Photochemical vapor generation of lead for inductively coupled plasma mass spectrometric detection

Photochemical vapor generation (PCVG) of lead was successfully achieved with a simplified and convenient system, in which only low molecular weight organic acid and a high-efficiency photochemical reactor were needed. The reactor was used to generate lead volatile species when a solution of lead con...

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Veröffentlicht in:Spectrochimica acta. Part B: Atomic spectroscopy 2016-06, Vol.120, p.63-68
Hauptverfasser: Duan, Hualing, Zhang, Ningning, Gong, Zhenbin, Li, Weifeng, Hang, Wei
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Sprache:eng
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Zusammenfassung:Photochemical vapor generation (PCVG) of lead was successfully achieved with a simplified and convenient system, in which only low molecular weight organic acid and a high-efficiency photochemical reactor were needed. The reactor was used to generate lead volatile species when a solution of lead containing a small amount of low molecular weight organic acid was pumped through. Several factors, including the concentration of acetic acid, the concentration of hydrochloride acid, and the irradiation time of UV light were optimized. Under the optimal conditions, including the addition of 0.90% (v/v) acetic acid and 0.03% (v/v) hydrochloride acid, and irradiation time of 28s, intense and repeatable signal of lead volatile species was successfully obtained and identified with inductively coupled plasma mass spectrometry (ICPMS). In addition, the effects from inorganic anions and transition metal ions, including Cl−, NO3−, SO42−, Cu2+, Fe3+, Co2+ and Ni2+, were investigated, which suggests that their suppression to the PCVG of lead was in the order of Cl−
ISSN:0584-8547
1873-3565
DOI:10.1016/j.sab.2016.04.003