Photoacoustic studies of energy transfer from ozone photoproducts to bath gases following Chappuis band photoexcitation. Issue 1 (16th December 2020)
- Record Type:
- Journal Article
- Title:
- Photoacoustic studies of energy transfer from ozone photoproducts to bath gases following Chappuis band photoexcitation. Issue 1 (16th December 2020)
- Main Title:
- Photoacoustic studies of energy transfer from ozone photoproducts to bath gases following Chappuis band photoexcitation
- Authors:
- Cotterell, Michael I.
Szpek, Kate
Tiddeman, David A.
Haywood, Jim M.
Langridge, Justin M. - Abstract:
- Abstract : We quantify the pressure dependent energy transfer timescales from Chappuis band photoproducts to bath gas mixtures of N2 and O2 . Abstract : Photoacoustic spectroscopy (PAS) is a sensitive technique for the detection of trace gases and aerosols and measurements of their absorption coefficients. The accuracy of such measurements is often governed by the fidelity of the PAS instrument calibration. Gas samples laden with O3 of a known or independently measured absorption coefficient are a convenient and commonplace route to calibration of PAS instruments operating at visible wavelengths ( λ ), yet the accuracy of such calibrations remains unclear. Importantly, the photoacoustic detection of O3 in the Chappuis band ( λ ∼ 400–700 nm) depends strongly on the timescales for energy transfer from the nascent photoproducts O( 3 P) and O2 (X, v > 0) to translational motion of bath gas species. Significant uncertainties remain concerning the dependence of these timescales on both the sample pressure and the bath gas composition. Here, we demonstrate accurate characterisation of microphone response function dependencies on pressure using a speaker transducer to excite resonant acoustic modes of our photoacoustic cells. These corrections enable measurements of photoacoustic response amplitudes (also referred to as PAS sensitivities) and phase shifts with variation in static pressure and bath gas composition, at discrete visible wavelengths spanning the Chappuis band. WeAbstract : We quantify the pressure dependent energy transfer timescales from Chappuis band photoproducts to bath gas mixtures of N2 and O2 . Abstract : Photoacoustic spectroscopy (PAS) is a sensitive technique for the detection of trace gases and aerosols and measurements of their absorption coefficients. The accuracy of such measurements is often governed by the fidelity of the PAS instrument calibration. Gas samples laden with O3 of a known or independently measured absorption coefficient are a convenient and commonplace route to calibration of PAS instruments operating at visible wavelengths ( λ ), yet the accuracy of such calibrations remains unclear. Importantly, the photoacoustic detection of O3 in the Chappuis band ( λ ∼ 400–700 nm) depends strongly on the timescales for energy transfer from the nascent photoproducts O( 3 P) and O2 (X, v > 0) to translational motion of bath gas species. Significant uncertainties remain concerning the dependence of these timescales on both the sample pressure and the bath gas composition. Here, we demonstrate accurate characterisation of microphone response function dependencies on pressure using a speaker transducer to excite resonant acoustic modes of our photoacoustic cells. These corrections enable measurements of photoacoustic response amplitudes (also referred to as PAS sensitivities) and phase shifts with variation in static pressure and bath gas composition, at discrete visible wavelengths spanning the Chappuis band. We develop and fit a photochemical relaxation model to these measurements to retrieve the associated variations in the aforementioned relaxation timescales for O( 3 P) and O2 (X, v > 0). These timescales enable a full assessment of the accuracy of PAS calibrations using O3 -laden gas samples, dependent on the sample pressure, bath gas composition and PAS laser modulation frequency. … (more)
- Is Part Of:
- Physical chemistry chemical physics. Volume 23:Issue 1(2020)
- Journal:
- Physical chemistry chemical physics
- Issue:
- Volume 23:Issue 1(2020)
- Issue Display:
- Volume 23, Issue 1 (2020)
- Year:
- 2020
- Volume:
- 23
- Issue:
- 1
- Issue Sort Value:
- 2020-0023-0001-0000
- Page Start:
- 536
- Page End:
- 553
- Publication Date:
- 2020-12-16
- Subjects:
- Chemistry, Physical and theoretical -- Periodicals
541.3 - Journal URLs:
- http://pubs.rsc.org/en/journals/journalissues/cp#!issueid=cp016040&type=current&issnprint=1463-9076 ↗
http://www.rsc.org/ ↗ - DOI:
- 10.1039/d0cp05056c ↗
- Languages:
- English
- ISSNs:
- 1463-9076
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 6475.306000
British Library DSC - BLDSS-3PM
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