needle trap microextraction
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RSC Advances ◽  
2017 ◽  
Vol 7 (20) ◽  
pp. 11959-11968 ◽  
Author(s):  
Yu Li ◽  
JingHong Li ◽  
Hui Xu

In this work, a graphene/polyaniline (G/PANI) electrodeposited coating was introduced as a novel extraction phase of needle trap microextraction (NTME) for the extraction of volatile organic compounds (VOCs).


2016 ◽  
Vol 9 (8) ◽  
pp. 3661-3671 ◽  
Author(s):  
Luís Miguel Feijó Barreira ◽  
Yu Xue ◽  
Geoffroy Duporté ◽  
Jevgeni Parshintsev ◽  
Kari Hartonen ◽  
...  

Abstract. Volatile organic compounds (VOCs) play a key role in atmospheric chemistry and physics. They participate in photochemical reactions in the atmosphere, which have direct implications on climate through, e.g. aerosol particle formation. Forests are important sources of VOCs, and the limited resources and infrastructures often found in many remote environments call for the development of portable devices. In this research, the potential of needle trap microextraction and portable gas chromatography–mass spectrometry for the study of VOCs at forest site was evaluated. Measurements were performed in summer and autumn 2014 at the Station for Measuring Ecosystem-Atmosphere Relations (SMEAR II) in Hyytiälä, Finland. During the first part of the campaign (summer) the applicability of the developed method was tested for the determination of monoterpenes, pinonaldehyde, aldehydes, amines and anthropogenic compounds. The temporal variation of aerosol precursors was determined, and evaluated against temperature and aerosol number concentration data. The most abundant monoterpenes, pinonaldehyde and aldehydes were successfully measured, their relative amounts being lower during days when particle number concentration was higher. Ethylbenzene, p- and m-xylene were also found when wind direction was from cities with substantial anthropogenic activity. An accumulation of VOCs in the snow cover was observed in the autumn campaign. Results demonstrated the successful applicability of needle trap microextraction and portable gas chromatography–mass spectrometry for the rapid in situ determination of organic gaseous compounds in the atmosphere.


2016 ◽  
Author(s):  
Luís Miguel Feijó Barreira ◽  
Yu Xue ◽  
Geoffroy Duporté ◽  
Jevgeni Parshintsev ◽  
Kari Hartonen ◽  
...  

Abstract. Volatile organic compounds (VOCs) play a key role in atmospheric chemistry and physics. They participate in photochemical reactions in the atmosphere, which have direct implications on climate through, e.g., aerosol particle formation. Forests are important sources of VOCs, and the limited resources and infrastructures often found in many remote environments call for the development of portable devices. In this research, the potential of needle trap microextraction and portable gas chromatography-mass spectrometry for the study of VOCs at forest site was evaluated. Measurements were performed in summer and autumn 2014 at the Station for Measuring Ecosystem-Atmosphere Relations (SMEAR II) in Hyytiälä, Finland. During the first part of the campaign (summer) the applicability of the developed method was tested for the determination of monoterpenes, pinonaldehyde, aldehydes, amines and anthropogenic compounds. The temporal variation of aerosol precursors was determined, and evaluated against temperature and aerosol number concentration data. The most abundant monoterpenes, pinonaldehyde and aldehydes were successfully measured, their relative amounts being lower during days when particle number concentration was higher. Ethylbenzene, para- and meta-xylene were also found when wind direction was from cities with substantial anthropogenic activity. An accumulation of VOCs in the snow cover was observed in the autumn campaign. Results demonstrated the successful applicability of needle trap microextraction and portable gas chromatography-mass spectrometry for the rapid in-situ determination of organic gaseous compounds in the atmosphere.


2014 ◽  
Vol 37 (14) ◽  
pp. 1850-1855 ◽  
Author(s):  
Sara Karimi Zeverdegani ◽  
Abdulrahman Bahrami ◽  
Masoud Rismanchian ◽  
Farshid Ghorbani Shahna

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