Developing a solid phase microextraction method for the identification of accelerants in fire debris / Abdul Aziz Haron and Nor'ashikin Saim

Solid Phase Microextraction (SPME) method of identifying accelerants from fire debris is developed. Experimental design methodology was used to evaluate the simultaneous effect of SPME operating variables (extraction time, extraction temperature, desorption time) on the extraction of target analytes...

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Main Authors: Haron, Abdul Aziz, Saim, Nor'ashikin
Format: Article
Language:English
Published: Faculty of Applied Sciences 2005
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/11789/1/AJ_ABDUL%20AZIZ%20HARON%20SL%2005.pdf
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author Haron, Abdul Aziz
Saim, Nor'ashikin
author_facet Haron, Abdul Aziz
Saim, Nor'ashikin
author_sort Haron, Abdul Aziz
collection UITM
description Solid Phase Microextraction (SPME) method of identifying accelerants from fire debris is developed. Experimental design methodology was used to evaluate the simultaneous effect of SPME operating variables (extraction time, extraction temperature, desorption time) on the extraction of target analytes (benzene, toluene, xylene and hexadecane). The results showed that extraction temperature and extraction time were the more significant factors. Optimum operating conditions for SPME were determined using a response surface method. The results indicate that SPME is capable of analyzing accelerants from fire debris.
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spelling oai:ir.uitm.edu.my:117892016-09-06T04:53:53Z https://ir.uitm.edu.my/id/eprint/11789/ Developing a solid phase microextraction method for the identification of accelerants in fire debris / Abdul Aziz Haron and Nor'ashikin Saim scilett Haron, Abdul Aziz Saim, Nor'ashikin QD Chemistry Solid Phase Microextraction (SPME) method of identifying accelerants from fire debris is developed. Experimental design methodology was used to evaluate the simultaneous effect of SPME operating variables (extraction time, extraction temperature, desorption time) on the extraction of target analytes (benzene, toluene, xylene and hexadecane). The results showed that extraction temperature and extraction time were the more significant factors. Optimum operating conditions for SPME were determined using a response surface method. The results indicate that SPME is capable of analyzing accelerants from fire debris. Faculty of Applied Sciences 2005 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/11789/1/AJ_ABDUL%20AZIZ%20HARON%20SL%2005.pdf Developing a solid phase microextraction method for the identification of accelerants in fire debris / Abdul Aziz Haron and Nor'ashikin Saim. (2005) Science Letters <https://ir.uitm.edu.my/view/publication/Science_Letters/>, 2 (1). pp. 55-61. ISSN 1675-7785
spellingShingle QD Chemistry
Haron, Abdul Aziz
Saim, Nor'ashikin
Developing a solid phase microextraction method for the identification of accelerants in fire debris / Abdul Aziz Haron and Nor'ashikin Saim
title Developing a solid phase microextraction method for the identification of accelerants in fire debris / Abdul Aziz Haron and Nor'ashikin Saim
title_full Developing a solid phase microextraction method for the identification of accelerants in fire debris / Abdul Aziz Haron and Nor'ashikin Saim
title_fullStr Developing a solid phase microextraction method for the identification of accelerants in fire debris / Abdul Aziz Haron and Nor'ashikin Saim
title_full_unstemmed Developing a solid phase microextraction method for the identification of accelerants in fire debris / Abdul Aziz Haron and Nor'ashikin Saim
title_short Developing a solid phase microextraction method for the identification of accelerants in fire debris / Abdul Aziz Haron and Nor'ashikin Saim
title_sort developing a solid phase microextraction method for the identification of accelerants in fire debris abdul aziz haron and nor ashikin saim
topic QD Chemistry
url https://ir.uitm.edu.my/id/eprint/11789/1/AJ_ABDUL%20AZIZ%20HARON%20SL%2005.pdf
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