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Liquid–liquid extraction of uranium(VI) in the system with a membrane contactor

机译:用膜接触器液-液萃取系统中的铀(VI)

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摘要

Raising role of the nuclear power industry, including governmental plans for the construction of first nuclear power plant in Poland, creates increasing demand for the uranium-based nuclear fuels. The project implemented by Institute of Nuclear Chemistry and Technology concerns the development of effective methods for uranium extraction from low-grade ores and phosphorites for production of yellow cake—U3O8. The Liqui-Cel® Extra-Flow 2.5 × 8 Membrane Contactor produced by CELGARD LLC (Charlotte, NC) company is the main component of the installation for liquid–liquid extraction applied for processing of post leaching liquors. In the process of membrane extraction the uranyl ions from aqueous phase are transported through the membrane into organic phase. The flow of two phases in the system was arranged in co-current mode. The very important element of the work was a selection of extracting agents appropriate for the membrane process. After preliminary experiments comprising tests of membrane resistivity and determination of extraction efficiency, di(2-ethylhexyl)phosphoric acid was found to be most favourable. An important aspect of the work was the adjustment of hydrodynamic conditions in the capillary module. To avoid the membrane wettability by organic solvent and mixing two phases equal pressure drops along the membrane module to minimize the transmembrane pressure, were assumed. Determination of pressure drop along the module was conducted using Bernoulli equation. The integrated process of extraction/re-extraction conducted in continuous mode with application of two contactors was designed.
机译:提高核电行业的作用,包括政府计划在波兰建设第一座核电站,使对铀基核燃料的需求不断增加。核化学技术研究所实施的项目涉及开发从低品位矿石和磷矿中提取铀以生产黄饼U3O8的有效方法。 CELGARD LLC(北卡罗来纳州夏洛特)公司生产的Liqui-Cel ® Extra-Flow 2.5×8膜接触器是液-液萃取装置的主要组件,该装置用于后浸液的加工。在膜萃取过程中,水相中的铀酰离子通过膜传输到有机相中。系统中的两相流以并流模式排列。这项工作中非常重要的元素是选择适合膜工艺的萃取剂。经过初步的实验,包括膜电阻率测试和萃取效率的测定,发现二(2-乙基己基)磷酸是最有利的。这项工作的一个重要方面是调整毛细管模块中的流体动力学条件。为了避免膜被有机溶剂润湿并混合两相,沿膜组件的压降相等,以使跨膜压力最小。使用Bernoulli方程确定沿模块的压降。设计了采用两个接触器以连续模式进行提取/再提取的集成过程。

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