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Application of factorial designs for optimisation of on-line determination of cadmium, lead and nickel in welding fumes by atomic absorption spectrometry

机译:析因设计在原子吸收光谱法在线测定烟气中镉,铅和镍中的应用

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摘要

A flow-injection flame atomic absorption spectrometric method using diluted nitric acid and ultrasound energy to assist metals acid leaching from welding fumes was optimised. Several variables were simultaneously studied by applying a Plackett-Burman design. Results showed that the statistically significant variables (95%) were concentration of nitric acid solution for cadmium, lead and nickel, ultrasonic water-bath temperature for lead and nickel, and sonication time for nickel. Factors such as ultrasonic water-bath temperature and sonication time were finally optimised by using a central composite design. Detection limits were 0.1, 1.0 and 3.4 μg m~(-3), and repeatability (n= 11) were 3.2, 1.9 and 1.6%, for cadmium, lead and nickel, respectively. The proposed method was applied to the determination of cadmium, lead and nickel in welders' workplace environments.
机译:优化了一种流动注射火焰原子吸收光谱法,该方法利用稀硝酸和超声波能量辅助金属酸从焊接烟气中浸出。通过应用Plackett-Burman设计,同时研究了几个变量。结果表明,统计学上显着的变量(95%)是镉,铅和镍的硝酸溶液浓度,铅和镍的超声水浴温度以及镍的超声处理时间。最终,通过使用中央复合设计优化了超声波水浴温度和超声处理时间等因素。镉,铅和镍的检出限分别为0.1、1.0和3.4μgm〜(-3),重复性(n = 11)分别为3.2、1.9和1.6%。该方法用于焊工工作环境中镉,铅和镍的测定。

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