Cargando…

Measurement of ammonia, amines and iodine compounds using protonated water cluster chemical ionization mass spectrometry

Here we describe the design and performance of a new water cluster chemical ionization–atmospheric pressure interface time-of-flight mass spectrometer (CI-APi-TOF). The instrument selectively measures trace gases with high proton affinity such as ammonia and dimethylamine, which are important for at...

Descripción completa

Detalles Bibliográficos
Autores principales: Pfeifer, Joschka, Simon, Mario, Heinritzi, Martin, Piel, Felix, Weitz, Lena, Wang, Dongyu, Granzin, Manuel, Müller, Tatjana, Bräkling, Steffen, Kirkby, Jasper, Curtius, Joachim, Kürten, Andreas
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.5194/amt-13-2501-2020
http://cds.cern.ch/record/2725890
_version_ 1780966148547805184
author Pfeifer, Joschka
Simon, Mario
Heinritzi, Martin
Piel, Felix
Weitz, Lena
Wang, Dongyu
Granzin, Manuel
Müller, Tatjana
Bräkling, Steffen
Kirkby, Jasper
Curtius, Joachim
Kürten, Andreas
author_facet Pfeifer, Joschka
Simon, Mario
Heinritzi, Martin
Piel, Felix
Weitz, Lena
Wang, Dongyu
Granzin, Manuel
Müller, Tatjana
Bräkling, Steffen
Kirkby, Jasper
Curtius, Joachim
Kürten, Andreas
author_sort Pfeifer, Joschka
collection CERN
description Here we describe the design and performance of a new water cluster chemical ionization–atmospheric pressure interface time-of-flight mass spectrometer (CI-APi-TOF). The instrument selectively measures trace gases with high proton affinity such as ammonia and dimethylamine, which are important for atmospheric new particle formation and growth. Following the instrument description and characterization, we demonstrate successful measurements at the CERN CLOUD (Cosmics Leaving OUtdoor Droplets) chamber where very low ammonia background levels of ∼4 pptv were achieved (at 278 K and 80 % RH). The limit of detection of the water cluster CI-APi-TOF is estimated to be ∼0.5 pptv for ammonia. Although no direct calibration was performed for dimethylamine (DMA), we estimate its detection limit is at least 3 times lower. Due to the short ion–molecule reaction time and high reagent ion concentrations, ammonia mixing ratios up to at least 10 ppbv can be measured with the instrument without significant reagent ion depletion. Besides the possibility to measure compounds like ammonia and amines (dimethylamine), we demonstrate that the ionization scheme is also suitable for the measurement of trace gases containing iodine. During CLOUD experiments to investigate the formation of new particles from I$_{2}$, many different iodine-containing species were identified with the water cluster CI-APi-TOF. The compounds included iodic acid and neutral molecular clusters containing up to four iodine atoms. However, the molecular structures of the iodine-containing clusters are ambiguous due to the presence of an unknown number of water molecules. The quantification of iodic acid (HIO3) mixing ratios is performed from an intercomparison with a nitrate CI-APi-TOF. Using this method the detection limit for HIO3 can be estimated as 0.007 pptv. In addition to presenting our measurements obtained at the CLOUD chamber, we discuss the applicability of the water cluster Ci-APi-TOF for atmospheric measurements.
id oai-inspirehep.net-1801260
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18012602021-03-01T10:19:06Zdoi:10.5194/amt-13-2501-2020http://cds.cern.ch/record/2725890engPfeifer, JoschkaSimon, MarioHeinritzi, MartinPiel, FelixWeitz, LenaWang, DongyuGranzin, ManuelMüller, TatjanaBräkling, SteffenKirkby, JasperCurtius, JoachimKürten, AndreasMeasurement of ammonia, amines and iodine compounds using protonated water cluster chemical ionization mass spectrometryDetectors and Experimental TechniquesHere we describe the design and performance of a new water cluster chemical ionization–atmospheric pressure interface time-of-flight mass spectrometer (CI-APi-TOF). The instrument selectively measures trace gases with high proton affinity such as ammonia and dimethylamine, which are important for atmospheric new particle formation and growth. Following the instrument description and characterization, we demonstrate successful measurements at the CERN CLOUD (Cosmics Leaving OUtdoor Droplets) chamber where very low ammonia background levels of ∼4 pptv were achieved (at 278 K and 80 % RH). The limit of detection of the water cluster CI-APi-TOF is estimated to be ∼0.5 pptv for ammonia. Although no direct calibration was performed for dimethylamine (DMA), we estimate its detection limit is at least 3 times lower. Due to the short ion–molecule reaction time and high reagent ion concentrations, ammonia mixing ratios up to at least 10 ppbv can be measured with the instrument without significant reagent ion depletion. Besides the possibility to measure compounds like ammonia and amines (dimethylamine), we demonstrate that the ionization scheme is also suitable for the measurement of trace gases containing iodine. During CLOUD experiments to investigate the formation of new particles from I$_{2}$, many different iodine-containing species were identified with the water cluster CI-APi-TOF. The compounds included iodic acid and neutral molecular clusters containing up to four iodine atoms. However, the molecular structures of the iodine-containing clusters are ambiguous due to the presence of an unknown number of water molecules. The quantification of iodic acid (HIO3) mixing ratios is performed from an intercomparison with a nitrate CI-APi-TOF. Using this method the detection limit for HIO3 can be estimated as 0.007 pptv. In addition to presenting our measurements obtained at the CLOUD chamber, we discuss the applicability of the water cluster Ci-APi-TOF for atmospheric measurements.oai:inspirehep.net:18012602020
spellingShingle Detectors and Experimental Techniques
Pfeifer, Joschka
Simon, Mario
Heinritzi, Martin
Piel, Felix
Weitz, Lena
Wang, Dongyu
Granzin, Manuel
Müller, Tatjana
Bräkling, Steffen
Kirkby, Jasper
Curtius, Joachim
Kürten, Andreas
Measurement of ammonia, amines and iodine compounds using protonated water cluster chemical ionization mass spectrometry
title Measurement of ammonia, amines and iodine compounds using protonated water cluster chemical ionization mass spectrometry
title_full Measurement of ammonia, amines and iodine compounds using protonated water cluster chemical ionization mass spectrometry
title_fullStr Measurement of ammonia, amines and iodine compounds using protonated water cluster chemical ionization mass spectrometry
title_full_unstemmed Measurement of ammonia, amines and iodine compounds using protonated water cluster chemical ionization mass spectrometry
title_short Measurement of ammonia, amines and iodine compounds using protonated water cluster chemical ionization mass spectrometry
title_sort measurement of ammonia, amines and iodine compounds using protonated water cluster chemical ionization mass spectrometry
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.5194/amt-13-2501-2020
http://cds.cern.ch/record/2725890
work_keys_str_mv AT pfeiferjoschka measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT simonmario measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT heinritzimartin measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT pielfelix measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT weitzlena measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT wangdongyu measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT granzinmanuel measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT mullertatjana measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT braklingsteffen measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT kirkbyjasper measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT curtiusjoachim measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry
AT kurtenandreas measurementofammoniaaminesandiodinecompoundsusingprotonatedwaterclusterchemicalionizationmassspectrometry