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使用农药标准品对电子捕获检测器和火焰光度检测器的线性和灵敏度进行的比较研究。

Comparative study of the linearity and sensitivity of electron capture and flame photometric detectors using a pesticide standard.

作者信息

Cochrane W P, Maybury R B, Greenhalgh R G

出版信息

J Environ Sci Health B. 1979;14(2):197-212. doi: 10.1080/03601237909372122.

Abstract

A study was undertaken to compare and evaluate the different types of 63Ni and 3H electron capture (ECD) and flame photometric detectors (FPD) as part of the Canadian Check Sample Program on Pesticide Residue Analysis. Twenty-seven laboratories were supplied with chlorpyrifos standard solutions for the determination of linear range and minimum detectable amounts (MDA). Each laboratory selected its own operating conditions except for the FPD study. Results for the FPD were compared with standardized flame conditions designed to optimize the exponential factor i, the S-mode. The MDA of the ECDs (pulsed and direct-current) ranged from 0.09 to 0.17 pg/sec for 63Ni and 3H sources respectively. The corresponding MDA for the linearized ECDs (pulse modulated or constant current) was 0.04 pg/sec and a linear range of 10(4) or greater with nitrogen as the carried gas. Use of argon/methane and a pulse width of 0.1 usec extended this range to 10(5) but the sensitivity was not as great as with nitrogen carrier gas. The practical limit of detector sensitivity was found to be instrument dependent depending primarily on the noise level. In the FPD study, operating in the P-mode gave an average MDA of 5.97 pg/sec and a linear range of 2 x 10(3). Similarly, the S-mode parameters were 81.1 pg/sec and 8 x 10(2) respectively with an average exponential factor of n 1.8. Attempts to apply optimized detector gas-flow conditions improved sensitivity and linearity in the S-mode only.

摘要

作为加拿大农药残留分析检查样品计划的一部分,开展了一项研究,以比较和评估不同类型的63Ni和3H电子捕获检测器(ECD)以及火焰光度检测器(FPD)。向27个实验室提供了毒死蜱标准溶液,用于测定线性范围和最低检测量(MDA)。除FPD研究外,每个实验室自行选择操作条件。将FPD的结果与旨在优化指数因子i(S模式)的标准化火焰条件进行比较。对于63Ni和3H源,ECD(脉冲和直流)的MDA分别为0.09至0.17 pg/秒。线性化ECD(脉冲调制或恒流)的相应MDA为0.04 pg/秒,以氮气作为载气时线性范围为10(4)或更大。使用氩气/甲烷和0.1微秒脉冲宽度可将此范围扩展至10(5),但灵敏度不如使用氮气载气时高。发现检测器灵敏度的实际极限取决于仪器,主要取决于噪声水平。在FPD研究中,在P模式下操作时平均MDA为5.97 pg/秒,线性范围为2 x 10(3)。同样,S模式参数分别为81.1 pg/秒和8 x 10(2),平均指数因子n为1.8。尝试应用优化的检测器气流条件仅提高了S模式下的灵敏度和线性度。

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