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High Flow-Rate Sample Loading in Large Volume Whole Water Organic Trace Analysis Using Positive Pressure and Finely Ground Sand as a SPE-Column In-Line Filter

机译:大量整体水有机痕量分析的高流量样品加载,使用正压和精细研磨的砂作为SPE柱在线过滤器

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摘要

By using an innovative, positive pressure sample loading technique in combination with an in-line filter of finely ground sand the bottleneck of solid phase extraction (SPE) can be reduced. Recently published work by us has shown the proof of concept of the technique. In this work, emphasis is put on the SPE flow rate and method validation for 26 compounds of emerging environmental concern, mainly from the 1st and 2nd EU Watch List, with various physicochemical properties. The mean absolute recoveries in % and relative standard deviations (RSD) in % for the investigated compounds from spiked pure water samples at the three investigated flow rates of 10, 20, and 40 mL/min were 63.2% (3.2%), 66.9% (3.3%), and 69.0% (4.0%), respectively. All three flow rates produced highly repeatable results, and this allowed a flow rate increase of up to 40 mL/min for a 200 mg, 6 mL, reversed phase SPE cartridge without compromising the recoveries. This figure is more than four times the maximum flow rate recommended by manufacturers. It was indicated that some compounds, especially pronounced for the investigated macrolide molecules, might suffer when long contact times with the sample glass bottle occurs. A reduced contact time somewhat decreases this complication. A very good repeatability also held true for experiments on both spiked matrix-rich pond water (high and low concentrations) and recipient waters (river and wastewater) applying 40 mL/min. This work has shown that, for a large number of compounds of widely differing physicochemical properties, there is a generous flow rate window from 10 to 40 mL/min where sample loading can be conducted. A sample volume of 0.5 L, which at the recommended maximum flow rate speed of 10 mL/min, would previously take 50 min, can now be processed in 12 min using a flow rate of 40 mL/min. This saves 38 min per processed sample. This low-cost technology allows the sample to be transferred to the SPE-column, closer to the sample location and by the person taking the sample. This further means that only the sample cartridge would need to be sent to the laboratory, instead of the whole water sample, like today’s procedure.
机译:通过采用创新的正压样品加载技术与精细接地砂的线滤网结合使用,可以减少固相提取(SPE)的瓶颈。最近发表的工作由我们表明了该技术的概念证明。在这项工作中,重点是26个新兴环境关注化合物的SPE流速和方法验证,主要来自第1和第二欧盟观察名单,具有各种物理化学性质。从掺入的纯水样品的三种研究的纯水样中的%和相对标准偏差(RSD)的平均绝对回收率(RSD)为10,20和40mL / min的三个研究的纯水样品为63.2%(3.2%),66.9% (3.3%),分别为69.0%(4.0%)。所有三种流量率产生高度可重复的结果,并且这允许流量增加到200mg,6毫升6毫升,6毫升,反相式SPE盒的流速增加,而不会影响回收率。该数字是制造商推荐的最大流量的四倍以上。结果表明,当发生样品玻璃瓶的长接触时间时,一些化合物可能会遭受,特别是随着样品玻璃瓶的时间。减少的接触时间有所减少这种并发症。对于富含尖刺基质的池塘水(高浓度)和受体水(河流和废水)的实验,对施用40毫升/分钟的反应性的实验也是如此。这项工作表明,对于大量不同的物理化学性质的大量化合物,可以在10至40ml / min的慷慨流速窗口,其中可以进行样品载荷。 0.5L的样品体积,以10mL / min的推荐最大流速速度为50分钟,现在可以使用40ml / min的流速在12分钟内加工。这节省了38分过程样本。这种低成本技术允许将样品转移到SPE列,更接近样本位置和采用样品的人。这进一步意味着只需要将样品盒送到实验室,而不是全水样,如今天的程序。

著录项

  • 作者

    Ola Svahn; Erland Björklund;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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