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Experimental investigation of ion–ion recombination under atmospheric conditions

We present the results of laboratory measurements of the ion–ion recombination coefficient at different temperatures, relative humidities and concentrations of ozone and sulfur dioxide. The experiments were carried out using the Cosmics Leaving OUtdoor Droplets (CLOUD) chamber at CERN, the walls of...

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Autores principales: Franchin, A, Ehrhart, S, Leppä, J, Nieminen, T, Gagné, S, Schobesberger, S, Wimmer, D, Duplissy, J, Riccobono, F, Dunne, E M, Rondo, L, Downard, A, Bianchi, F, Kupc, A, Tsagkogeorgas, G, Lehtipalo, K, Manninen, H E, Almeida, J, Amorim, A, Wagner, P E, Hansel, A, Kirkby, J, Kürten, A, Donahue, N M, Makhmutov, V, Mathot, S, Metzger, A, Petäjä, T, Schnitzhofer, R, Sipilä, M, Stozhkov, Y, Tomé, A, Kerminen, V -M, Carslaw, K, Curtius, J, Baltensperger, U, Kulmala, M
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.5194/acp-15-7203-2015
http://cds.cern.ch/record/2268704
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author Franchin, A
Ehrhart, S
Leppä, J
Nieminen, T
Gagné, S
Schobesberger, S
Wimmer, D
Duplissy, J
Riccobono, F
Dunne, E M
Rondo, L
Downard, A
Bianchi, F
Kupc, A
Tsagkogeorgas, G
Lehtipalo, K
Manninen, H E
Almeida, J
Amorim, A
Wagner, P E
Hansel, A
Kirkby, J
Kürten, A
Donahue, N M
Makhmutov, V
Mathot, S
Metzger, A
Petäjä, T
Schnitzhofer, R
Sipilä, M
Stozhkov, Y
Tomé, A
Kerminen, V -M
Carslaw, K
Curtius, J
Baltensperger, U
Kulmala, M
author_facet Franchin, A
Ehrhart, S
Leppä, J
Nieminen, T
Gagné, S
Schobesberger, S
Wimmer, D
Duplissy, J
Riccobono, F
Dunne, E M
Rondo, L
Downard, A
Bianchi, F
Kupc, A
Tsagkogeorgas, G
Lehtipalo, K
Manninen, H E
Almeida, J
Amorim, A
Wagner, P E
Hansel, A
Kirkby, J
Kürten, A
Donahue, N M
Makhmutov, V
Mathot, S
Metzger, A
Petäjä, T
Schnitzhofer, R
Sipilä, M
Stozhkov, Y
Tomé, A
Kerminen, V -M
Carslaw, K
Curtius, J
Baltensperger, U
Kulmala, M
author_sort Franchin, A
collection CERN
description We present the results of laboratory measurements of the ion–ion recombination coefficient at different temperatures, relative humidities and concentrations of ozone and sulfur dioxide. The experiments were carried out using the Cosmics Leaving OUtdoor Droplets (CLOUD) chamber at CERN, the walls of which are made of conductive material, making it possible to measure small ions. We produced ions in the chamber using a 3.5 GeV $c^{−1}$ beam of positively charged pions $(π^+)$ generated by the CERN Proton Synchrotron (PS). When the PS was switched off, galactic cosmic rays were the only ionization source in the chamber. The range of the ion production rate varied from 2 to 100 $cm^{−3} s^{−1}$, covering the typical range of ionization throughout the troposphere. The temperature ranged from −55 to 20 °C, the relative humidity (RH) from 0 to 70 %, the SO2 concentration from 0 to 40 ppb, and the ozone concentration from 200 to 700 ppb. The best agreement of the retrieved ion–ion recombination coefficient with the commonly used literature value of 1.6 × $10^{−6} cm^3 s^{−1}$ was found at a temperature of 5 °C and a RH of 40 % (1.5 ± 0.6) × $10^{−6} cm^3 s^{−1}$. At 20 °C and 40 % RH, the retrieved ion–ion recombination coefficient was instead (2.3 ± 0.7) × $10^{−6} cm^3 s^{−1}$. We observed no dependency of the ion–ion recombination coefficient on ozone concentration and a weak variation with sulfur dioxide concentration. However, we observed a more than fourfold increase in the ion–ion recombination coefficient with decreasing temperature. We compared our results with three different models and found an overall agreement for temperatures above 0 °C, but a disagreement at lower temperatures. We observed a strong increase in the recombination coefficient for decreasing relative humidities, which has not been reported previously.
id oai-inspirehep.net-1603427
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling oai-inspirehep.net-16034272019-09-30T06:29:59Zdoi:10.5194/acp-15-7203-2015http://cds.cern.ch/record/2268704engFranchin, AEhrhart, SLeppä, JNieminen, TGagné, SSchobesberger, SWimmer, DDuplissy, JRiccobono, FDunne, E MRondo, LDownard, ABianchi, FKupc, ATsagkogeorgas, GLehtipalo, KManninen, H EAlmeida, JAmorim, AWagner, P EHansel, AKirkby, JKürten, ADonahue, N MMakhmutov, VMathot, SMetzger, APetäjä, TSchnitzhofer, RSipilä, MStozhkov, YTomé, AKerminen, V -MCarslaw, KCurtius, JBaltensperger, UKulmala, MExperimental investigation of ion–ion recombination under atmospheric conditionsOtherWe present the results of laboratory measurements of the ion–ion recombination coefficient at different temperatures, relative humidities and concentrations of ozone and sulfur dioxide. The experiments were carried out using the Cosmics Leaving OUtdoor Droplets (CLOUD) chamber at CERN, the walls of which are made of conductive material, making it possible to measure small ions. We produced ions in the chamber using a 3.5 GeV $c^{−1}$ beam of positively charged pions $(π^+)$ generated by the CERN Proton Synchrotron (PS). When the PS was switched off, galactic cosmic rays were the only ionization source in the chamber. The range of the ion production rate varied from 2 to 100 $cm^{−3} s^{−1}$, covering the typical range of ionization throughout the troposphere. The temperature ranged from −55 to 20 °C, the relative humidity (RH) from 0 to 70 %, the SO2 concentration from 0 to 40 ppb, and the ozone concentration from 200 to 700 ppb. The best agreement of the retrieved ion–ion recombination coefficient with the commonly used literature value of 1.6 × $10^{−6} cm^3 s^{−1}$ was found at a temperature of 5 °C and a RH of 40 % (1.5 ± 0.6) × $10^{−6} cm^3 s^{−1}$. At 20 °C and 40 % RH, the retrieved ion–ion recombination coefficient was instead (2.3 ± 0.7) × $10^{−6} cm^3 s^{−1}$. We observed no dependency of the ion–ion recombination coefficient on ozone concentration and a weak variation with sulfur dioxide concentration. However, we observed a more than fourfold increase in the ion–ion recombination coefficient with decreasing temperature. We compared our results with three different models and found an overall agreement for temperatures above 0 °C, but a disagreement at lower temperatures. We observed a strong increase in the recombination coefficient for decreasing relative humidities, which has not been reported previously.oai:inspirehep.net:16034272015
spellingShingle Other
Franchin, A
Ehrhart, S
Leppä, J
Nieminen, T
Gagné, S
Schobesberger, S
Wimmer, D
Duplissy, J
Riccobono, F
Dunne, E M
Rondo, L
Downard, A
Bianchi, F
Kupc, A
Tsagkogeorgas, G
Lehtipalo, K
Manninen, H E
Almeida, J
Amorim, A
Wagner, P E
Hansel, A
Kirkby, J
Kürten, A
Donahue, N M
Makhmutov, V
Mathot, S
Metzger, A
Petäjä, T
Schnitzhofer, R
Sipilä, M
Stozhkov, Y
Tomé, A
Kerminen, V -M
Carslaw, K
Curtius, J
Baltensperger, U
Kulmala, M
Experimental investigation of ion–ion recombination under atmospheric conditions
title Experimental investigation of ion–ion recombination under atmospheric conditions
title_full Experimental investigation of ion–ion recombination under atmospheric conditions
title_fullStr Experimental investigation of ion–ion recombination under atmospheric conditions
title_full_unstemmed Experimental investigation of ion–ion recombination under atmospheric conditions
title_short Experimental investigation of ion–ion recombination under atmospheric conditions
title_sort experimental investigation of ion–ion recombination under atmospheric conditions
topic Other
url https://dx.doi.org/10.5194/acp-15-7203-2015
http://cds.cern.ch/record/2268704
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