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    在线固相萃取-超高效液相色谱-串联质谱法同时测定污水中18种毒品及其代谢物的含量

    Simultaneous Determination of 18 Drugs and Their Metabolites in Wastewater by Online Solid Phase Extraction-Ultra-High Performance Liquid Chromatography-Tandem Mass Spectrometry

    • 摘要: 自制了一款集采样、前处理和仪器分析为一体的全自动污水违禁药物在线监测系统,利用该系统中的在线固相萃取-超高效液相色谱-串联质谱法可实现污水中18种毒品及其代谢物含量的同时测定。水样经自动采集、静置、两次过滤后,利用注射泵自动添加同位素内标溶液,曝气,静置10 min后用注射泵抽取10 mL样品,由高压输液泵输送至Waters Oasis HLB Direct Connect HP固相萃取柱,以甲醇-水体系进行自动富集和净化,净化液由二元超高压输液泵载入色谱-质谱系统,其中的目标物在Waters ACQUITY UPLC HSS T3色谱柱上以不同体积比的乙腈和0.1%(体积分数)甲酸溶液的混合溶液进行梯度洗脱分离,以电喷雾离子源正、负离子模式电离,多反应监测模式检测,同位素内标法定量。结果显示:可替宁的质量浓度在20.00~5 000.00 ng·L−1内,其余17种目标物的质量浓度在1.00~250.00 ng·L−1内和峰面积与同位素内标峰面积之比呈线性关系,测定下限为0.01~0.40 ng·L−1;按照标准加入法进行回收试验,回收率为87.5%~113%,测定值的相对标准偏差(n=6)小于10%。方法用于污水处理厂污水中毒品的持续监测(3个月),检出的毒品的测定值和JD/Y JY02.10—2021的相对误差的绝对值不大于30%,且方法不需要人工,全流程检测时间较小(60 min),大大提高了样品分析的时效性,可为公安部门进行实时毒情监测提供重要的技术支持。

       

      Abstract: A fully automatic online monitoring system for illegal drugs in wastewater has been developed, which integrates sampling, pretreatment, and instrument analysis. The method (online solid phase extraction-ultra-high performance liquid chromatography-tandem mass spectrometry) in the system could achieve simultaneous determination of 18 drugs and their metabolites in wastewater. Automatic collection, settling and twice filtering were conducted on the sample, and isotope internal standard solution was automatically added by the syringe pump. After aerating and settling for 10 min, 10 mL of sample was taken by the syringe pump, and then transported to the Waters Oasis HLB Direct Connect HP solid phase extraction column by the high-pressure infusion pump for automatic enrichment and purification with the methanol-water system. Then, the purified solution was loaded into the chromatography-mass spectrometry system by the binary ultra-high pressure infusion pump, targets in which were separated by gradient elution on the Waters ACQUITY UPLC HSS T3 chromatographic column with the mixed solution of acetonitrile and 0.1% (volume fraction) formic acid solution at different volume ratios, ionized in the positive and negative ion modes of electrospray ion source, detected by multiple reaction monitoring mode, and quantified by isotope internal standard method. It was shown that linear relationships between values of the mass concentration and peak area ratio of target to isotope internal standard were found in the ranges of 20.00-5 000.00 ng·L−1 (cotinine) and 1.00-250.00 ng·L−1 (the other 17 targets), respectively. The lower limits of determination were found in the range of 0.01-0.40 ng·L−1. Test for recovery was made according to the standard addition method, giving recoveries in the range of 87.5%-113%, and RSDs (n=6) of the determined values were less than 10%. The proposed method was used for continuous monitoring (3 months) of drugs in wastewater of wastewater treatment plants, and the absolute relative error between determined values of drugs detected by this method and JD/Y JY02.10-2021 was not greater than 30%. Meanwhile, this method did not require manual labor, with a relatively short detection time of 60 min throughout the entire process, greatly improving the timeliness of sample analysis and providing important technical support for real-time drug monitoring for public security departments.

       

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