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用镍(II)六氰合铁(III)功能化农业残余物-核桃壳从水溶液中选择性去除铯。

Selective removal of cesium from aqueous solutions with nickel (II) hexacyanoferrate (III) functionalized agricultural residue-walnut shell.

机构信息

Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8572, Japan.

Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8572, Japan.

出版信息

J Hazard Mater. 2014 Apr 15;270:187-95. doi: 10.1016/j.jhazmat.2014.01.056. Epub 2014 Feb 7.

Abstract

A novel nickel (II) hexacyanoferrate (III) functionalized agricultural residue-walnut shell (Ni(II)HCF(III)-WS) was developed to selectively remove cesium ion (Cs(+)) from aqueous solutions. This paper showed the first integral study on Cs(+) removal behavior and waste reduction analysis by using biomass adsorption material. The results indicated that the removal process was rapid and reached saturation within 2h. As a special characteristic of Ni(II)HCF(III)-WS, acidic condition was preferred for Cs(+) removal, which was useful for extending the application scope of the prepared biomass material in treating acidic radioactive liquid waste. The newly developed Ni(II)HCF(III)-WS could selectively remove Cs(+) though the coexisting ions (Na(+) and K(+) in this study) exhibited negative effects. In addition, approximately 99.8% (in volume) of the liquid waste was reduced by using Ni(II)HCF(III)-WS and furthermore 91.9% (in volume) of the spent biomass material (Cs-Ni(II)HCF(III)-WS) was reduced after incineration (at 500°C for 2h). Due to its relatively high distribution coefficient and significant volume reduction, Ni(II)HCF(III)-WS is expected to be a promising material for Cs(+) removal in practice.

摘要

一种新型的镍(II)六氰合铁(III)功能化农业残余物-核桃壳(Ni(II)HCF(III)-WS)被开发出来,用于从水溶液中选择性地去除铯离子(Cs(+))。本文首次综合研究了生物质吸附材料对 Cs(+)去除行为和废物减少的分析。结果表明,去除过程迅速,在 2 小时内达到饱和。作为 Ni(II)HCF(III)-WS 的一个特殊特性,酸性条件有利于 Cs(+)的去除,这有助于扩展制备的生物质材料在处理酸性放射性废液中的应用范围。新开发的 Ni(II)HCF(III)-WS 可以选择性地去除 Cs(+),尽管共存离子(本研究中的 Na(+)和 K(+))产生了负面影响。此外,使用 Ni(II)HCF(III)-WS 可将约 99.8%(体积)的液体废物减少,并且在用 500°C 焚烧 2 小时后,用过的生物质材料(Cs-Ni(II)HCF(III)-WS)减少了 91.9%(体积)。由于其较高的分配系数和显著的体积减少,Ni(II)HCF(III)-WS 有望成为实际应用中去除 Cs(+)的一种有前途的材料。

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