Chamber studies of OH plus dimethyl sulfoxide and dimethyl disulfide: insights into the dimethyl sulfide oxidation mechanism

被引:9
作者
Goss, Matthew B. [1 ]
Kroll, Jesse H. [1 ,2 ]
机构
[1] MIT, Dept Civil & Environm Engn, Cambridge, MA 02139 USA
[2] MIT, Dept Chem Engn, Cambridge, MA 02139 USA
关键词
INTRAMOLECULAR HYDROGEN-SHIFT; PEROXY RADICAL ISOMERIZATION; GAS-PHASE REACTION; METHANESULFONIC-ACID; INITIATED OXIDATION; ATMOSPHERIC OXIDATION; AEROSOL FORMATION; SULFUR-COMPOUNDS; DMS OXIDATION; PHOTOOXIDATION;
D O I
10.5194/acp-24-1299-2024
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The oxidation of dimethyl sulfide (DMS) in the marine atmosphere represents an important natural source of non-sea-salt sulfate aerosol, but the chemical mechanisms underlying this process remain uncertain. While recent studies have focused on the role of the peroxy radical isomerization channel in DMS oxidation, this work revisits the impact of the other channels (OH addition and OH abstraction followed by bimolecular RO2 reaction) on aerosol formation from DMS. Due to the presence of common intermediate species, the oxidation of dimethyl sulfoxide (DMSO) and dimethyl disulfide (DMDS) can shed light on these two DMS reaction channels; they are also both atmospherically relevant species in their own right. This work examines the OH oxidation of DMSO and DMDS, using chamber experiments monitored by chemical ionization mass spectrometry and aerosol mass spectrometry to study the full range of sulfur-containing products across a range of NO concentrations. The oxidation of both compounds is found to lead to rapid aerosol formation (which does not involve the intermediate formation of SO2), with a substantial fraction (14%-47% S yield for DMSO and 5%-21% for DMDS) of reacted sulfur ending up in the particle phase and the highest yields observed under elevated NO conditions. Aerosol is observed to consist mainly of sulfate, methanesulfonic acid, and methanesulfinic acid. In the gas phase, the NOx dependence of several products, including SO2 and S-2-containing organosulfur species, suggest reaction pathways not included in current mechanisms. Based on the commonalities with the DMS oxidation mechanism, DMSO and DMDS results are used to reconstruct DMS aerosol yields; these reconstructions roughly match DMS aerosol yield measurements from the literature but differ in composition, underscoring remaining uncertainties in sulfur chemistry. This work indicates that both the abstraction and addition channels contribute to rapid aerosol formation from DMS and highlights the need for more study into the fate of small sulfur radical intermediates (e.g., CH3S, CH3SO2, and CH3SO3) that are thought to play central roles in the DMS oxidation mechanism.
引用
收藏
页码:1299 / 1314
页数:16
相关论文
共 32 条
[21]   Methanesulfonic acid (MSA) and SO3 formation from the addition channel of atmospheric dimethyl sulfide oxidation [J].
Berndt, Torsten .
CHEMICAL COMMUNICATIONS, 2025, 61 (07) :1443-1446
[22]   FT-IR PRODUCT STUDY ON THE OH RADICAL INITIATED OXIDATION OF DIMETHYL SULFIDE: TEMPERATURE AND O2 PARTIAL PRESSURE DEPENDENCE [J].
Albu, M. ;
Barnes, I. ;
Becker, K. H. ;
Patroescu-Klotz, I. ;
Benter, Th. ;
Mocanu, R. .
SIMULATION AND ASSESSMENT OF CHEMICAL PROCESSES IN A MULTIPHASE ENVIRONMENT, 2008, :501-+
[23]   Criegee Intermediate-Mediated Oxidation of Dimethyl Disulfide: Effect of Formic Acid and Its Atmospheric Relevance [J].
Babu, Gowtham ;
Das, Arijit ;
Chakrabarty, Anindita ;
Chowdhury, Goutam ;
Goswami, Mausumi .
JOURNAL OF PHYSICAL CHEMISTRY A, 2023, 127 (40) :8415-8426
[24]   Secondary aerosol formation from dimethyl sulfide - improved mechanistic understanding based on smog chamber experiments and modelling [J].
de Jonge, Robin Wollesen ;
Elm, Jonas ;
Rosati, Bernadette ;
Christiansen, Sigurd ;
Hyttinen, Noora ;
Ludemann, Dana ;
Bilde, Merete ;
Roldin, Pontus .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2021, 21 (13) :9955-9976
[25]   Arctic observations of hydroperoxymethyl thioformate (HPMTF) - seasonal behavior and relationship to other oxidation products of dimethyl sulfide at the Zeppelin Observatory, Svalbard [J].
Siegel, Karolina ;
Gramlich, Yvette ;
Haslett, Sophie L. ;
Freitas, Gabriel ;
Krejci, Radovan ;
Zieger, Paul ;
Mohr, Claudia .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2023, 23 (13) :7569-7587
[26]   COVARIATIONS IN OCEANIC DIMETHYL SULFIDE, ITS OXIDATION-PRODUCTS AND RAIN ACIDITY AT AMSTERDAM ISLAND IN THE SOUTHERN INDIAN-OCEAN [J].
NGUYEN, BC ;
MIHALOPOULOS, N ;
PUTAUD, JP ;
GAUDRY, A ;
GALLET, L ;
KEENE, WC ;
GALLOWAY, JN .
JOURNAL OF ATMOSPHERIC CHEMISTRY, 1992, 15 (01) :39-53
[27]   Ozone Catalytic Oxidation for Gaseous Dimethyl Sulfide Removal by Using Vacuum-Ultra-Violet Lamp and Impregnated Activated Carbon [J].
Mizuno, Yoshinori ;
Yahaya, Ahmad Guji ;
Kristof, Jaroslav ;
Blajan, Marius Gabriel ;
Murakami, Eizo ;
Shimizu, Kazuo .
ENERGIES, 2022, 15 (09)
[28]   A reappraisal of the photo-oxidation mechanism at short and long wavelengths for poly(2.6-dimethyl-1.4-phenylene oxide) [J].
Scoponi, M ;
Pradella, F ;
Kaczmarek, H ;
Amadelli, R ;
Carassiti, V .
POLYMER, 1996, 37 (06) :903-916
[29]   Cloud processing of dimethyl sulfide (DMS) oxidation products limits sulfur dioxide (SO2) and carbonyl sulfide (OCS) production in the eastern North Atlantic marine boundary layer [J].
Kilgour, Delaney B. ;
Jernigan, Christopher M. ;
Garmash, Olga ;
Aggarwal, Sneha ;
Zhou, Shengqian ;
Mohr, Claudia ;
Salter, Matt E. ;
Thornton, Joel A. ;
Wang, Jian ;
Zieger, Paul ;
Bertram, Timothy H. .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2025, 25 (03) :1931-1947
[30]   Measurement report: Long-range transport and the fate of dimethyl sulfide oxidation products in the free troposphere derived from observations at the high-altitude research station Chacaltaya (5240 m a.s.l.) in the Bolivian Andes [J].
Scholz, Wiebke ;
Shen, Jiali ;
Aliaga, Diego ;
Wu, Cheng ;
Carbone, Samara ;
Moreno, Isabel ;
Zha, Qiaozhi ;
Huang, Wei ;
Heikkinen, Liine ;
Jaffrezo, Jean Luc ;
Uzu, Gaelle ;
Partoll, Eva ;
Leiminger, Markus ;
Velarde, Fernando ;
Laj, Paolo ;
Ginot, Patrick ;
Artaxo, Paolo ;
Wiedensohler, Alfred ;
Kulmala, Markku ;
Mohr, Claudia ;
Andrade, Marcos ;
Sinclair, Victoria ;
Bianchi, Federico ;
Hansel, Armin .
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2023, 23 (02) :895-920