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Oxygen hydroxyl radicals

In the presence of trace amounts of iron, superoxide can then reduce Fe3+ to molecular oxygen and Fe2+. The sum of this reaction (13.2) plus the Fenton reaction (13.1) produces molecular oxygen, hydroxyl radical and hydroxyl anion from superoxide and hydrogen peroxide, in the presence of catalytic amounts of iron. This is the Haber-Weiss reaction (13.3), originally described by Haber and Weiss (1934), but manifestly impossible from thermodynamical considerations in the absence of catalytic amounts of redox metals such as iron and copper ... [Pg.213]

Hart (1952, 1954) studied the oxidation of formic acid by the radiolysis method. In the presence of oxygen, hydroxyl radicals abstract hydrogen from HCOzH. Both the carboxyl radicals and formyl radicals are formed. These radicals undergo oxygen addition and subsequently dissociate ... [Pg.171]

Tea polyphenols have been shown to scavenge reactive oxygen species, such as superoxide radical, singlet oxygen, hydroxyl radical, nitric oxide, nitrogen dioxide, and peroxynitrite, which may play important roles in carcinogenesis. [Pg.141]

Interferences in the solid phase will increase with decreasing temperature of the flame. For example, in the air-propane and air-hydrogen flames the thermal dissociation is incomplete. The analyte may react in the flame with oxygen, hydroxyl radicals, or hydrogen to form new compounds, of which oxides are the most important. The oxide formation can be minimized in reducing conditions by increasing the carrier flow rate with respect to the oxidant flow rate. [Pg.68]

In the presence of oxygen, strong oxidizers are formed, such as atomic oxygen, hydroxyl radicals, ozone, and so on, which lead to VOCs oxidation [56]. [Pg.405]

The fine antimony mist formed from the decomposition of the trichloride also participates in the flame-inhibiting process, deactivating oxygen, hydrogen, and hydroxyl radicals. [Pg.457]

In the presence of water vapor, oxygen atoms formed by uv radiation react to form hydroxyl radicals (35), which can destroy ozone catalyticaHy. [Pg.491]

Oxygen Compounds. Although hydrogen peroxide is unreactive toward ozone at room temperature, hydroperoxyl ion reacts rapidly (39). The ozonide ion, after protonation, decomposes to hydroxyl radicals and oxygen. Hydroxyl ions react at a moderate rate with ozone (k = 70). [Pg.492]

Effect of Hydroxyl Radicals on Ozone Depletion. Hydroxyl radicals, formed by reaction of ( D) oxygen atoms with water or CH, can destroy ozone catalyticahy (11,32) as shown in the following reactions. [Pg.495]

Electrolyzers. Electrolytic units have been marketed that claim to generate active species such as hydroxyl radicals and oxygen atoms. [Pg.297]

As shown in Fig. 12-6, hydroxyl radicals primarily add to either of the carbon atoms which form the double bond. The remaining carbon atom has an unpaired electron which combines with molecular oxygen, forming an RO2 radical. There are two types of RO2 radicals labeled C3OHO2 in Fig. 12-6. Each of these RO2 radicals reacts with NO to form NO2, and an alkoxy radical reacts with O2 to form formaldehyde, acetaldehyde, and HOj. [Pg.175]

One of the important consequences of neuronal stimulation is increased neuronal aerobic metabolism which produces reactive oxygen species (ROS). ROS can oxidize several biomoiecules (carbohydrates, DNA, lipids, and proteins). Thus, even oxygen, which is essential for aerobic life, may be potentially toxic to cells. Addition of one electron to molecular oxygen (O,) generates a free radical [O2)) the superoxide anion. This is converted through activation of an enzyme, superoxide dismurase, to hydrogen peroxide (H-iO,), which is, in turn, the source of the hydroxyl radical (OH). Usually catalase... [Pg.280]

Generation of radicals by redox reactions has also been applied for synthesizing block copolymers. As was mentioned in Section II. D. (see Scheme 23), Ce(IV) is able to form radical sites in hydroxyl-terminated compounds. Thus, Erim et al. [116] produced a hydroxyl-terminated poly(acrylamid) by thermal polymerization using 4,4-azobis(4-cyano pentanol). The polymer formed was in a second step treated with ceric (IV) ammonium nitrate, hence generating oxygen centered radicals capable of starting a second free radical polymeriza-... [Pg.751]

Fig. 3. a) First order plot of oxygen uptake in the Methylene-blue (MB)-sensitized photooxidation of GA 8.4 pM and 1.3 mM histidine (control) in phosphate buffer pH 7. b) Percentage radical scavenging activity for the control molecule Trolox and GA at pH 7.4 in phosphate buffer 10 mM (hydroxyl radical) and pH 10 in sodium carbonate buffer 50 mM (anion superoxide radical). [Pg.15]


See other pages where Oxygen hydroxyl radicals is mentioned: [Pg.691]    [Pg.123]    [Pg.459]    [Pg.261]    [Pg.203]    [Pg.500]    [Pg.1542]    [Pg.1088]    [Pg.414]    [Pg.226]    [Pg.696]    [Pg.428]    [Pg.691]    [Pg.123]    [Pg.459]    [Pg.261]    [Pg.203]    [Pg.500]    [Pg.1542]    [Pg.1088]    [Pg.414]    [Pg.226]    [Pg.696]    [Pg.428]    [Pg.456]    [Pg.220]    [Pg.276]    [Pg.494]    [Pg.403]    [Pg.352]    [Pg.487]    [Pg.219]    [Pg.524]    [Pg.163]    [Pg.128]    [Pg.22]    [Pg.174]    [Pg.166]    [Pg.195]    [Pg.169]    [Pg.491]    [Pg.93]    [Pg.94]    [Pg.1061]    [Pg.855]    [Pg.196]    [Pg.82]    [Pg.120]   
See also in sourсe #XX -- [ Pg.273 , Pg.274 , Pg.280 ]




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Hydroxylation radical

Oxygen hydroxyl

Oxygenation/hydroxylation

Radical hydroxylations

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