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Removal of the radionuclides from aqueous solutions by biosorption on the roots of the dandelion (Taraxacum officinale)

机译:通过在蒲公英根上的生物吸附去除水溶液中的放射性核素(蒲公英)

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摘要

A novel biosorbent-dandelion root (DRB)-was investigated as adsorbent for removal of Sr(II) and Am(III) from aqueous solutions. Batch equilibrium experiments were carried out to study the effect of contact time, initial concentration of the metal and pH of the media as well as of the sorbent amount. The equilibrium time was found to be 90 min for adsorption of both radionuclides. The kinetic model can be described by the pseudo-second-order model well, and the isotherm model is fitted to Freundlich model the best. The maximum adsorption capacity of the DRB at pH about 6.0 was calculated to be 63.7 and 80.6 g kg(-1) for Sr(II) and Eu(III), respectively. About 90 % of Am(III) and 80 % of Sr(II) were removed when 30 mg of the biosorbent was used in 1 mL of the solution. Use of the sequential portions of the fresh sorbent is expected to increase efficiency of the process. Complexation of Sr(II) and Am(III) by strong chelating agents, e.g., citrate, oxalate and EDTA, did not diminish significantly the sorption efficiency of the sorbent. Once sorbed, <1 % of each radionuclide was desorbed by water.
机译:研究了一种新型生物吸附剂蒲公英根(DRB)作为吸附剂,可从水溶液中去除Sr(II)和Am(III)。进行间歇平衡实验以研究接触时间,金属的初始浓度和介质的pH值以及吸附剂量的影响。发现两种放射性核素的吸附平衡时间均为90分钟。动力学模型可以用伪二阶模型很好地描述,而等温模型最适合Freundlich模型。在pH约为6.0时,DRB对Sr(II)和Eu(III)的最大吸附容量分别为63.7和80.6 g kg(-1)。当在1 mL溶液中使用30 mg生物吸附剂时,大约90%的Am(III)和80%的Sr(II)被除去。预期使用新鲜吸附剂的顺序部分将增加该方法的效率。 Sr(II)和Am(III)与强螯合剂(例如柠檬酸盐,草酸盐和EDTA)的络合不会显着降低吸附剂的吸附效率。一旦被吸附,每种放射性核素的<1%被水解吸。

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