Little attention has so far been paid to the nighttime atmospheric chemistry of iodine species. Current atmospheric models predict a buildup of HOI and I₂ during the night that leads to a spike of IO at sunrise, which is not observed by measurements. In this work, electronic structure calculations are used to survey possible reactions that HOI and I₂ could undergo at night in the lower troposphere, and hence reduce their nighttime accumulation. The new reaction NO₃+ HOI → IO + HNO₃ is proposed, with a rate coefficient calculated from statistical rate theory over the temperature range 260–300 K and at a pressure of 1000 hPa to be k(T) = 2.7 × 10¯¹² (300 K/T)²·⁶⁶ cm³ molecule¯¹ s¯¹. This reaction is included in two atmospheric models, a...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical trans...
Iodine is a key trace element for all vertebrate species as a result of its participation in the thy...
Iodine chemistry influences the oxidizing capacity of the atmosphere, principally by depleting ozone...
Little attention has so far been paid to the nighttime atmospheric chemistry of iodine species. Cur...
Little attention has so far been paid to the nighttime atmospheric chemistry of iodine species. Cur...
Ocean emissions of inorganic and organic iodine compounds drive the biogeochemical cycle of iodine a...
Ocean emissions of inorganic and organic iodine compounds drive the biogeochemical cycle of iodine a...
A detailed set of reactions treating the gas and aqueous phase chemistry of the most important iodin...
Inorganic iodine plays a significant role in the photochemistry of the marine boundary layer, but th...
International audienceA new atmospheric iodine gas-phase mechanism containing 248 reactions combined...
Iodine is a reactive trace element in atmospheric chemistry that destroys ozone and nucleates partic...
The speciation of iodine in atmospheric aerosol is currently poorly understood. Models predict negli...
Despite the potential influence of iodine chemistry on the oxidizing capacity of the troposphere, re...
A model of iodine chemistry in the marine boundary layer (MBL) has been used to investigate the impa...
A new analysis of tropospheric iodine chemistry suggests that under certain conditions this chemistr...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical trans...
Iodine is a key trace element for all vertebrate species as a result of its participation in the thy...
Iodine chemistry influences the oxidizing capacity of the atmosphere, principally by depleting ozone...
Little attention has so far been paid to the nighttime atmospheric chemistry of iodine species. Cur...
Little attention has so far been paid to the nighttime atmospheric chemistry of iodine species. Cur...
Ocean emissions of inorganic and organic iodine compounds drive the biogeochemical cycle of iodine a...
Ocean emissions of inorganic and organic iodine compounds drive the biogeochemical cycle of iodine a...
A detailed set of reactions treating the gas and aqueous phase chemistry of the most important iodin...
Inorganic iodine plays a significant role in the photochemistry of the marine boundary layer, but th...
International audienceA new atmospheric iodine gas-phase mechanism containing 248 reactions combined...
Iodine is a reactive trace element in atmospheric chemistry that destroys ozone and nucleates partic...
The speciation of iodine in atmospheric aerosol is currently poorly understood. Models predict negli...
Despite the potential influence of iodine chemistry on the oxidizing capacity of the troposphere, re...
A model of iodine chemistry in the marine boundary layer (MBL) has been used to investigate the impa...
A new analysis of tropospheric iodine chemistry suggests that under certain conditions this chemistr...
We present a global simulation of tropospheric iodine chemistry within the GEOS-Chem chemical trans...
Iodine is a key trace element for all vertebrate species as a result of its participation in the thy...
Iodine chemistry influences the oxidizing capacity of the atmosphere, principally by depleting ozone...