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Development of a technique for determining 18 PAHs in small volume water samples

机译:开发一种测定小体积水样中18种多环芳烃的技术

摘要

The capability within the BGS Laboratories for the determination of PAHs by HPLC was extended by undertaking a development of technique investigation (MaDCap). As a result, it is now possible to determine 18 PAHs by the sensitive and selective means of HPLC coupled with fluorescence detection. These PAHs comprise 15 of the 16 USEPA PAH (acenaphthylene cannot be determined because it is not sufficiently fluorescent), 1- and 2- methylnaphthalenes together with the biogenically significant PAH, perylene. Subsequent further development of a technique, known as Silicone Rod Sorptive Extraction (SRSE), permitting the extraction and concentration of PAHs from small volume water samples, resulted in its successful application to the determination of the 18 PAHs in five samples of porewater. These porewaters had been obtained by the high pressure squeezing of Oxford and Corallian Clay core material in a heavy-duty pressure apparatus designed at BGS.udPreviously, porewater samples have been dispatched from BGS to a contract analytical laboratory where it was found that standard methods for PAH analysis were not suitable for the acquisition of meaningful data from limited sample volumes. Indeed, the determination of PAHs in small volumes of natural waters represents a substantial analytical challenge. This report details the development of a technique to successfully surmount that challenge.
机译:通过开展技术研究(MaDCap),扩展了BGS实验室内通过HPLC测定PAHs的能力。结果,现在可以通过HPLC的灵敏和选择性手段结合荧光检测来确定18个PAH。这些PAH包含16种USEPA PAH中的15种(不能确定fluorescent,因为它的荧光性不足),1-和2-甲基萘以及具有生物遗传意义的PAH,per。随后的进一步发展,称为硅棒吸附提取(SRSE)的技术,可以从少量水样品中提取和浓缩PAH,从而成功地用于测定五个孔隙水样品中的18种PAH。这些孔隙水是通过在BGS设计的重型压力设备中对牛津纤维和Corallian Clay岩心材料进行高压挤压而获得的。 ud以前,BGS已将孔隙水样品分送到合同分析实验室,发现该实验室采用标准方法用于PAH分析的方法不适用于从有限的样本量中获取有意义的数据。实际上,在少量天然水中测定PAHs代表了巨大的分析挑战。本报告详细介绍了成功克服这一挑战的技术的发展。

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  • 作者

    Harrison Ian;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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