectors; develop low-cost and environmentally friendly synthetic routes; and investigate the synergistic mechanisms with regulators in complex pulp systems to promote industrial applications.

     

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