Hyppää sisältöön
    • Suomeksi
    • In English
Trepo
  • Suomeksi
  • In English
  • Kirjaudu
Näytä viite 
  •   Etusivu
  • Trepo
  • TUNICRIS-julkaisut
  • Näytä viite
  •   Etusivu
  • Trepo
  • TUNICRIS-julkaisut
  • Näytä viite
JavaScript is disabled for your browser. Some features of this site may not work without it.

Multi-scheme chemical ionization inlet (MION) for fast switching of reagent ion chemistry in atmospheric pressure chemical ionization mass spectrometry (CIMS) applications

Rissanen, Matti P.; Mikkilä, Jyri; Iyer, Siddharth; Hakala, Jani (2019-12-17)

 
Avaa tiedosto
amt_12_6635_2019.pdf (3.028Mt)
Lataukset: 



Rissanen, Matti P.
Mikkilä, Jyri
Iyer, Siddharth
Hakala, Jani
17.12.2019

Atmospheric Measurement Techniques
doi:10.5194/amt-12-6635-2019
Näytä kaikki kuvailutiedot
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi:tuni-202001161345

Kuvaus

Peer reviewed
Tiivistelmä
<p>A novel chemical ionization inlet named the Multi-scheme chemical IONization inlet (MION), Karsa Ltd., Helsinki, Finland) capable of fast switching between multiple reagent ion schemes is presented, and its performance is demonstrated by measuring several known oxidation products from much-studied cyclohexene and α-pinene ozonolysis systems by applying consecutive bromide (Br<sup>-</sup>) and nitrate (NO<sub>3</sub><sup>-</sup> ) chemical ionization. Experiments were performed in flow tube reactors under atmospheric pressure and room temperature (22 °C) utilizing an atmospheric pressure interface time-of-flight mass spectrometer (APi-ToFMS, Tofwerk Ltd., Thun, Switzerland) as the detector. The application of complementary ion modes in probing the same steady-state reaction mixture enabled a far more complete picture of the detailed autoxidation process; the HO<sub>2</sub> radical and the least-oxidized reaction products were retrieved with Br<sup>-</sup> ionization, whereas the highest-oxidized reaction products were detected in the NO<sub>3</sub><sup>-</sup> mode, directly providing information on the first steps and on the ultimate endpoint of oxidation, respectively. While chemical ionization inlets with multiple reagent ion capabilities have been reported previously, an application in which the charging of the sample occurs at atmospheric pressure with practically no sample pretreatment, and with the potential to switch the reagent ion scheme within a second timescale, has not been introduced previously. Also, the ability of bromide ionization to detect highly oxygenated organic molecules (HOM) from atmospheric autoxidation reactions has not been demonstrated prior to this investigation.</p>
Kokoelmat
  • TUNICRIS-julkaisut [20689]
Kalevantie 5
PL 617
33014 Tampereen yliopisto
oa[@]tuni.fi | Tietosuoja | Saavutettavuusseloste
 

 

Selaa kokoelmaa

TekijätNimekkeetTiedekunta (2019 -)Tiedekunta (- 2018)Tutkinto-ohjelmat ja opintosuunnatAvainsanatJulkaisuajatKokoelmat

Omat tiedot

Kirjaudu sisäänRekisteröidy
Kalevantie 5
PL 617
33014 Tampereen yliopisto
oa[@]tuni.fi | Tietosuoja | Saavutettavuusseloste