首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Preparation of ferrofluid from toner powder and deep eutectic solvent used in air-assisted liquid-liquid microextraction: Application in analysis of sixteen polycyclic aromatic hydrocarbons in urine and saliva samples of tobacco smokers
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Preparation of ferrofluid from toner powder and deep eutectic solvent used in air-assisted liquid-liquid microextraction: Application in analysis of sixteen polycyclic aromatic hydrocarbons in urine and saliva samples of tobacco smokers

机译:空气辅助液 - 液微萃取中使用调色剂粉末和深对共晶溶剂的制备方法:烟草吸烟者尿液和唾液样品分析中的应用

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A new ferrofluid prepared from toner powder and deep eutectic solvent was used in air-assisted liquid-liquid microextraction procedure for extraction of sixteen polycyclic aromatic hydrocarbons from urine and saliva samples of tobacco smokers. In this work, initially, a water-immiscible deep eutectic solvent is synthesized by mixing choline chloride and stearic acid under mild conditions and used as a support solvent in the preparation of ferrofluid from toner powder. Then, a few microliters of the prepared ferrofluid is mixed with sample solution and dispersed in all parts of the solution by performing aspirating/dispersing cycles. To collect the ferrofluid, a magnet is deposited at the outside of the tube and the solution is discarded. The analytes in the collected phase are back-extracted into n-heptane and determined by gas chromatography-mass spectrometry. The validation parameters including limit of detection and quantification, stability, accuracy, linearity, selectivity, precision, enrichment factor, and extraction recovery were studied and the data showed that the method have low limits of detection (in the range of 6-21 ng L-1 in deionized water and 18-63 ng L-1 in saliva and urine samples, respectively) and quantification (in the range of 20-72 ng L-1 in deionized water and 60-216 ng L-1 in saliva and urine samples). Extraction recoveries and enrichment factors ranged from 61 to 84% and 305 to 420, respectively. Relative standard deviations of <= 9% for the extraction of 200 ng L(-1)of each analyte were obtained for infra- (n = 6) and inter-day (n = 6) precisions. Finally, urine and saliva samples of tobacco smokers were successfully analyzed using the proposed method.
机译:用于从调色剂粉末和深度共晶溶剂制备的新的铁磁流动用于空气辅助液体微萃取方法,用于从烟草吸烟者的尿液和唾液样品中提取16个多环芳烃。在这项工作中,最初,通过在温和条件下混合氯化胆碱和硬脂酸并用作来自调色剂粉末的铁物质流体中的载体溶剂来合成水不混溶的深度共晶溶剂。然后,将一些微升的制备的铁氟流与样品溶液混合并通过进行抽吸/分散循环分散在溶液的所有部分中。为了收集铁磁流体,将磁铁沉积在管外侧,丢弃溶液。将收集的相中的分析物回到正庚烷中并通过气相色谱 - 质谱法测定。研究了验证参数,包括检测和定量限制,稳定性,精度,线性,选择性,精确度,富集因子和提取恢复,数据显示该方法具有低的检测限(范围为6-21 ng l - 分别在去离子水和18-63ng L-1中,分别在唾液和尿液中的尿液样品(在去离子水中的20-72 ng L-1的范围内,在唾液和尿液中60-216ng L-1样本)。提取回收率和富集因子分别为61至84%和305至420。为infra-(n = 6)和日内(n = 6)诊断,获得每种分析物200ng L(-1)的提取的相对标准偏差<= 9%。最后,使用该方法成功分析了烟草吸烟者的尿液和唾液样品。

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