Kinetics and product distribution of the reaction of dimethylsulfoxide (DMSO) and methanesulfinate (MSI-) with OH radicals and H2O2 in the aqueous phase are reported in this work. DMSO is found to be very stable in pure water or in solutions containing H2O2. On the other hand, it reacts very rapidly (k=4.5×109 M-1 s-1) with OH radicals. MSI- has been identified as the main intermediate product, while methanesulfonate (MS-) and sulfate were the final products due to the very fast reaction of MSI- with OH radicals (k=1.2×1010 M-1 s-1). MS- has been identified as the major end product (yield higher than 95%) of both DMSO and MSI-reactions by OH radicals in aqueous solutions. The potential implications of these reactions for the biogenic sulfur...
Department of Chemistry, Utkal University, Vani Vthar, Bhubaneswar-751 004 Manuscript received 15 F...
The sulfate anion radical (SO4•-) is a reactive oxidant formed in the autoxidation chain of sulfur d...
Recent studies reveal that organosulfates at the particle surface can be oxidized by gas-phase OH ra...
International audienceA reaction mechanism for the photooxidation of dimethyldisulfide (DMDS) in aqu...
The objective of this study was to elucidate the degradation pathways of dimethylsulfoxide (DMSO) du...
This study systematically investigates the characteristic degradation behaviors of dimethylsulfoxide...
The reactions of DMS with ozone and MSIA and MSA with H2O2 and OH were studied by stopped flow, UV s...
Excitation (2537 A 112 kcal/mole) of dimethyl suiphoxide (DMSO) in solution leads to singlet excited...
Elucidation of the oxidation mechanism of naturally emitted reduced sulfur compounds, especially dim...
Elucidation of the oxidation mechanism of naturally emitted reduced sulfur compounds, especially dim...
Department of Post-Graduate Studies and Research in Chemistry, Mangalore University, Mangalagangoth...
This investigation was conducted to validate the use of dimethyl sulfoxide (DMSO) as a quantitative ...
Abstract Dimethyl sulfide (DMS), produced by marine organisms, represents the most abundant, biogen...
The sulfate anion radical (SO4•-) is a reactive oxidant formed in the autoxidation chain of sulfur d...
The sulfate anion radical (SO4•-) is a reactive oxidant formed in the autoxidation chain of sulfur d...
Department of Chemistry, Utkal University, Vani Vthar, Bhubaneswar-751 004 Manuscript received 15 F...
The sulfate anion radical (SO4•-) is a reactive oxidant formed in the autoxidation chain of sulfur d...
Recent studies reveal that organosulfates at the particle surface can be oxidized by gas-phase OH ra...
International audienceA reaction mechanism for the photooxidation of dimethyldisulfide (DMDS) in aqu...
The objective of this study was to elucidate the degradation pathways of dimethylsulfoxide (DMSO) du...
This study systematically investigates the characteristic degradation behaviors of dimethylsulfoxide...
The reactions of DMS with ozone and MSIA and MSA with H2O2 and OH were studied by stopped flow, UV s...
Excitation (2537 A 112 kcal/mole) of dimethyl suiphoxide (DMSO) in solution leads to singlet excited...
Elucidation of the oxidation mechanism of naturally emitted reduced sulfur compounds, especially dim...
Elucidation of the oxidation mechanism of naturally emitted reduced sulfur compounds, especially dim...
Department of Post-Graduate Studies and Research in Chemistry, Mangalore University, Mangalagangoth...
This investigation was conducted to validate the use of dimethyl sulfoxide (DMSO) as a quantitative ...
Abstract Dimethyl sulfide (DMS), produced by marine organisms, represents the most abundant, biogen...
The sulfate anion radical (SO4•-) is a reactive oxidant formed in the autoxidation chain of sulfur d...
The sulfate anion radical (SO4•-) is a reactive oxidant formed in the autoxidation chain of sulfur d...
Department of Chemistry, Utkal University, Vani Vthar, Bhubaneswar-751 004 Manuscript received 15 F...
The sulfate anion radical (SO4•-) is a reactive oxidant formed in the autoxidation chain of sulfur d...
Recent studies reveal that organosulfates at the particle surface can be oxidized by gas-phase OH ra...