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Ion mobility spectrometry in liquid analysis

Holopainen, Sanna (2014-01-10)

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Holopainen, Sanna
10.01.2014
Lappeenranta University of Technology

Acta Universitatis Lappeenrantaensis

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https://urn.fi/URN:ISBN:978-952-265-537-0

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Ion mobility spectrometry (IMS) is a straightforward, low cost method for fast and sensitive
determination of organic and inorganic analytes. Originally this portable technique was applied to
the determination of gas phase compounds in security and military use. Nowadays, IMS has received increasing attention in environmental and biological analysis, and in food quality determination.
This thesis consists of literature review of suitable sample preparation and introduction methods for
liquid matrices applicable to IMS from its early development stages to date. Thermal desorption,
solid phase microextraction (SPME) and membrane extraction were examined in experimental
investigations of hazardous aquatic pollutants and potential pollutants. Also the effect of different
natural waters on the extraction efficiency was studied, and the utilised IMS data processing
methods are discussed.
Parameters such as extraction and desorption temperatures, extraction time, SPME fibre depth,
SPME fibre type and salt addition were examined for the studied sample preparation and
introduction methods. The observed critical parameters were extracting material and temperature.
The extraction methods showed time and cost effectiveness because sampling could be performed in single step procedures and from different natural water matrices within a few minutes. Based on
these experimental and theoretical studies, the most suitable method to test in the automated
monitoring system is membrane extraction.
In future an IMS based early warning system for monitoring water pollutants could ensure the safe
supply of drinking water. IMS can also be utilised for monitoring natural waters in cases of
environmental leakage or chemical accidents. When combined with sophisticated sample introduction methods, IMS possesses the potential for both on-line and on-site identification of
analytes in different water matrices.
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53851 Lappeenranta
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