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具有吸附剂界面的膜萃取动力学模型。

Kinetic model of membrane extraction with a sorbent interface.

作者信息

Yang M J, Adams M, Pawliszyn J

机构信息

The Guelph-Waterloo Center for Graduate Work in Chemistry and the Waterloo Center for Groundwater Research, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1.

出版信息

Anal Chem. 1996 Sep 1;68(17):2782-9. doi: 10.1021/ac9511758.

Abstract

Membrane extraction with a sorbent interface (MESI) is an unique sample preparation alternative for trace organic analysis. The main features of MESI include its solvent-free nature, the rugged and simple design with no moving parts for long-term reliable performance, the fact that it is a single-step process which ensures good precision, its easy automation, and its feasibility for on-site operation. Among the available membrane extraction modules designed for the MESI system, the headspace configuration has continued to show its superior durability and versatility in membrane applications. The headspace membrane extraction configuration effectively eliminates the need for a sampling pump and flow metering and hence prevents the extraction system from plugging and greatly simplifies the extraction process. The module can be used for extraction of VOCs from gaseous, aqueous, or solid samples. A mathematical model has been developed for headspace membrane extraction of an aqueous sample, based on the assumption that the aqueous phase is perfectly stirred. The model is in good agreement with the experimental benzene extraction results obtained with an efficient agitation method such as high-speed magnetic stirring or sonication. The model has also been used to study the effects of various extraction parameters with respect to the sensitivity and response time of the MESI system. Sample agitation facilities analyte mass transport and hence improves both the system sensitivity and the response time. The sensitivity of the extraction method also increases with an increase of the extraction temperature.

摘要

带有吸附剂界面的膜萃取(MESI)是痕量有机分析中一种独特的样品前处理方法。MESI的主要特点包括其无溶剂特性、设计坚固简单且无活动部件以确保长期可靠运行、它是单步过程可确保良好的精密度、易于自动化以及现场操作的可行性。在为MESI系统设计的现有膜萃取模块中,顶空配置在膜应用中持续展现出其卓越的耐用性和通用性。顶空膜萃取配置有效消除了对采样泵和流量计量的需求,从而防止萃取系统堵塞并极大简化了萃取过程。该模块可用于从气态、水性或固体样品中萃取挥发性有机化合物(VOCs)。基于水相充分搅拌的假设,已开发出一种用于水性样品顶空膜萃取的数学模型。该模型与通过高效搅拌方法(如高速磁力搅拌或超声处理)获得的苯萃取实验结果高度吻合。该模型还用于研究各种萃取参数对MESI系统灵敏度和响应时间的影响。样品搅拌促进了分析物的传质,从而提高了系统灵敏度和响应时间。萃取方法的灵敏度也随萃取温度的升高而增加。

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