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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Colloidal Model for the Prediction of the Extraction of Rare Earths Assisted by the Acidic Extractant
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Colloidal Model for the Prediction of the Extraction of Rare Earths Assisted by the Acidic Extractant

机译:用于预测酸性萃取剂辅助稀土提取的胶体模型

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We propose the statistical thermodynamic model for the prediction of the liquid–liquid extraction efficiency in the case of rare-earth metal cations using the common bis(2-ethyl-hexyl)phosphoric acid (HDEHP) extractant. In this soft matter-based approach, the solutes are modeled as colloids. The leading terms in free-energy representation account for: the complexation, the formation of a highly curved extractant film, lateral interactions between the different extractant head groups in the film, configurational entropy of ions and water molecules, the dimerization, and the acidity of the HDEHP extractant. We provided a full framework for the multicomponent study of extraction systems. By taking into account these different contributions, we are able to establish the relation between the extraction and general complexation at any pH in the system. This further allowed us to rationalize the well-defined optimum in the extraction engineering design. Calculations show that there are multiple extraction regimes even in the case of lanthanide/acid system only. Each of these regimes is controlled by the formation of different species in the solvent phase, ranging from multiple metal cation-filled aggregates (at the low acid concentrations in the aqueous phase), to the pure acid-filled aggregates (at the high acid concentrations in the aqueous phase). These results are contrary to a long-standing opinion that liquid–liquid extraction can be modeled with only a few species. Therefore, a traditional multiple equilibria approach is abandoned in favor of polydisperse spherical aggregate formations, which are in dynamic equilibrium.
机译:我们提出了使用普通双(2-乙基 - 己基)磷酸(HDEHP)萃取剂在稀土金属阳离子的情况下预测液 - 液提取效率的统计热力学模型。在这种基于软物的方法中,溶质是胶体的模拟。自由能表示的领先术语占:络合,形成高度弯曲的萃取膜膜,不同萃取剂头部之间的侧面相互作用,离子和水分子的配置熵,二聚化和酸度HDehp萃取剂。我们为提取系统提供了全组合研究的完整框架。通过考虑这些不同的贡献,我们能够在系统中任何pH下的提取和一般络合之间建立关系。这进一步使我们能够在提取工程设计中合理化最优化的最佳状态。计算表明,即使仅在镧系元素/酸系统的情况下也存在多种提取制度。这些制度中的每一个通过在溶剂相中形成不同物种来控制,从多个金属阳离子填充的聚集体(在水相中的低酸浓度下),以纯酸填充的聚集体(以高酸浓度为单位)在水相中)。这些结果与液 - 液萃取可以仅用少数种类进行建模。因此,传统的多种均衡方法被抛弃有利于具有动态平衡的多分散球形聚集体。

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