首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Layered Titanate Nanofibers as Efficient Adsorbents for Removal of Toxic Radioactive and Heavy Metal Ions from Water
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Layered Titanate Nanofibers as Efficient Adsorbents for Removal of Toxic Radioactive and Heavy Metal Ions from Water

机译:层状钛酸酯纳米纤维可作为有效的吸附剂,用于去除水中的有毒放射性和重金属离子

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摘要

Titanate nanofibers with two formulas, Na2Ti3O7 and Na_(1.5)H_(0.5)Ti3O7, respectively, exhibit ideal properties for removal of radioactive and heavy metal ions in wastewater, such as Sr~(2+), Ba~(2+) (as substitute of ~(226)Ra~(2+)), and Pb~(2+) ions. These nanofibers can be fabricated readily by a reaction between titania and caustic soda and have structures in which TiO6 octahedra join each other to form layers with negative charges; the sodium cations exist within the interlayer regions and are exchangeable. They can selectively adsorb the bivalent radioactive ions and heavy metal ions from water through ion exchange process. More importantly, such sorption finally induces considerable deformation of the layer structure, resulting in permanent entrapment of the toxic bivalent cations in the fibers so that the toxic ions can be safely deposited. This study highlights that nanoparticles of inorganic ion exchangers with layered structure are potential materials for efficient removal of the toxic ions from contaminated water.
机译:具有两个分子式的钛酸盐纳米纤维分别为Na2Ti3O7和Na_(1.5)H_(0.5)Ti3O7,它们具有理想的去除废水中放射性和重金属离子的特性,例如Sr〜(2 +),Ba〜(2+)(取代〜(226)Ra〜(2+))和Pb〜(2+)离子。这些纳米纤维可以通过二氧化钛和苛性钠之间的反应而容易地制造,并且具有其中TiO6八面体彼此结合形成带负电荷的层的结构。钠阳离子存在于中间层区域内并且可以交换。它们可以通过离子交换过程从水中选择性地吸收二价放射性离子和重金属离子。更重要的是,这种吸附最终导致层结构发生相当大的变形,导致有毒的二价阳离子永久滞留在纤维中,从而可以安全地沉积有毒的离子。这项研究强调,具有分层结构的无机离子交换剂的纳米颗粒是有效去除污水中有毒离子的潜在材料。

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