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On-line chemical vapour generation of cadmium in the presence of hexacyanochromate(III) for determination by inductively coupled plasma mass spectrometry (ICP-MS)

机译:在线电感耦合等离子体质谱法化学蒸气发生在hexacyanochromate(III)的存在镉测定(ICp-ms)

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摘要

A vapour generation (VG) procedure has been described for determination of Cd by ICP-MS. Volatile species of Cd were generated on-line by interacting acidic sample solution containing potassium hexacyanochromate(III), K3Cr(CN)6, with sodium borohydride (NaBH4). The hexacyanochromate(III) complex was generated on-line by reacting 0.04 mol L−1 chromium(III) nitrate and 0.16 mol L−1 potassium cyanide (KCN) solutions in water. The resulting suspension of chromium(III) hydroxide, Cr(OH)3, was fed continuously to acidic stream of sample solution in the presence of excess KCN. The experimental conditions were optimized for effective generation of volatile species of Cd. Optimum signals were obtained from reaction of sample solutions in 4% v/v HCl with 2% m/v NaBH4 solution. Presence of K3Cr(CN)6 improved the efficiency of Cd vapour generation substantially affording 15-fold higher sensitivity. This phenomenon was thought to occur through formation of reactive intermediates evolved from interaction of [Cr(CN)6]3− with NaBH4 that react with Cd(II) to increase the yield volatile Cd species. Under the optimum conditions, no significant interferences were observed from the transition metals, including Cu and Ni, up to 1.0 μg mL−1 levels. Among the hydride forming elements, Bi, Pb, Sb and Sn depressed the signals above 0.1 μg mL−1. The detection limits (3s) were 6.2 and 5.2 ng L−1 for 110Cd and 111Cd isotopes, respectively. The method was successfully applied to determination of Cd by ICP-MS in several certified reference materials, including Nearshore seawater (CASS-4), Bone ash (SRM 1400), Dogfish liver (DOLT-4) and Mussel tissue (SRM 2976).
机译:已经描述了用于通过ICP-MS测定Cd的蒸气产生(VG)程序。含有六氰基铬酸钾(III),K3Cr(CN)6的酸性样品溶液与硼氢化钠(NaBH4)相互作用可在线产生Cd的挥发性物种。通过使0.04 mol L -1 硝酸铬(III)和0.16 mol L -1 氰化钾(KCN)溶液在线反应生成六氰基铬酸盐(III)络合物水。在过量的KCN存在下,将所得的氢氧化铬(III)悬浮液Cr(OH)3连续送入酸性溶液中。优化了实验条件以有效产生Cd的挥发性物质。从样品溶液在4%v / v HCl中与2%m / v NaBH4溶液反应可获得最佳信号。 K3Cr(CN)6的存在提高了Cd蒸气产生的效率,从而显着提高了15倍的灵敏度。该现象被认为是通过形成反应性中间体而发生的,该中间体是由[Cr(CN)6] 3-与NaBH4相互作用而形成的,该中间体与Cd(II)反应,从而增加了挥发性Cd的生成量。在最佳条件下,最高至1.0μgmL -1 的过渡金属(包括Cu和Ni)都没有观察到明显的干扰。在氢化物形成元素中,Bi,Pb,Sb和Sn抑制信号在0.1μgmL -1 以上。 110 Cd和 111 Cd同位素的检出限(3s)分别为6.2 ng L −1 。该方法已成功地通过ICP-MS测定了几种认证参考材料中的Cd,其中包括近岸海水(CASS-4),骨灰(SRM 1400),Dog鱼肝(DOLT-4)和贻贝组织(SRM 2976)。

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