Literature DB >> 25768043

Reaction between CH3O2 and BrO radicals: a new source of upper troposphere lower stratosphere hydroxyl radicals.

Dudley E Shallcross1, Kimberley E Leather2, Asan Bacak2, Ping Xiao1, Edmond P F Lee3,4, Maggie Ng4, Daniel K W Mok4, John M Dyke3, Ryan Hossaini5, Martyn P Chipperfield5, M Anwar H Khan1, Carl J Percival2.   

Abstract

Over the last two decades it has emerged that measured hydroxyl radical levels in the upper troposphere are often underestimated by models, leading to the assertion that there are missing sources. Here we report laboratory studies of the kinetics and products of the reaction between CH3O2 and BrO radicals that shows that this could be an important new source of hydroxyl radicals:BrO + CH3O2 → products (1). The temperature dependent value in Arrhenius form of k(T) is k1 = (2.42–0.72+1.02) × 10–14 exp[(1617 ± 94)/T] cm3 molecule–1 s–1. In addition, CH2OO and HOBr are believed to be the major products. Global model results suggest that the decomposition of H2COO to form OH could lead to an enhancement in OH of up to 20% in mid-latitudes in the upper troposphere and in the lower stratosphere enhancements in OH of 2–9% are inferred from model integrations. In addition, reaction 1 aids conversion of BrO to HOBr and slows polar ozone loss in the lower stratosphere.

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Year:  2015        PMID: 25768043     DOI: 10.1021/jp5108203

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  2 in total

1.  Theoretical Investigations on Mechanisms and Pathways of C₂H₅O₂ with BrO Reaction in the Atmosphere.

Authors:  Chenggang Lu; Yizhen Tang; Wei Zhang; Xunshuai Qu; Zhihao Fu
Journal:  Molecules       Date:  2018-05-25       Impact factor: 4.411

2.  The reaction of hydroxyl and methylperoxy radicals is not a major source of atmospheric methanol.

Authors:  Rebecca L Caravan; M Anwar H Khan; Judit Zádor; Leonid Sheps; Ivan O Antonov; Brandon Rotavera; Krupa Ramasesha; Kendrew Au; Ming-Wei Chen; Daniel Rösch; David L Osborn; Christa Fittschen; Coralie Schoemaecker; Marius Duncianu; Asma Grira; Sebastien Dusanter; Alexandre Tomas; Carl J Percival; Dudley E Shallcross; Craig A Taatjes
Journal:  Nat Commun       Date:  2018-10-19       Impact factor: 14.919

  2 in total

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