Zhai Guangshu, Liu Jingfu, Li Lu, Cui Lin, He Bin, Zhou Qunfang, Jiang Guibin
State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, China.
Talanta. 2009 Feb 15;77(4):1273-8. doi: 10.1016/j.talanta.2008.08.032. Epub 2008 Sep 9.
A novel on-line coupled HPLC-hydride generation (HG)-ICP/MS system was developed for rapid, direct and sensitive speciation of methyltins in seawater without any pretreatment step. Methyltin compounds were separated by reversed phase HPLC, and then on-line reacted with potassium borohydride and acetic acid to generate volatile hydride products. The volatile derivatization products were separated in the spray chamber of ICP/MS and then introduced into ICP/MS by argon gas for detection. Monomethyltin (MMT), dimethyltin (DMT) and trimethyltin (TMT) were baseline separated in less than 15 min by reversed phase HPLC. The influence of KBH(4) concentration and type of acid on the system performance was investigated and optimized. Calibration curves, based on peak heights against concentration, were linear in the range of 0.5-50 ng (Sn) mL(-1) of methyltins with correlation coefficients of 0.9990, 0.9990 and 0.9996 for MMT, DMT and TMT, respectively. The relative standard deviations measured at 10 ng (Sn) mL(-1) for these three methyltins were in the range of 0.6-1.4% (n=5), and the calculated detection limits (S/N=3) for MMT, DMT and TMT were 0.266, 0.095 and 0.039 ng (Sn) mL(-1), respectively. This method was successfully applied to the speciation of methyltins in seawater with spiked recovery in the range of 95.4-106.9%. MMT and DMT were detected in all the seawater samples with concentrations in the range of 1.0-1.5 and 0.30-0.57 ng (Sn) mL(-1) for MMT and DMT, respectively.
开发了一种新型的在线联用高效液相色谱-氢化物发生(HG)-电感耦合等离子体质谱(ICP/MS)系统,用于快速、直接且灵敏地测定海水中甲基锡的形态,无需任何预处理步骤。甲基锡化合物通过反相高效液相色谱进行分离,然后在线与硼氢化钾和乙酸反应生成挥发性氢化物产物。挥发性衍生化产物在ICP/MS的雾化室中分离,然后通过氩气引入ICP/MS进行检测。一甲基锡(MMT)、二甲基锡(DMT)和三甲基锡(TMT)通过反相高效液相色谱在不到15分钟内实现基线分离。研究并优化了硼氢化钾浓度和酸的类型对系统性能的影响。基于峰高与浓度的校准曲线在甲基锡浓度为0.5 - 50 ng(Sn)mL⁻¹范围内呈线性,MMT、DMT和TMT的相关系数分别为0.9990、0.9990和0.9996。这三种甲基锡在10 ng(Sn)mL⁻¹时的相对标准偏差在0.6 - 1.4%范围内(n = 5),MMT、DMT和TMT的计算检测限(S/N = 3)分别为0.266、0.095和0.039 ng(Sn)mL⁻¹。该方法成功应用于海水中甲基锡的形态分析,加标回收率在95.4 - 106.9%范围内。在所有海水样品中均检测到了MMT和DMT,MMT和DMT的浓度分别在1.0 - 1.5 ng(Sn)mL⁻¹和0.30 - 0.57 ng(Sn)mL⁻¹范围内。