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Peculiarities of sorption isotherm and sorption chemisms of caesium by mixed nickel-potassium ferrocyanide based on hydrated titanium dioxide

机译:基于水合二氧化钛的混合镍-亚铁氰化钾对铯的吸附等温线和吸附化学性质

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摘要

Sorption isotherm of caesium from tap water by mixed nickel-potassium ferrocyanide based on hydrated titanium dioxide is obtained for a wide range of concentrations of caesium. It is shown that there are three types of specificity to caesium sorption sites in this sorbent. Sorption chemisms of caesium are studied, factors conditioned high sorption capacity of the sorbent are revealed. It is shown that occupation of sorption sites I and II is well approximated by Langmuir equilibrium and this process can be described within the bounds of theory of ion exchange. The expected sorption chemism of caesium by sorption sites III at high concentrations of caesium (>50 mg L-1) is precipitation of mixed nickel-caesium ferrocyanide in pore space of the sorbent. © 2013 Akadémiai Kiadó, Budapest, Hungary.
机译:在宽范围的铯浓度下,可以通过基于水合二氧化钛的混合镍-亚铁氰化钾从自来水中对铯进行吸附等温线。结果表明,该吸附剂对铯的吸附位点有三种特异性。研究了铯的吸附化学性质,揭示了影响吸附剂高吸附能力的因素。结果表明,吸附位点I和II的占据可以通过朗缪尔平衡很好地近似,并且该过程可以在离子交换理论的范围内描述。在高浓度的铯(> 50 mg L-1)下,吸附位点III预期的铯吸附化学性质是混合的镍-亚铁氰化铯在吸附剂的孔空间中的沉淀。 ©2013AkadémiaiKiadó,匈牙利布达佩斯。

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