受天然铀矿物形成条件的启发,通过改变含铀废液的物理化学条件,即能在含铀废液中形成较稳定沥青铀矿或者其他沉淀物,实现除铀目的。这种除铀方法被定义为沥青铀矿结晶法。在不同的物理化学条件下采用此方法处理了含铀废液,其结果表明,...受天然铀矿物形成条件的启发,通过改变含铀废液的物理化学条件,即能在含铀废液中形成较稳定沥青铀矿或者其他沉淀物,实现除铀目的。这种除铀方法被定义为沥青铀矿结晶法。在不同的物理化学条件下采用此方法处理了含铀废液,其结果表明,升高温度、降低Eh,除铀速度加快,除铀效率提高,其中,在物理化学条件为T=85℃、p H=3、Eh=+61.1 m V时,铀元素以沥青铀矿的形式从溶液中析出,除铀率高达99.6%,效果良好。展开更多
The adsorption of uranium(Ⅵ)on the manganese oxide coated zeolite(MOCZ)from aqueous solution was investigated in a fixed-bed column.The experiments were conducted to investigate the effects of bed height,flow rate,pa...The adsorption of uranium(Ⅵ)on the manganese oxide coated zeolite(MOCZ)from aqueous solution was investigated in a fixed-bed column.The experiments were conducted to investigate the effects of bed height,flow rate,particle size,initial concentration of uranium(Ⅵ),initial pH,presence of salt and competitive ions.The U-uptake by MOCZ increased with initial uranium(Ⅵ)concentration and bed height,but decreased as the flow rate and particle size increased.In the presence of salt and competitive ions,the breakthrough time was shorter.The adsorption capacity reached a maximum at pH of 6.3.The Thomas model was applied to the experimental data to determine the characteristic parameters of the column for process design using linear regression.The breakthrough curves calculated from the model were in good agreement with the experimental data.The BDST model was used to study the influence of bed height on the adsorption of uranium(Ⅵ).Desorption of uranium(Ⅵ)in the MOCZ column was investigated.The column could be used for at least four adsorption-desorption cycles using 0.1mol.L-1 NaHCO3 solution as the elution.After desorption and regeneration with deionized water,MOCZ could be reused to adsorb uranium(Ⅵ)at a comparable capacity.Compared to raw zeolite,MOCZ showed better capacity for uranium(Ⅵ)removal.展开更多
文摘受天然铀矿物形成条件的启发,通过改变含铀废液的物理化学条件,即能在含铀废液中形成较稳定沥青铀矿或者其他沉淀物,实现除铀目的。这种除铀方法被定义为沥青铀矿结晶法。在不同的物理化学条件下采用此方法处理了含铀废液,其结果表明,升高温度、降低Eh,除铀速度加快,除铀效率提高,其中,在物理化学条件为T=85℃、p H=3、Eh=+61.1 m V时,铀元素以沥青铀矿的形式从溶液中析出,除铀率高达99.6%,效果良好。
基金Supported by the National Science Foundation for Postdoctoral Sciemists of China (20070420811) and the Science and Technology Department of Henan Province in China (200510459016).
文摘The adsorption of uranium(Ⅵ)on the manganese oxide coated zeolite(MOCZ)from aqueous solution was investigated in a fixed-bed column.The experiments were conducted to investigate the effects of bed height,flow rate,particle size,initial concentration of uranium(Ⅵ),initial pH,presence of salt and competitive ions.The U-uptake by MOCZ increased with initial uranium(Ⅵ)concentration and bed height,but decreased as the flow rate and particle size increased.In the presence of salt and competitive ions,the breakthrough time was shorter.The adsorption capacity reached a maximum at pH of 6.3.The Thomas model was applied to the experimental data to determine the characteristic parameters of the column for process design using linear regression.The breakthrough curves calculated from the model were in good agreement with the experimental data.The BDST model was used to study the influence of bed height on the adsorption of uranium(Ⅵ).Desorption of uranium(Ⅵ)in the MOCZ column was investigated.The column could be used for at least four adsorption-desorption cycles using 0.1mol.L-1 NaHCO3 solution as the elution.After desorption and regeneration with deionized water,MOCZ could be reused to adsorb uranium(Ⅵ)at a comparable capacity.Compared to raw zeolite,MOCZ showed better capacity for uranium(Ⅵ)removal.