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Fast Determination of Benzodiazepines in Human Urine via Liquid-Liquid Extraction with Low Temperature Partitioning and LC-HRMS 被引量:3
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作者 Elisangela Jaqueline Magalhaes Clesia Cristina Nascentes +3 位作者 Rodinei Augusti Maria Eliana Lopes Ribeiro de Queiroz Julio Cesar Cardoso da Silva Robson Jose de Cassia Franco Afonso 《American Journal of Analytical Chemistry》 2012年第2期118-124,共7页
A simple and high-throughput method to simultaneously determine selected benzodiazepines (i.e., diazepam, lorazepam, clonazepam, and bromazepam) in urine was developed and validated. The entire methodology consisted o... A simple and high-throughput method to simultaneously determine selected benzodiazepines (i.e., diazepam, lorazepam, clonazepam, and bromazepam) in urine was developed and validated. The entire methodology consisted of the application of an innovative extraction/cleanup procedure, namely liquid-liquid extraction with low-temperature partitioning (LLE-LTP), and analysis by liquid chromatography combined with high-resolution mass spectrometry (LC-HRMS). The LLE-LTP procedure was optimized via factorial design and by evaluating crucial variables, specifically the freezing mode (either slow or fast), the urine/acetonitrile volume ratio, and the sample ionic strength. The benzodiazepines were quantified using matrix-matched calibration curves where the following parameters were assessed by validation protocol: in general, linearity range of 17 - 200 μg?L–1 (r > 0.9957);limits of detection lower than 5 μg?L–1;relative standard deviations (RSD) lower than 12.5%;and accuracy ranging from 72.3 to 117%. To test this procedure’s performance, the method was applied to determine the content of diazepam in actual urine samples. The validation results obtained for the method demonstrated that the present methodology could be potentially applied in proficient laboratories as a routine approach for determining benzodiazepines compounds content in urine. 展开更多
关键词 BENZODIAZEPINES URINE LC-HRMS extraction Procedure low-temperature partitioning
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微波辅助萃取-低温分配净化-气相色谱/质谱法同时检测土壤中63种持久性有机污染物 被引量:2
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作者 黎玉清 赵波 +3 位作者 金梦 闫雅楠 丁紫荣 李彦希 《环境化学》 CAS CSCD 北大核心 2022年第12期4118-4129,共12页
建立了土壤中18种多氯联苯、23种有机氯农药、16种多环芳烃和6种邻苯二甲酸酯同时实验处理和仪器测定的分析方法.10.0 g土壤样品经30 mL正己烷+丙酮(1+1)试剂于110℃微波萃取15 min,萃取液氮吹浓缩到0.5 mL后于−20℃保持4 h进行低温分... 建立了土壤中18种多氯联苯、23种有机氯农药、16种多环芳烃和6种邻苯二甲酸酯同时实验处理和仪器测定的分析方法.10.0 g土壤样品经30 mL正己烷+丙酮(1+1)试剂于110℃微波萃取15 min,萃取液氮吹浓缩到0.5 mL后于−20℃保持4 h进行低温分配净化,使用气相色谱-质谱法进行测定.结果显示,63种化合物的方法检出限在0.1—2.2μg·kg^(−1)之间,测定下限在0.4—8.8μg·kg^(−1)之间;对两个浓度水平的土壤基质加标样品分别进行6次平行分析,测定结果的回收率在76%—119%之间,相对标准偏差在0.4%—10.6%之间.对相关土壤标准物质进行分析,测定结果均在化合物质控范围内.研究表明本方法快速简便,回收率高,重现性好,能满足土壤中63种POPs的检测要求.与常规的前处理净化相比,该方法操作简单,具备批处理优势,在分析大批量样品时,可提高工作效率,节省监测成本. 展开更多
关键词 微波辅助萃取 低温分配 持久性有机污染物 高通量分析方法
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