Chen Xi, Wu Ci, Wang Longxiang, Wang Yue, Ning Xingshuang, Xu Chuanpeng, Li Wang, Chu Yingqian
Dayaowan Customs of the People's Republic of China, Dalian 116600, China.
Zhuanghe Customs of the People's Republic of China, Zhuanghe 116400, China.
Se Pu. 2018 Nov 1;36(11):1147-1157. doi: 10.3724/SP.J.1123.2018.06029.
An effective method based on ultra-high performance liquid chromatography-triple quadrupole/electrostatic field orbitrap mass spectrometry (UHPLC-Q-Orbitrap MS) was developed for high-throughput screening and quantitative analysis of 112 pharmaceutical and personal care products (PPCPs) in water. The water samples were separately extracted under alkaline and acidic conditions and cleaned on an SPE column (Cleanert PEP-2). The sample was separated and detected by UHPLC-Q-Orbitrap MS, and the data were collected in full MS scan/date dependent MS2 mode. All the 112 PPCPs in water were qualitatively screened and quantified on the basis of the peak area of the precursor ion. The PPCPs showed a good linear response in the mass concentration range of three orders of magnitude ( ≥ 0.9901), and the limits of quantification were between 0.002 μg/L and 0.8 μg/L. The recoveries of 60.1%-129.5% were achieved at different spiked levels of 0.2, 0.4, and 0.8 μg/L, and the RSDs were 1.1%-17.8% (=6). Moreover, the method was used to screen the PPCPs in water samples acquired from seven regions of Dalian city (China), and 16 PPCPs were identified and quantified. Therefore, this simple method with high sensitivity and wide screening range can be applied to water quality management and environmental risk monitoring.
建立了一种基于超高效液相色谱 - 三重四极杆/静电场轨道阱质谱联用仪(UHPLC-Q-Orbitrap MS)的有效方法,用于水中112种药品及个人护理用品(PPCPs)的高通量筛查和定量分析。水样分别在碱性和酸性条件下萃取,并在固相萃取柱(Cleanert PEP-2)上进行净化。样品通过UHPLC-Q-Orbitrap MS进行分离和检测,数据采用全扫描/数据依赖二级质谱模式采集。水中的112种PPCPs均以前体离子峰面积为基础进行定性筛查和定量分析。PPCPs在三个数量级的质量浓度范围内呈现良好的线性响应(≥0.990),定量限在0.002 μg/L至0.8 μg/L之间。在0.2、0.4和0.8 μg/L的不同加标水平下,回收率为60.1% - 129.5%,相对标准偏差为1.1% - 17.8%(n = 6)。此外,该方法用于筛查从中国大连市七个地区采集的水样中的PPCPs,共鉴定和定量了16种PPCPs。因此,这种灵敏度高、筛查范围广的简便方法可应用于水质管理和环境风险监测。