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采用 2,6-双(5,6-二丙基-1,2,4-三嗪-3-基)吡啶作为萃取剂,进行 Am(III)和 Eu(III)分离的液-液萃取和平板支撑液膜研究。

Liquid-liquid extraction and flat sheet supported liquid membrane studies on Am(III) and Eu(III) separation using 2,6-bis(5,6-dipropyl-1,2,4-triazin-3-yl)pyridine as the extractant.

机构信息

Radiochemistry Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India.

出版信息

J Hazard Mater. 2011 Nov 15;195:238-44. doi: 10.1016/j.jhazmat.2011.08.033. Epub 2011 Aug 17.

DOI:10.1016/j.jhazmat.2011.08.033
PMID:21889846
Abstract

Solvent extraction and supported liquid membrane transport studies for the preferential removal of Am(3+) from feeds containing a mixture of Am(3+) and Eu(3+) was carried out using 2,6-bis(5,6-dipropyl-1,2,4-triazin-3-yl)pyridine (n-Pr-BTP) as the extractant. Diluent plays an important role in these studies. It was observed that the distribution coefficients deteriorate significantly for both Am(3+) and Eu(3+) though the separation factors were affected only marginally. The transport studies were carried out at pH 2.0 in the presence of NaNO(3) to result in the preferential Am(3+) transport with high separation factors. Effect of different experimental parameters, viz. feed composition, stripping agents, diluents of the organic liquid membrane and membrane pore size was studied on the transport and separation behaviour of Am(3+) and Eu(3+). The supported liquid membrane studies indicated about 85% Am(3+) and 6% Eu(3+) transport in 6h using 0.03 M n-Pr-BTP in n-dodecane/1-octanol (7:3) diluent mixture for a feed containing 1M NaNO(3) at pH 2 and a receiver phase containing pH 2 solution as the strippant. Consequently, a permeability coefficient of (1.75 ± 0.21) × 10(-4)cms(-1) was determined for the Am(3+) transport. Stability of the n-Pr-BTP and its SLM was also studied by carrying out the distribution and transport experiment after different time intervals.

摘要

采用 2,6-双(5,6-二丙基-1,2,4-三嗪-3-基)吡啶(n-Pr-BTP)作为萃取剂,进行了从含有 Am(3+)和 Eu(3+)混合物的进料中优先去除 Am(3+)的溶剂萃取和支撑液膜传输研究。稀释剂在这些研究中起着重要作用。尽管分离因子仅受到轻微影响,但观察到 Am(3+)和 Eu(3+)的分配系数都显著恶化。在 pH 2.0 下进行传输研究,并存在 NaNO(3),导致 Am(3+)的优先传输和高分离因子。研究了不同的实验参数,即进料组成、洗脱剂、有机液膜的稀释剂和膜孔径对 Am(3+)和 Eu(3+)的传输和分离行为的影响。支撑液膜研究表明,在 pH 2 下含有 1M NaNO(3)的进料中,使用 0.03M n-Pr-BTP 在正十二烷/1-辛醇(7:3)稀释剂混合物中,在 6 小时内可实现约 85%的 Am(3+)和 6%的 Eu(3+)传输,接收相为含有 pH 2 溶液的洗脱剂。因此,确定 Am(3+)的渗透系数为(1.75 ± 0.21)×10(-4)cm s(-1)。还通过在不同时间间隔后进行分配和传输实验来研究 n-Pr-BTP 和其 SLM 的稳定性。

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