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Membrane Extraction with a Sorbent Interface for Headspace Monitoring of Aqueous Samples Using a Cap Sampling Device

机译:具有吸收性接口的膜萃取,用于使用帽盖采样装置进行水样顶空监测

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A cap-shaped device was employed for headspace sampling. This sampling device coupled to membrane extraction with a sorbent interface (MESI) is intended to perform on-site and on-line aqueous sample monitoring. A laboratory sampling test was performed both at the water surface and under water, and it showed some advantages in underwater monitoring. A group of volatile organic compounds (VOCs), varying in PDMS/gas and gas/water distribution constants, benzene, toluene, ethylbenzene, o-xylene, and trichloroethylene (TCE), was used for the sampling study. Magnetic stirring of the sample and circulation of the headspace air with a microfan were used for the enhancement of mass transfer between sample matrix and membrane to obtain higher extraction rate and efficiency. The agitation approaches were investigated individually and compared. The results showed that simultaneous agitation in water and air could greatly improve the extraction efficiency. Good linearity and precision and low detection limits were obtained for watersurface monitoring. The study demonstrated that Cap-MESI is a useful tool for field headspace monitoring of volatile organic compounds.
机译:使用帽形装置进行顶空采样。该采样装置与带有吸附剂接口(MESI)的膜萃取装置耦合,旨在进行现场和在线的水样监测。在水面和水下均进行了实验室采样测试,显示出在水下监控中的一些优势。一组挥发性有机化合物(VOC),其PDMS /气体和气体/水的分布常数,苯,甲苯,乙苯,邻二甲苯和三氯乙烯(TCE)有所不同,用于采样研究。样品的磁力搅拌和带有微型风扇的顶空空气循环用于增强样品基质和膜之间的传质,从而获得更高的萃取率和效率。搅拌方法进行了单独研究和比较。结果表明,在水和空气中同时搅拌可以大大提高提取效率。水面监测获得了良好的线性和精度,检测限较低。该研究表明Cap-MESI是用于现场顶空监测挥发性有机化合物的有用工具。

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