Dung Le Thi Kim, Imai Tomoki, Tomioka Osamu, Nakashima Mikio, Takahashi Kuniaki, Meguro Yoshihiro
Radioactive Ore Processing Technology, Institute for Technology of Radioactive and Rare Elements, Vietnam Atomic Energy Commission, Hanoi, Vietnam.
Anal Sci. 2006 Nov;22(11):1425-30. doi: 10.2116/analsci.22.1425.
The supercritical fluid extraction (SFE) method using CO(2) as a medium with an extractant of HNO(3)-tri-n-butyl phosphate (TBP) complex was applied to extract uranium from several uranyl phosphate compounds and simulated uranium ores. An extraction method consisting of a static extraction process and a dynamic one was established, and the effects of the experimental conditions, such as pressure, temperature, and extraction time, on the extraction of uranium were ascertained. It was found that uranium could be efficiently extracted from both the uranyl phosphates and simulated ores by the SFE method using CO(2). It was thus demonstrated that the SFE method using CO(2) is useful as a pretreatment method for the analysis of uranium in ores.
采用以二氧化碳为介质、硝酸-磷酸三丁酯(TBP)络合物为萃取剂的超临界流体萃取(SFE)方法,从几种磷酸铀酰化合物和模拟铀矿石中萃取铀。建立了由静态萃取过程和动态萃取过程组成的萃取方法,并确定了压力、温度和萃取时间等实验条件对铀萃取的影响。结果发现,采用以二氧化碳为介质的SFE方法可以从磷酸铀酰和模拟矿石中高效萃取铀。由此证明,采用以二氧化碳为介质的SFE方法作为矿石中铀分析的预处理方法是有用的。