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Showing 1 to 6 of 6 for “"Reactive halogen species"”.

  1. Studies of Reactive Halogen Species (RHS) in the Marine and mid-Latitudinal Boundary Layer by Active Longpath Differential Optical Absorption Spectroscopy

    Untersuchungen von Reaktiven Halogenverbindungen (RHS) in der Maritimen Grenzschicht und in Mittleren Breiten mit der Aktiven Langpfad DOAS Methode Die Relevanz reaktiver Halogenverbindungen in der Troposphare ist einerseits belegt durch den gravierenden Ein uss auf Ozon, welcher zum ersten Mal …

    heid-diss Repository record for Studies of Reactive Halogen Species (RHS) in the Marine and mid-Latitudinal Boundary Layer by Active Longpath Differential Optical Absorption Spectroscopy (opens in a new tab)

  2. Organic particle formation in halogen-influenced environments

    … from the reaction of organic trace gases and reactive halogen species can act as an important natural source of organic aerosol. In order to better understand these reactions, aerosol formation from the reaction of α-pinene with chlorine and bromine was studied in laboratory experiments. New …

    bayreuth Repository record for Organic particle formation in halogen-influenced environments (opens in a new tab)

  3. Constructing a Miniaturized Chemiluminescence Ozone Monitor for Drone-Based Measurements in Volcanic Plumes: A Way to Resolve the Volcanic Ozone Enigma

    Volcanic plumes contain reactive halogen species, especially bromine monoxide (BrO), which catalyzes ozone (O3) destruction. Therefore, local O3 depletion is commonly assumed inside volcanic plumes and has also been measured to varying degrees at different volcanoes. However, a calculation …

    heid-thes Repository record for Constructing a Miniaturized Chemiluminescence Ozone Monitor for Drone-Based Measurements in Volcanic Plumes: A Way to Resolve the Volcanic Ozone Enigma (opens in a new tab)

  4. Halogen Oxide Studies in the Boundary Layer by Multi Axis Differential Optical Absorption Spectroscopy and Active Longpath-DOAS

    The importance of reactive halogen species (particularly halogen oxides) in the troposphere is due to their strong effect on tropospheric ozone levels, which has been first discovered during surface ozone depletion episodes in the polar boundary layer after polar sunrise (bromine oxide, BrO). …

    heid-diss Repository record for Halogen Oxide Studies in the Boundary Layer by Multi Axis Differential Optical Absorption Spectroscopy and Active Longpath-DOAS (opens in a new tab)

  5. Characterisation of a chemiluminescence ozone monitor for volcanic applications

    Volcanic plumes are known to contain reactive halogen species, especially bromine monoxide, which are known to efficiently catalyse ozone (O3) destruction. Therefore, local O3 depletion is expected inside volcanic plumes, which has been measured in several field studies and is also found in several …

    heid-thes Repository record for Characterisation of a chemiluminescence ozone monitor for volcanic applications (opens in a new tab)

  6. Photochemical Formation Mechanisms and Applications of Mn Oxide Nanomaterials

    … various aquatic chemistry parameters, including reactive oxygen species (ROS), peroxyl radical (ROO•), reactive halogen species (RHS), dissolved natural organic matter (DOM), nanoplastics, and co-existing cations on the photochemically-induced oxidation of Mn2+(aq) and the nucleation of Mn oxide …

    wustl Repository record for Photochemical Formation Mechanisms and Applications of Mn Oxide Nanomaterials (opens in a new tab)