Reactions of hypobromous acid with dimethyl selenide, dimethyl diselenide and other organic selenium compounds: kinetics and product formation

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作者
Müller, Emanuel [1 ,2 ]
von Gunten, Urs [1 ,2 ,3 ]
Tolu, Julie [1 ,2 ]
Bouchet, Sylvain [1 ,2 ]
Winkel, Lenny H. E. [1 ,2 ]
机构
[1] Swiss Federal Institute of Aquatic Science and Technology, Department of Water Resources and Drinking Water (W+T), Eawag, Ueberlandstrasse 133, Duebendorf,CH-8600, Switzerland
[2] Swiss Federal Institute of Technology, Institute of Biogeochemistry and Pollutant Dynamics (IBP), Department of Environment Systems (D-USYS), ETH Zurich, Universitätsstrasse 16, Zürich,8092, Switzerland
[3] School of Architecture, Civil and Environmental Engineering (ENAC), École Polytechnique Fédérale de Lausanne (EPFL), Lausanne,1015, Switzerland
关键词
Dimethylsulphide - Diphenyl diselenide - Diselenides - High reactivity - Hypobromous acid - Living organisms - Organic selenium compounds - Product formation - Redox property - Selenides;
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摘要
Selenium (Se) is an essential micronutrient for many living organisms particularly due to its unique redox properties. We recently found that the sulfur (S) analog for dimethyl selenide (DMSe), i.e. dimethyl sulfide (DMS), reacts fast with the marine oxidant hypobromous acid (HOBr) which likely serves as a sink of marine DMS. Here we investigated the reactivity of HOBr with dimethyl selenide and dimethyl diselenide (DMDSe), which are the main volatile Se compounds biogenically produced in marine waters. In addition, the reactivity of HOBr with further organic Se compounds was tested, i.e., SeMet (as N-acetylated-SeMet), and selenocystine (SeCys2 as N-acetylated-SeCys2), as well as the phenyl-analogs of DMSe and DMDSe, respectively, diphenyl selenide (DPSe) and diphenyl diselenide (DPDSe). Apparent second-order rate constants at pH 8 for the reactions of HOBr with the studied Se compounds were (7.1 ± 0.7) × 107 M−1 s−1 for DMSe, (4.3 ± 0.4) × 107 M−1 s−1 for DMDSe, (2.8 ± 0.3) × 108 M−1 s−1 for SeMet, (3.8 ± 0.2) × 107 M−1 s−1 for SeCys2, (3.5 ± 0.1) × 107 M−1 s−1 for DPSe, and (8.0 ± 0.4) × 106 M−1 s−1 for DPDSe, indicating a very high reactivity of all selected Se compounds with HOBr. The reactivity between HOBr and DMSe is lower than for DMS and therefore this reaction is likely not relevant for marine DMSe abatement. However, the high reactivity of SeMet with HOBr suggests that SeMet may act as a relevant quencher of HOBr. © 2024 The Royal Society of Chemistry.
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页码:620 / 630
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