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Photo-induced chemical vapour generation with formic acid: novel interface for high performance liquid chromatography-atomic fluorescence spectrometry hyphenated system and application in speciation of mercury

机译:甲酸产生的光致化学蒸气:高效液相色谱-原子荧光光谱联用系统的新型界面及其在汞形态分析中的应用

摘要

Based on a novel photo-induced chemical vapour generation (CVG) with formic acid instead of the conventional K2S2O8/KBH4 system, an on-line coupled HPLC and atomic fluorescence spectrometry procedure was developed for the speciation of inorganic mercury, methylmercury (MeHg), ethylmercury (EtHg) and phenylmecury (PhHg). Under UV irradiation, the decomposition of organic mercury species and the reduction of Hg2+ could be completed in one step with this proposed photo-induced CVG system. The novel CVG system used formic acid only, which simplified the flow system and avoided the possibility of contamination originating from additional chemicals. A number of operating parameters including organic acid species, concentration of formic acid, pH, flow rate of formic acid and flow rate of carrier gas were optimized, and comparable method sensitivities with the conventional K2S2O8/KBH4 system were obtained. The limits of detection at the optimized conditions were 0.81, 0.20 and 0.87 mg L-1 for MeHg, EtHg and PhHg, respectively. The developed method was validated by determination of certified reference material DORM-2 and was further applied in determination of seafood samples. The new CVG system is simple, environmentally benign, and inexpensive for the speciation analysis of mercury. It is expected to have similar applications in other analytical atomic spectrometric techniques as well as speciation of other organic metal compounds.
机译:基于用甲酸代替传统的K2S2O8 / KBH4系统的新型光致化学气相生成(CVG),开发了在线耦合HPLC和原子荧光光谱法用于无机汞,甲基汞(MeHg),乙基汞(EtHg)和苯基汞(PhHg)。在这种紫外光照射下,该光诱导的CVG系统可以一步完成有机汞物种的分解和Hg2 +的还原。新颖的CVG系统仅使用甲酸,从而简化了流动系统并避免了由于其他化学物质引起的污染。优化了许多操作参数,包括有机酸种类,甲酸浓度,pH,甲酸流速和载气流速,并获得了与常规K2S2O8 / KBH4系统相当的方法灵敏度。在最佳条件下,MeHg,EtHg和PhHg的检出限分别为0.81、0.20和0.87 mg L-1。所开发的方法通过确定标准参考物质DORM-2的有效性得到验证,并进一步应用于海鲜样品的测定中。新的CVG系统简单,环保且对汞的形态分析便宜。有望在其他分析原子光谱技术以及其他有机金属化合物的形成中具有类似的应用。

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