Rapid isolation of polychlorinated biphenyls from milk by a combination of supercritical-fluid extraction and supercritical-fluid chromatography.

A G Mills, T M Jefferies
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引用次数: 10

Abstract

The extraction and isolation of polychlorinated biphenyls (PCBs) from sample matrices such as freeze-dried milk is a lengthy and expensive process that conventionally requires the isolation of microgram amounts of PCBs from large volumes of flammable organic solvents used in the extraction and chromatographic stages. Supercritical-fluid extraction (SFE) and chromatography (SFC) using carbon dioxide has been investigated as a replacement procedure using a Simplex optimisation approach to optimise the working conditions. The SFE conditions required to extract PCBs and milk fat from freeze-dried milk were investigated, and it was found that although extraction was rapid (10 min), the conditions required were identical so that there was no separation of PCBs and fat. However, SFC conditions have been developed that permit the resolution of PCBs from milk fat in 15 min. Thus, a combination of SFE and SFC have the potential to replace the existing methods of extraction and isolation with procedures that are quicker, cheaper, and avoid the use of flammable organic solvents.

超临界流体萃取与超临界流体色谱相结合快速分离牛奶中的多氯联苯。
从冻干牛奶等样品基质中提取和分离多氯联苯(pcb)是一个漫长而昂贵的过程,通常需要从提取和色谱阶段使用的大量易燃有机溶剂中分离微克级的多氯联苯。使用二氧化碳的超临界流体萃取(SFE)和色谱(SFC)作为替代程序,使用Simplex优化方法来优化工作条件。对从冻干牛奶中提取多氯联苯和乳脂所需的SFE条件进行了研究,发现虽然提取速度很快(10 min),但所需的条件是相同的,因此没有出现多氯联苯和脂肪的分离。然而,SFC条件已经开发出来,可以在15分钟内从乳脂中分离出多氯联苯。因此,SFE和SFC的结合有可能取代现有的提取和分离方法,这种方法更快、更便宜,并且避免使用易燃的有机溶剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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