We investigate the contribution of oceanic methyl iodide (CH3I) to the stratospheric iodine budget. Based on CH3I measurements from three tropical ship campaigns and the Lagrangian transport model FLEXPART, we provide a detailed analysis of CH3I transport from the ocean surface to the cold point in the upper tropical tropopause layer (TTL). While average oceanic emissions differ by less than 50% from campaign to campaign, the measurements show much stronger variations within each campaign. A positive correlation between the oceanic CH3I emissions and the efficiency of CH3I troposphere stratosphere transport has been identified for some cruise sections. The mechanism of strong horizontal surface winds triggering large emissions on the one ha...
We report upper limits of IO and OIO in the tropical upper troposphere and stratosphere inferred fro...
Emitted mainly by the oceans, iodine is a halogen compound important for atmospheric chemistry due t...
Methyl iodide (CH3I), bromoform (CHBr3) and dibromomethane (CH2Br2), which are produced naturally in...
We investigate the contribution of oceanic methyl iodide (CH3I) to the stratospheric iodine budget. ...
We simulate the oceanic and atmospheric distribution of methyl iodide (CH3I) with a global 3-D model...
Natural, short-lived halocarbons play a role in the stratospheric ozone budget, besides the anthropo...
© 2015. American Geophysical Union. All Rights Reserved. We report a new estimation of the injection...
CH3I was measured in open ocean waters during two cruises to the tropical Atlantic Ocean and a late ...
A new analysis of tropospheric iodine chemistry suggests that under certain conditions this chemistr...
Despite the potential influence of iodine chemistry on the oxidizing capacity of the troposphere, re...
Mahajan, A. S. ... et. al.-- 9 pages, 6 figures, supplementary material related to this article is a...
Volatile iodocarbons, including CH3I, are major carriers of iodine from the ocean to the atmosphere....
The tropical oceans are a known source of reactive bromine and iodine to the atmosphere in the form ...
Halogenated very short-lived substances (VSLS) are naturally produced in the ocean and emitted to th...
Production pathways of the prominent volatile organic halogen compound methyl iodide (CH3I) are not ...
We report upper limits of IO and OIO in the tropical upper troposphere and stratosphere inferred fro...
Emitted mainly by the oceans, iodine is a halogen compound important for atmospheric chemistry due t...
Methyl iodide (CH3I), bromoform (CHBr3) and dibromomethane (CH2Br2), which are produced naturally in...
We investigate the contribution of oceanic methyl iodide (CH3I) to the stratospheric iodine budget. ...
We simulate the oceanic and atmospheric distribution of methyl iodide (CH3I) with a global 3-D model...
Natural, short-lived halocarbons play a role in the stratospheric ozone budget, besides the anthropo...
© 2015. American Geophysical Union. All Rights Reserved. We report a new estimation of the injection...
CH3I was measured in open ocean waters during two cruises to the tropical Atlantic Ocean and a late ...
A new analysis of tropospheric iodine chemistry suggests that under certain conditions this chemistr...
Despite the potential influence of iodine chemistry on the oxidizing capacity of the troposphere, re...
Mahajan, A. S. ... et. al.-- 9 pages, 6 figures, supplementary material related to this article is a...
Volatile iodocarbons, including CH3I, are major carriers of iodine from the ocean to the atmosphere....
The tropical oceans are a known source of reactive bromine and iodine to the atmosphere in the form ...
Halogenated very short-lived substances (VSLS) are naturally produced in the ocean and emitted to th...
Production pathways of the prominent volatile organic halogen compound methyl iodide (CH3I) are not ...
We report upper limits of IO and OIO in the tropical upper troposphere and stratosphere inferred fro...
Emitted mainly by the oceans, iodine is a halogen compound important for atmospheric chemistry due t...
Methyl iodide (CH3I), bromoform (CHBr3) and dibromomethane (CH2Br2), which are produced naturally in...