[go: up one dir, main page]

Lind et al., 1987 - Google Patents

Aqueous phase oxidation of sulfur (IV) by hydrogen peroxide, methylhydroperoxide, and peroxyacetic acid

Lind et al., 1987

Document ID
9585179817894816158
Author
Lind J
Lazrus A
Kok G
Publication year
Publication venue
Journal of Geophysical Research: Atmospheres

External Links

Snippet

The aqueous phase oxidation kinetics of sulfur (IV) by hydrogen peroxide, methylhydroperoxide, and peroxyacetic acid have been investigated over the pH range 4.0– 5.2 for hydrogen peroxide and methylhydroperoxide and 2.9–5.8 for peroxyacetic acid. The …
Continue reading at agupubs.onlinelibrary.wiley.com (other versions)

Similar Documents

Publication Publication Date Title
Lind et al. Aqueous phase oxidation of sulfur (IV) by hydrogen peroxide, methylhydroperoxide, and peroxyacetic acid
Saltzman et al. Iodometric microdetermination of organic oxidants and ozone. Resolution of mixtures by kinetic colorimetry
Maahs Kinetics and mechanism of the oxidation of S (IV) by ozone in aqueous solution with particular reference to SO2 conversion in nonurban tropospheric clouds
Kunen et al. Aqueous oxidation of SO2 by hydrogen peroxide
FINAZZI-AGRO et al. AN ATTEMPT TO EVALUATE THE RATE OF THE HABER-WEISS REACTION BY USING ‘OH RADICAL SCAVENGERS
Anbar et al. Interaction of nitrous acid with hydrogen peroxide and with water
Lind et al. Henry's law determinations for aqueous solutions of hydrogen peroxide, methylhydroperoxide, and peroxyacetic acid
Yang et al. Free radical yields from the homolysis of peroxynitrous acid
Ching et al. A method for screening hypochlorous acid scavengers by inhibition of the oxidation of 5-thio-2-nitrobenzoic acid: application anti-asthmatic drugs
Alfassi et al. Substituent effects on rates of one-electron oxidation of phenols by the radicals chlorine dioxide, nitrogen dioxide, and trioxosulfate (1-)
Mader Kinetics of the hydrogen peroxide-sulfite reaction in alkaline solution
MXPA03006941A (en) Method for the online determination of hydrogen peroxide.
Lammel et al. Decomposition of pernitric acid in aqueous solution
Fuzzi Study of iron (III) catalysed sulphur dioxide oxidation in aqueous solution over a wide range of pH
Botha et al. Kinetics and mechanism of the oxidation of sulfur (IV) by ozone in aqueous solutions
Maahs Measurements of the oxidation rate of sulfur (IV) by ozone in aqueous solution and their relevance to SO2 conversion in nonurban tropospheric clouds
Kolthoff et al. The reaction between ferrous iron and peroxides. II. Reaction with hydrogen peroxide, in the presence of oxygen
Hartkamp et al. A method for the determination of hydrogen peroxide in air
Deister et al. OH Radicals Generated by NO Photolysis in Aqueous Solution: Competition Kinetics and a Study of the Reaction OH+ CH2 (OH) SO
Anastasi et al. Reaction of CH 3 radicals with OH at room temperature and pressure
Poulet et al. Rate constant and branching ratio for the reaction of hydroxyl with chloride oxide (ClO)
Ohmori et al. Studies on the reaction of acetaldehyde and acetyl radicals with atomic hydrogen
Olson et al. The mechanism of lactone hydrolysis
Riegelman et al. Stabilization of epinephrine against sulfite attack
Suzuki et al. Stoichiometry and kinetics of the reaction between chlorine dioxide and sulfur (IV) in basic solutions