首页> 外文期刊>International journal of applied mechanics >A high-throughput and high peak capacity narrow-bore parallel segmented flow column strategy for the liquid chromatography-tandem mass spectrometry analysis of organic contaminants in water
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A high-throughput and high peak capacity narrow-bore parallel segmented flow column strategy for the liquid chromatography-tandem mass spectrometry analysis of organic contaminants in water

机译:高通量和高峰值容量窄孔平行分段流动柱策略,用于水中有机污染物的液相色谱 - 串联分析分析

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摘要

This study highlights the development of a high peak capacity, high-throughput (HTP) approach for a target list of 62 organic contaminants in an environmental river water matrix on a HPLC conventional 400 bar system. Key separation metrics were evaluated: (a) peak capacity, (b) total analysis time and (c) mobile phase consumption. An average peak width of 0.10 min with a total analysis time (inclusive of the column wash and re-equilibration) of 10 minutes revealed the increased productivity and performance of the parallel segmented flow (PSF) column technology HPLC-MS strategy, comparable to UHPLC peak widths and analysis times, achieved at a significantly lower backpressure (<400 bar). The operation of the PSF in a narrow-bore scale format (internal diameter of 2.1 mm) resulted in a conservative HPLC scale total mobile phase consumption of 15 mL for the column separation; only 5.5 mL of this volume was exposed to the ion source per injection. Mobile phase consumption was higher compared to that of UHPLC, but on the other hand it achieved higher peak capacity. Three representative compounds (atrazine, diclofenac and fluazuron) with differing retention and ionisation properties were studied in detail in terms of detection sensitivity. The majority of the ion ratios for the standards in the river water matrix were within +30% of the average ion ratios. The largest ion suppression occurred for atrazine (-25% matrix effect), a pesticide notorious for poor ionization and poor peak shape issues. The lowest response transitions at 1 mu g L-1 for the extracted ions in the river water matrix of atrazine, diclofenac and fluazuron had signal to noise ratios >= 3, with the exception of diclofenac where 5 mu g L-1 was the lowest calibration level. The peak area's calibration curve slope and standard deviation in the detector's response determination of limit of quantification (LOQ) were between 5.2 and 30.4 mu g L-1.
机译:本研究强调了在HPLC常规400巴系统上的环境河水矩阵中的62个有机污染物的目标清单高峰能力,高通量(HTP)方法的发展。评估关键分离度量:(a)峰值容量,(b)总分析时间和(c)流动相消耗。 0.10分钟的平均峰宽度为10分钟的总分析时间(包括柱洗涤和重新平衡)显示平行分段流量(PSF)柱技术HPLC-MS策略的生产率和性能提高,与UHPLC相当峰值宽度和分析时间,在显着更低的背压(<400巴)下实现。 PSF以窄孔秤形式(内径为2.1mm)的操作导致保守的HPLC秤总流动相消耗为柱分离;每次注射仅暴露5.5毫升该体积。与UHPLC相比,流动相消耗更高,但另一方面,它实现了更高的峰值容量。在检测灵敏度方面详细研究了具有不同保持和电离性能的三种代表性化合物(阿特拉嗪,双氯芬酸和麦芽呋喃)。河水基质中标准的大部分离子比率在平均离子比例的+ 30%以内。对尿嘧啶(-25%基质效应)发生的最大离子抑制,杀虫剂对于离电离不良和峰形状问题差。在河水中河水中提取的离子的最低响应转变,甲嘧啶,双氯芬酸和麦芽酮群中的噪声比例为噪声比例> 3,除了Diclofenac,其中5μgl-1是最低的校准水平。峰值区域的校准曲线斜率和标准偏差在定量限制(LOQ)的响应测定中(LOQ)的响应测定的标准偏差在5.2和30.4μg1-1之间。

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