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使用钯基改性剂和原位净化的电热原子吸收光谱法测定全血和尿液中的镉

Determination of cadmium in whole blood and urine electrothermal atomic absorption spectrometry using palladium-based modifiers and in situ decontamination.

作者信息

Moreira M de F, Curtius A J, de Campos R C

机构信息

Fundação Osvaldo Cruz, Rio de Janiero, Brazil.

出版信息

Analyst. 1995 Mar;120(3):947-50. doi: 10.1039/an9952000947.

Abstract

The determination of Cd in whole blood and urine by electrothermal atomic absorption spectrometry using Pd-based modifiers and in situ decontamination was studied. The performance of Pd, Pd + NH4NO3, and Pd + Mg(NO3)2 as modifiers were compared with respect to maximum pyrolysis and atomization temperatures, background attenuation, linear calibration range and matrix interference. Samples were diluted (1 + 4) with 0.1% Triton X-100 (blood) or 0.2% HNO3 (urine), and introduced onto the graphite tube platform already containing the in situ dried and decontaminated modifier. The influence of modifier volume and concentration, as well as that of the dilution ratio was investigated. The proposed procedure involves the use of Pd(NO3)2 + (Mg(NO3)2 as modifier, a pyrolysis temperature of 700 degree C and an in situ decontamination step of 1200 degrees C. The atomization temperature was 1700 degrees C. The detection limit (n = 10, k = 3) was 0.22 micrograms l-1 for both samples. Typical relative standard deviation values (n = 3) were below 3%. Using matrix-matched standards, good agreement was observed between experimental and reference values in the analysis of certified reference materials. Interlaboratory comparison data have confirmed the validity of the proposed analytical procedure.

摘要

研究了使用钯基改性剂和原位净化技术通过电热原子吸收光谱法测定全血和尿液中的镉。比较了钯、钯+硝酸铵和钯+硝酸镁作为改性剂在最大热解温度和原子化温度、背景衰减、线性校准范围和基体干扰方面的性能。样品用0.1% Triton X-100(血液)或0.2%硝酸(尿液)按(1 + 4)稀释,并引入已含有原位干燥和净化改性剂的石墨管平台。研究了改性剂体积和浓度以及稀释比的影响。所提出的方法包括使用硝酸钯+硝酸镁作为改性剂,热解温度为700℃,原位净化步骤温度为1200℃。原子化温度为1700℃。两个样品的检测限(n = 10,k = 3)均为0.22微克/升。典型的相对标准偏差值(n = 3)低于3%。使用基体匹配标准,在分析有证标准物质时,实验值与参考值之间观察到良好的一致性。实验室间比对数据证实了所提出分析方法的有效性。

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