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一种新型浊点萃取方法,使用阳离子表面活性剂在 ICP-DRC-MS 测定前从天然水中分离和预浓缩铬形态。

A novel cloud point extraction approach using cationic surfactant for the separation and pre-concentration of chromium species in natural water prior to ICP-DRC-MS determination.

机构信息

National Centre for Compositional Characterization of Materials, Hyderabad 500062, India.

出版信息

Talanta. 2009 Nov 15;80(1):173-8. doi: 10.1016/j.talanta.2009.06.051. Epub 2009 Jul 1.

Abstract

A novel cloud point phase separation of cationic surfactant, Aliquat-336 and capabilities of its reactive solubilizing sites for selective extraction of chromium species at ultra trace levels was examined in natural water. The phase separation behavior of Aliquat-336 is studied with various additives. The nonionic surfactant, Triton X-114 was found to induce the cloud point phase separation of Aliquat-336. The separation of anionic Cr(VI) was enabled by the formation of ion associate with quaternary ammonium head group of Aliquat-336 at pH 2, and the recovery of Cr(VI) and Cr(III) were 101.4+/-1.4% and 2.2+/-0.4%, respectively at 0.5-1 ng mL(-1), Total Cr was pre-concentrated as Cr-APDC species using the hydrophobic tail group at pH 6.5. The Cr(III) concentration was obtained by subtracting Cr(VI) from total Cr. The recovery of total Cr was 99.5+/-1.2%. Parameters affecting extraction were assessed. The procedure was applied to NIST 1643c and NIST 1643d waters, and the sum of individual species obtained was compared with the certified chromium values. The method was also applied to various natural waters with limits of detection and pre-concentration factor of 0.010 and 0.025 ng mL(-1); 10 and 10, respectively, for Cr(VI) and Cr(III)-APDC using ICP-MS operated in DRC mode.

摘要

研究了阳离子表面活性剂 Aliquat-336 与 Triton X-114 的浊点相分离特性及其对痕量铬形态的选择性增溶作用。考察了各种添加剂对 Aliquat-336 浊点相分离行为的影响。结果表明,非离子表面活性剂 Triton X-114 能诱导 Aliquat-336 发生浊点相分离。在 pH 2 条件下,Cr(VI)与 Aliquat-336 的季铵头基形成离子缔合物而被阴离子化,实现了对 Cr(VI)的分离,在 0.5-1ng·mL(-1)范围内,Cr(VI)和 Cr(III)的回收率分别为 101.4±1.4%和 2.2±0.4%;总铬在 pH 6.5 时,利用疏水尾链形成 Cr-APDC 预富集,再减去 Cr(VI)得到 Cr(III)的浓度。总铬的回收率为 99.5±1.2%。考察了影响萃取的各种参数。该方法用于 NIST 1643c 和 NIST 1643d 标准溶液,所得各形态铬的加和值与标准值一致。该方法还用于各种天然水样的分析,Cr(VI)和 Cr(III)-APDC 的检出限和预富集因子分别为 0.010ng·mL(-1)和 0.025ng·mL(-1)、10 和 10,采用 ICP-MS 结合 DRC 模式进行测定。

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