Superoxide is an important transient reactive oxygen species (ROS) in the ocean formed as an intermediate in the redox transformation of oxygen (O2) into hydrogen peroxide (H2O2) and vice versa. This highly reactive and very short-lived radical anion can be produced both via photochemical and biological processes in the ocean. In this paper we examine the decomposition rate of O2- throughout the water column, using new data collected in the Eastern Tropical North Atlantic (ETNA) Ocean. For this approach we applied a semi factorial experimental design, to identify and quantify the pathways of the major identified sinks in the ocean. In this work we occupied 6 stations, 2 on the West African continental shelf and 4 open ocean stations, includ...
Fluorescence Assay by Gas Expansion (FAGE) has been used to detect ambient levels of OH and HO2 radi...
Mn is biologically important for phytoplankton as it is critical for many redox enyzmes required for...
© The Author(s), 2020. This article is distributed under the terms of the Creative Commons Attributi...
Superoxide (O-2(-): IUPAC name dioxide (center dot 1-)) is an important transient reactive oxygen sp...
Superoxide (O<sub>2</sub><sup>–</sup>: IUPAC name dioxide (•1−)) is an important transient reactive ...
Superoxide (O2-: IUPAC name dioxide (•1−)) is an important transient reactive oxygen species (ROS) i...
The decay kinetics of superoxide (O2−) reacting with organic matter was examined in oligotrophic wat...
Superoxide (O−2) is a short lived reactive oxygen species (ROS) formed in seawater by photochemical ...
Superoxide, formed by the single electron reduction of oxygen, is important due to its ability to ac...
Distributions of pore water O2, NO-2, NO-3, NH+4, Si(OH)4, PO[3-]4, Mn[2+], F-, and T.A. were determ...
Superoxide (O2−) is an important short lived transient reactive oxygen species (ROS) in seawater. Th...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy in Ocean...
Based on knowledge of their production pathways, and limited discrete observations, a variety of sho...
Based on knowledge of their production pathways, and limited discrete observations, a variety of sho...
Fluorescence Assay by Gas Expansion (FAGE) has been used to detect ambient levels of OH and HO2 radi...
Fluorescence Assay by Gas Expansion (FAGE) has been used to detect ambient levels of OH and HO2 radi...
Mn is biologically important for phytoplankton as it is critical for many redox enyzmes required for...
© The Author(s), 2020. This article is distributed under the terms of the Creative Commons Attributi...
Superoxide (O-2(-): IUPAC name dioxide (center dot 1-)) is an important transient reactive oxygen sp...
Superoxide (O<sub>2</sub><sup>–</sup>: IUPAC name dioxide (•1−)) is an important transient reactive ...
Superoxide (O2-: IUPAC name dioxide (•1−)) is an important transient reactive oxygen species (ROS) i...
The decay kinetics of superoxide (O2−) reacting with organic matter was examined in oligotrophic wat...
Superoxide (O−2) is a short lived reactive oxygen species (ROS) formed in seawater by photochemical ...
Superoxide, formed by the single electron reduction of oxygen, is important due to its ability to ac...
Distributions of pore water O2, NO-2, NO-3, NH+4, Si(OH)4, PO[3-]4, Mn[2+], F-, and T.A. were determ...
Superoxide (O2−) is an important short lived transient reactive oxygen species (ROS) in seawater. Th...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy in Ocean...
Based on knowledge of their production pathways, and limited discrete observations, a variety of sho...
Based on knowledge of their production pathways, and limited discrete observations, a variety of sho...
Fluorescence Assay by Gas Expansion (FAGE) has been used to detect ambient levels of OH and HO2 radi...
Fluorescence Assay by Gas Expansion (FAGE) has been used to detect ambient levels of OH and HO2 radi...
Mn is biologically important for phytoplankton as it is critical for many redox enyzmes required for...
© The Author(s), 2020. This article is distributed under the terms of the Creative Commons Attributi...