Giersz Jacek, Bartosiak Magdalena, Jankowski Krzysztof
Warsaw University of Technology, Faculty of Chemistry, Chair of Analytical Chemistry, Noakowskiego Street 3, Warsaw 00-664, Poland.
Talanta. 2017 May 15;167:279-285. doi: 10.1016/j.talanta.2017.02.018. Epub 2017 Feb 9.
Continuous photo-induced generation of mercury cold vapor has been successfully coupled with conventional pneumatic nebulization in programmable temperature spray chamber (PCVG-PN-PTSC) allowing fast, sensitive and easy multi-element analysis. The applied technique enabled simultaneous determination of non-volatile forming elements (Fe, Cu, Mn) and volatile Hg, while 15% formic acid is present in the sample. PTSC elevated temperature (40°C) causes partial conversion of sample matrix into vapor form, thus improving plasma robustness. The efficiency of Hg vapor generation and its transport to the plasma is close to 100%. Moreover, spray chamber temperature stabilization improved the precision of the measurements (Hg signal RSD below 0.5%). The achieved limit of detection for Hg (90pgmL) at 194.23nm with no monochromator purge is better by almost two orders of magnitude than that obtained by conventional PN-ICP-OES. On the other hand, LODs for non-vapor forming elements are comparable to those obtained with pneumatic nebulization. The linear dynamic ranges for all examined elements are at least three orders of magnitude up to 1000ngmL. None mutual interference between examined analytes (Hg, Fe, Cu, Mn) has been observed. The method was validated by the analysis of two CRM materials of different matrix composition (waste water ERM CA713 and estuarine sediment ERM CC580) giving satisfactory results. As low as 2 ppb of Hg can he directly determined in waste water. The proposed procedure uses mild reagents and allows for fast multi-element analysis, and matches green chemistry requirements.
连续光致汞冷蒸气的产生已成功与可编程温度喷雾室中的传统气动雾化相结合(PCVG-PN-PTSC),实现了快速、灵敏且简便的多元素分析。所应用的技术能够在样品中存在15%甲酸的情况下,同时测定非挥发性形成元素(铁、铜、锰)和挥发性汞。PTSC升高的温度(40°C)使样品基质部分转化为蒸气形式,从而提高了等离子体的稳健性。汞蒸气产生及其传输到等离子体的效率接近100%。此外,喷雾室温度稳定提高了测量的精度(汞信号相对标准偏差低于0.5%)。在没有单色仪吹扫的情况下,在194.23nm处实现的汞检测限(90pg/mL)比传统PN-ICP-OES获得的检测限几乎好两个数量级。另一方面,非蒸气形成元素的检测限与气动雾化获得的检测限相当。所有检测元素的线性动态范围至少为三个数量级,高达1000ng/mL。在所检测的分析物(汞、铁、铜、锰)之间未观察到相互干扰。通过对两种不同基质组成的CRM材料(废水ERM CA713和河口沉积物ERM CC580)进行分析验证了该方法,结果令人满意。在废水中可直接测定低至2 ppb的汞。所提出的方法使用温和的试剂,允许进行快速多元素分析,符合绿色化学要求。