静态顶空-气质联用法同时测定汽修喷漆工人尿液中22种挥发性有机物

Simultaneous determination of 22 volatile organic compounds in urine of automotive spray painting workers using static headspace gas chromatography-mass spectrometry

  • 摘要:
    背景 汽车维修作业人员在进行喷漆作业时接触的挥发性有机物(VOCs)种类繁多,危害工人的健康,生物监测可以直接反映机体内负荷水平,因此开发一种同时测定汽修喷漆工人尿液中VOCs的分析方法十分必要。
    目的 建立汽修企业喷漆岗位工人尿液中22种VOCs的静态顶空-气质联用测定法。
    方法 使用自动顶空进样器进行尿液样品前处理,对静态顶空-气质联用法(GC-MS)的顶空条件和色谱、质谱条件进行优化:通过优化升温程序实现22种VOCs的分离,通过优化定量离子提高灵敏度,通过对顶空平衡温度、平衡时间与无机盐用量的优化提高VOCs的信号响应值。采用空白尿液加标的方式对方法的检出限、定量下限、准确度、精密度及稳定性进行检测,并采集天津市汽修企业喷漆岗位40例工人尿液进行方法的应用考察。
    结果 本研究顶空平衡温度为80 ℃,平衡时间为30 min,样品加盐量为2.0 g,选择DB-624ms色谱柱进行22种VOCs的分离,色谱柱升温程序:50 ℃保持15 min,以10 ℃·min−1升至85 ℃并保持10 min,再以5 ℃·min−1升至90 ℃,保持20 min,选择单离子检测扫描模式进行22种VOCs的定量分析。本方法测定汽修企业喷漆岗位工人尿液中22种待测物线性较好,相关系数均在0.990以上,各组分定量下限在0.4~3.8 µg·L−1之间,样品加标回收率为80.1%~112.1%,相对标准偏差(RSD)为1.5%~9.7%。所有待测物在4 ℃条件下可保存5 d,在−20 ℃条件下可保存7 d。应用本法对天津市汽修企业喷漆岗位40例工人尿液样本进行检测,乙酸丁酯的检出率为37.5%、二甲苯的检出率为32.5%、甲苯的检出率为30.0%、异丙醇的检出率为25.0%,检出浓度范围为<定量下限~60.56 µg·L−1
    结论 本研究建立的22种VOCs的静态顶空-气质联用法,具有操作简单方便、灵敏度高、选择性好和准确度高的特点,适用于汽修企业喷漆岗位工人尿液中22种VOCs的同时定量检测,可为尿液中VOCs研究提供技术支持。

     

    Abstract:
    Background Automotive repair workers are exposed to a wide variety of volatile organic compounds (VOCs) during painting operations, which poses significant health risks. Biomonitoring can directly reflect the internal body burden of these compounds. Therefore, it is essential to develop an analytical method for simultaneous determination of VOCs in the urine of automotive spray painting workers.
    Objective To establish a static headspace gas chromatography-mass spectrometry (GC-MS) method for simultaneously determining 22 VOCs in the urine of spray painting workers in automotive repair enterprises.
    Methods An automatic headspace sampler was used for the pretreatment of urine samples. The headspace conditions as well as the chromatographic and mass spectrometric conditions of static headspace GC-MS were optimized. The separation of 22 VOCs was achieved by optimizing the temperature program. Sensitivity was enhanced by optimizing the quantitative ions. The signal response of VOCs was improved by optimizing the headspace equilibrium temperature, equilibrium time, and the amount of inorganic salt added. The method's detection limit, lower limit of quantification, accuracy, precision, and stability were tested using blank urine samples spiked with standards. Additionally, the method was applied to examine 40 urine samples collected from painting workers in automotive repair enterprises in Tianjin.
    Results In this study, the headspace equilibrium temperature was set at 80 ℃, the equilibrium time was 30 min, and the salt addition amount was 2.0 g. A DB-624ms chromatographic column was selected for the separation of 22 VOCs. The initial temperature of heating program was 50 ℃, maintained for 15 min, and then increased to 85 ℃ at a heating rate of 10 ℃·min−1 for 10 min, followed by increasing to 90 ℃ at a heating rate of 5 ℃·min−1 for 20 min. The single ion monitoring (SIM) mode was chosen for the quantitative analysis of the 22 VOCs. The method demonstrated good linearity for determining 22 target analytes in the urine of spray painting workers, with correlation coefficients all above 0.990. The lower limits of quantification (LOQ) for the components ranged from 0.4 to 3.8 μg·L−1. The spiked recovery rates of the samples were between 80.1% and 112.1%, and the relative standard deviations (RSD) ranged from 1.5% to 9.7%. All target analytes could be stored at 4 ℃ for 5 d and at −20 ℃ for 7 d. This method was applied to evaluate urine samples from 40 spray painting workers in automotive repair enterprises in Tianjin. The positive rate of butyl acetate was 37.5%. The positive rate of xylene was 32.5%. The positive rate of toluene was 30.0%. The positive rate of isopropanol was 25.0%. The concentration range of the detected substances was from <lower limit of quantification to 60.56 µg·L−1.
    Conclusion The established simultaneous determination protocol of 22 VOCs by static headspace- GC-MS is characterized by its simplicity, high sensitivity, excellent selectivity, and high accuracy. It is suitable for urine samples of spray painting workers in automotive repair industry.

     

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