吹扫捕集-气相色谱串联质谱法测定水中4种嗅味物质

Determination of four odorous substances in water by purge and trap-gas chromatography-tandem mass spectrometry

  • 摘要:
    背景 随着饮用水嗅味事件不断发生,水中嗅味物质成为水质分析中关注的热点。由于水中致嗅物质嗅阈值浓度极低且嗅味成分复杂,准确定性、定量分析比较困难,因此开发一种高灵敏、准确定性定量的分析方法十分必要。
    目的 建立吹扫捕集-气相色谱串联质谱法同时测定水中4种嗅味物质(二甲基二硫醚、二甲基三硫醚、2-甲基异莰醇和土臭素)的方法。
    方法 取一定量的水样置于吹扫捕集仪的样品瓶中,通过氮气吹扫,将水样中的嗅味物质吹扫出来并富集在捕集阱中。随后加热捕集阱,使嗅味物质在高温条件下迅速释放,并被载气带入气相色谱,经程序升温,Agilent DB-624毛细管色谱柱(30 m×0.25 mm,1.4 μm)分离,串联质谱法多反应监测模式测定,以内标法定量。本方法对实验过程的吹扫时间、水样中氯化钠浓度、解吸温度、解吸时间和分流比进行了优化。在优化的实验条件下,对方法的标准曲线、检出限、定量限进行验证,并对水样进行5.0、10.0、30.0、80.0 ng·L−1加标回收和精密度试验,最后将所建立的方法用于湖州市德清县地区的水源水、出厂水和管网水中嗅味物质的检测。
    结果 本研究优化后的吹扫时间为20 min,解吸温度为280 ℃,解吸时间为2 min,分流比为10∶1,吹扫过程不加氯化钠。在优化的实验条件下,4种嗅味物质在1~100 ng·L−1浓度范围内线性良好,相关系数(R)均大于0.999,方法检出限为0.3 ng·L−1,定量限为1.0 ng·L−1,平均加标回收率为85.5%~102.4%,相对标准偏差(RSD)为1.6%~5.2%。应用本法对本地水源水、出厂水和管网水进行检测后发现,2-甲基异莰醇和土臭素检出率较高,而二甲基二硫醚和二甲基三硫醚检出率较低,仅有一份水源水检出二甲基二硫醚,二甲基三硫醚均未检出。
    结论 该方法结合吹扫捕集和串联质谱的优势,具有样品处理简单,抗干扰能力强,准确度和精密度好等优点,满足GB 5749-2022《生活饮用水卫生标准》水质扩展指标和参考指标中对4种嗅味物质的限值要求,也为水质评估和嗅味物质的分析提供了技术支持。

     

    Abstract:
    Background With the events reporting on odors in drinking water, odorous substances in water have become a hot topic in water quality analysis. Due to the low concentration of the odor threshold and the complexity of the odor components in water, it is difficult to make accurate qualitative and quantitative analysis. So it is necessary to develop a highly sensitive and accurate qualitative and quantitative analysis method.
    Objective To establish a method for simultaneous determination of four odorous substances, including dimethyl disulfide, dimethyl trisulfide, 2-methylisoborneol, and geosmin in water by purge and trap-gas chromatography-tandem mass spectrometry.
    Methods A certain amount of water sample was stored in the sample vial of a purge and trapinstrument. Through nitrogen purging, the odorous substances in water were purged out and enriched in the trap. Subsequently, the odorous substances were rapidly released at high temperatures after heating the trap, and then carried by carrier gas into gas chromatograph. After temperature programming, the substances were separated by an Agilent DB-624 capillary chromatographic column (30 m×0.25 mm, 1.4 μm) and determined by tandem mass spectrometry in multiple reaction monitoring modes, with internal standard method for quantification. The current project optimized purge time, sodium chloride concentration in water sample, desorption temperature, desorption time, and split ratio during the experimental process. Under the optimized experimental conditions, the standard curve, detection limit, and quantification limit were validated. Recovery tests with spiking concentrations of 5.0, 10.0, 30.0, 80.0 ng·L−1 and precision tests were conducted on water samples. Finally, the established method was applied to detect odorous substances in source water, finished water, and pipeline water in Deqing County of Huzhou City.
    Result After the optimization, the purge time was 20 min, the desorption temperature was 280 ℃, the desorption time was 2 min, the split ratio was 10∶1, and no sodium chloride was added during the purge process. Under the optimized experimental conditions, the calibration curves for the four odorous substances showed an excellent linearity in the range of 1 to 100 ng·L−1 (R>0.999), with 0.3 ng·L−1 limit of detection and 1.0 ng·L−1 limit of quantitation. The average recoveries were from 85.5% to 102.4% and relative standard deviations (RSD) from 1.6% to 5.2%. After applying this method to detect local source water, finished water, and pipeline water, it was found that the positive rates of 2-methylisoborneo, and geosmin were relatively high, while the positive rates of dimethyl disulfide and dimethyl trisulfide were relatively low. Only one sample of source water tested positive for dimethyl disulfide, and all samples were negative for dimethyl trisulfide.
    Conclusion Combined with the superiority of purge and trap and tandem mass spectrometry, the method has the advantages of easy to perform, strong anti-interference ability, good accuracy and precision, which meet the limit requirements of the four odorous substances in the expanded indices and reference indices of Hygienic standards for drinking water (GB 5749-2022). It also provides technical support for water quality assessment and analysis of odorous substances.

     

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