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. 2024 Jun 21;58(26):11864. doi: 10.1021/acs.est.4c05960

Correction to “Indoor Air Quality Implications of Germicidal 222 nm Light”

Victoria P Barber *, Matthew B Goss, Lesly J Franco Deloya, Lexy N LeMar, Yaowei Li, Erik Helstrom, Manjula Canagaratna, Frank N Keutsch, Jesse H Kroll *
PMCID: PMC11223596  PMID: 38904475

The authors discovered and corrected an error in Table S3.1 The values for J5a and J5b were tabulated incorrectly due to an inconsistency in units and were attributed incorrectly to a NASA JPL source,2 rather than to the IUPAC source3 from which they originated. The authors have verified that the error is only present in the tabulation of values, and not in the model code. This correction does not in any way change the results or conclusions of the original text but is necessary to accurately reproduce the model results. The updated portion of Table S3 (correcting rows 5a and 5b) is presented here.

Table S3.

reaction number reaction rate ID rate unit citation
5a O3 + hv → (O1D) + O2 J5a 1.48 × 10–6 x I* s–1 (3)
5b O3 + hv → O + O2 J5b 5.07 × 10–7 x I* s–1 (3)

Supporting Information Available

The Supporting Information is available free of charge at https://pubs.acs.org/doi/10.1021/acs.est.4c05960.

  • Experimental conditions and methods; additional modeling methods; additional results and discussion (including ozone steady-state calculations; discussion of VOC loss pathways; discussion of elevated VOC and RH experiments; more complete product distribution figures; reaction schemes; and SMPS data); model results (including additional model output figures and calculation of effective air changes per hour) (PDF)

Supplementary Material

References

  1. Barber V. P.; Goss M. B.; Franco Deloya L. J.; LeMar L. N.; Li Y.; Helstrom E.; Canagaratna M.; Keutsch F. N.; Kroll J. H. Indoor Air Quality Implications of Germicidal 222 Nm Light. Environ. Sci. Technol. 2023, 57 (42), 15990–15998. 10.1021/acs.est.3c05680. [DOI] [PMC free article] [PubMed] [Google Scholar]
  2. Burkholder J.; Sander S. P.; Abbatt J. P. D.; Barker J. R.; Cappa C.; Crounse J. D.; Dibble T. S.; Huie R. E.; Kolb C. E.; Kurylo M. J.; Orkin V. L.; Percival C. J.; Wilmouth D. M.; Wine P. H.. Chemical Kinetics and Photochemical Data for Use in Atmospheric Studies; 19-5; NASA Jet Propulsion Laboratory, 2020. [Google Scholar]
  3. Atkinson R.; Baulch D. L.; Cox R. A.; Crowley J. N.; Hampson R. F.; Hynes R. G.; Jenkin M. E.; Rossi M. J.; Troe J. Evaluated Kinetic and Photochemical Data for Atmospheric Chemistry: Volume I - Gas Phase Reactions of Ox, HOx, NOx and SOx Species. Atmospheric Chem. Phys. 2004, 4 (6), 1461–1738. 10.5194/acp-4-1461-2004. [DOI] [Google Scholar]

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Supplementary Materials


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