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Zinc aluminium layered double hydroxides for the removal of iodine and iodide from aqueous solutions

机译:锌铝层状双氢氧化物,用于从水溶液中去除碘和碘化物

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摘要

129I is a radioactive isotope of iodine that is readily absorbed by the body. In this paper we investigated the potential of a 3:1 Zn/Al layered double hydroxide (LDH) as a sorbent for the removal of iodine and iodide from water. Synthetic Zn6Al2(OH)16(CO3)∙4H2O was prepared by the co-precipitation before thermal activation. The LDH was treated with solutions containing iodide and iodine. It was found that iodine could be more easily removed from solution than iodide. Powder X-ray diffraction revealed the destruction of the LDH structure during thermal activation and the successful reformation of a similar LDH material after treatment with the iodide or iodine solution. Thermal decomposition of all samples studied by thermogravimetry appeared to be similar. A new decomposition mechanism similar to one previously described in the literature was proposed for the Zn/Al LDH. The total mass loss of samples treated with iodide and iodine was significantly lower than that of the original LDH indicating that iodine species may form non-removable anions when intercalated into the LDH structure. Evolved gas mass spectrometry failed to detect any iodine species lost as gases during the decomposition of iodide treated LDH however, small quantities of iodine species were observed during decomposition of samples treated with iodine solution.
机译:129I是碘的放射性同位素,很容易被人体吸收。在本文中,我们研究了3:1 Zn / Al层状双氢氧化物(LDH)作为吸附剂从水中去除碘和碘化物的潜力。 Zn6Al2(OH)16(CO3)∙4H2O通过热活化前的共沉淀法制备。用含有碘化物和碘的溶液处理LDH。已经发现,与碘相比,碘可以更容易地从溶液中除去。粉末X射线衍射揭示了在热活化过程中LDH结构的破坏,以及在用碘化物或碘溶液处理后类似LDH材料的成功重整。通过热重法研究的所有样品的热分解似乎相似。对于Zn / Al LDH,提出了一种类似于先前文献中描述的新分解机理。用碘化物和碘处理的样品的总质量损失明显低于原始LDH的质量损失,表明当插入LDH结构中时,碘物质可能会形成不可去除的阴离子。进化的气体质谱法无法检测到在碘化物处理过的LDH分解过程中作为气体损失的任何碘物质,但是,在用碘溶液处理的样品分解过程中观察到少量的碘物质。

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