Eichelberger J W, Bellar T A, Donnelly J P, Budde W L
U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio 45268.
J Chromatogr Sci. 1990 Sep;28(9):460-7. doi: 10.1093/chromsci/28.9.460.
New drinking water regulations require the monitoring of eight volatile organic compounds that have established maximum contaminant levels (MCLs) and 51 other volatile organics for which MCLs are not established. A laboratory analytical method (Method 524.2) for the determination of 58 of these compounds is investigated, and precision and accuracy data are obtained. The method uses a standard inert gas purge extraction, isolation of the volatile organics on a three-stage solid-phase trap, thermal desorption into a gas chromatograph, separation with a fused-silica capillary column, and identification and measurement with a relatively low cost, benchtop ion trap detector that functions as a mass spectrometer. At a concentration of 2 micrograms/L (2 parts per billion), the grand mean measurement accuracy for 54 compounds was 95% of the true value with a mean relative standard deviation (RSD) of 4%. At 0.2 micrograms/L (200 parts per trillion), the grand mean measurement accuracy for 52 compounds was 95% of the true value with a mean RSD of 3%.
新的饮用水法规要求监测8种已确定最大污染物水平(MCL)的挥发性有机化合物以及51种尚未确定MCL的其他挥发性有机物。研究了一种用于测定其中58种化合物的实验室分析方法(方法524.2),并获得了精密度和准确度数据。该方法采用标准惰性气体吹扫萃取,在三级固相捕集阱上分离挥发性有机物,热解吸进入气相色谱仪,用熔融石英毛细管柱分离,并用一种成本相对较低、用作质谱仪的台式离子阱检测器进行鉴定和测量。在浓度为2微克/升(十亿分之二)时,54种化合物的总体平均测量准确度为真实值的95%,平均相对标准偏差(RSD)为4%。在0.2微克/升(万亿分之200)时,52种化合物的总体平均测量准确度为真实值的95%,平均RSD为3%。