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Metastable Dissolution Regularity of Nd3+ in Na2CO3 Solution and Mechanism

机译:Nd3 +在Na2CO3溶液中的亚稳态溶解规律及其机理

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摘要

The carbonate solution-dissolved rare earth showed some metastable chemical characteristics. In this paper, the systematic investigation of metastable dissolution regularity of Nd3+ in Na2CO3 solution was carried out. The results showed that Nd3+ has an instantaneous saturated solubility in Na2CO3 solution. When the amount of the dissolution Nd3+ did not reach the instantaneous saturated solubility, the solution was in a stable-state period. Once the concentration of Nd3+ exceeded the instantaneous saturated solubility, the solution was no longer in the metastable state and generated the neodymium double salt of carbonate precipitates rapidly. The molecular dynamics simulation of the solution in the metastable state was carried out. In high concentration Na2CO3 solution, dissolved Nd3+ had a coordination reaction with the CO32–. Also, there was a stronger interaction between Na+ and CO32–, which caused the effective concentration of free CO32– which could react with Nd3+ to become lower. Thus, these reasons make the solution exhibit a metastable state. In that metastableperiod, the dissolved Nd3+ becomes steady and hard to generatethe neodymium double salt of carbonate precipitates.
机译:碳酸盐溶液溶解的稀土表现出一些亚稳态的化学特征。本文对Nd 3 + 在Na2CO3溶液中的亚稳溶解规律进行了系统的研究。结果表明,Nd 3 + 在Na2CO3溶液中具有瞬时饱和溶解度。 Nd 3 + 的溶解量未达到瞬时饱和溶解度时,溶液处于稳定状态。一旦Nd 3 + 的浓度超过瞬时饱和溶解度,溶液将不再处于亚稳态,并迅速生成碳酸钕钕复合盐沉淀。进行了亚稳态溶液的分子动力学模拟。在高浓度的Na2CO3溶液中,溶解的Nd 3 + 与CO3 2 – 具有配位反应。此外,Na + 与CO3 2-之间存在更强的相互作用,这导致有效浓度的游离CO3 2-可能与Nd 3 + 降低。因此,这些原因使解决方案呈现出亚稳态。在那个亚稳态期间,溶解的Nd 3 + 变得稳定且难以生成碳酸盐钕复盐沉淀。

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