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首页> 外文期刊>Inorganica Chimica Acta >SORPTION AND COPRECIPITATION OF TRACE CONCENTRATIONS OF THORIUM WITH VARIOUS MINERALS UNDER CONDITIONS SIMULATING AN ACID URANIUM MILL EFFLUENT ENVIRONMENT
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SORPTION AND COPRECIPITATION OF TRACE CONCENTRATIONS OF THORIUM WITH VARIOUS MINERALS UNDER CONDITIONS SIMULATING AN ACID URANIUM MILL EFFLUENT ENVIRONMENT

机译:模拟酸性铀矿废水环境下T与微量元素的痕量OF的吸附和沉淀

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Sorption of thorium by pre-existing crystals of anglesite (PbSO4), apatite (Ca-5(PO4)(3)(OH)), barite (BaSO4), bentonite (Na0.7Al3.3Mg0.7Si8O20(OH)(4)), celestite (SrSO4), fluorite (CaF2), galena (PbS), gypsum (CaSO4 . 2H(2)O), hematite (Fe2O3), jarosite (KFe3(SO4)(2)(OH)(6)), kaolinite (Al2O3 . 2SiO(2) . 2H(2)O), quartz (SiO2) and sodium feldspar (NaAlSi3O8) was studied under conditions that simulate an acidic uranium mill effluent environment. Up to 100% removal of trace quantities of thorium (approx. 1.00 ppm in 0.01 N H2SO4) from solution occurred within 3 h with fluorite and within 48 h in the case of bentonite. Quartz, jarosite, hematite, sodium feldspar, gypsum and galena removed less than 15% of the thorium from solution. In the coprecipitation studies, barite, anglesite, gypsum and celestite were formed in the presence of thorium (approx. 1.00 ppm). Approximately all of the thorium present in solution coprecipitated with barite and celestite; 95% coprecipitated with anglesite and less than 5% with gypsum under similar conditions. When jarosite was precipitated in the presence of thorium, a significant amount of thorium (78%) was incorporated in the precipitate. [References: 18]
机译:预先存在的角晶(PbSO4),磷灰石(Ca-5(PO4)(3)(OH)),重晶石(BaSO4),膨润土(Na0.7Al3.3Mg0.7Si8O20(OH)(4))晶体对th的吸附),天青石(SrSO4),萤石(CaF2),方铅矿(PbS),石膏(CaSO4 .2H(2)O),赤铁矿(Fe2O3),黄钾铁矾(KFe3(SO4)(2)(OH)(6)),在模拟酸性铀厂废水环境的条件下,研究了高岭石(Al2O3。2SiO(2)。2H(2)O),石英(SiO2)和长石钠(NaAlSi3O8)。在萤石矿中3小时内,在膨润土矿中48小时内,溶液中的痕量th(在0.01 N H2SO4中约为1.00 ppm)的去除率高达100%。石英,黄钾铁矾,赤铁矿,长石钠,石膏和方铅矿从溶液中除去的less少于15%。在共沉淀研究中,在存在((约1.00 ppm)的情况下形成了重晶石,角点,石膏和天青石。溶液中存在的all几乎全部与重晶石和天青石共沉淀。在相似的条件下,有95%与角铁共沉淀,少于5%与石膏共沉淀。当黄铁矿在jar的存在下沉淀时,大量((78%)被掺入沉淀物中。 [参考:18]

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