Multiple evaluations of atmospheric behavior between Criegee intermediates and HCHO: Gas-phase and air-water interface reaction

被引:8
|
作者
Zhang, Tianlei [1 ]
Wen, Mingjie [1 ]
Ding, Chao [1 ]
Zhang, Yongqi [1 ]
Ma, Xiaohui [2 ]
Wang, Zhuqing [3 ]
Lily, Makroni [4 ]
Liu, Junhai [1 ,5 ]
Wang, Rui [1 ]
机构
[1] Shaanxi Univ Technol, Inst Theoret & Computat Chem, Sch Chem & Environm Sci, Shaanxi Key Lab Catalysis, Hanzhong 723001, Peoples R China
[2] Guangdong Univ Technol, Inst Environm Hlth & Pollut Control, Sch Environm Sci & Engn, Guangzhou 510006, Peoples R China
[3] Dezhou Univ, Shandong Key Lab Biophys, Inst Biophys, Dezhou 253023, Peoples R China
[4] Shandong Univ, Environm Res Inst, Qingdao 266237, Peoples R China
[5] Shaanxi Univ Technol, Qinba Mt Bioresource Collaborat Innovat Ctr South, Hanzhong 723001, Peoples R China
来源
基金
中国国家自然科学基金;
关键词
Criegee intermediates; HCHO; Atmospheric behavior; Air-water interface; Chemical processes; VOLATILE ORGANIC-COMPOUNDS; MASTER EQUATION; HYDROXYMETHYL HYDROPEROXIDE; TEMPERATURE-DEPENDENCE; MOLECULAR-MECHANISMS; SECONDARY OZONIDES; PHOTOCHEMICAL DATA; FORMALDEHYDE HCHO; UPPER TROPOSPHERE; REACTION-KINETICS;
D O I
10.1016/j.jes.2022.06.004
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Given the high abundance of water in the atmosphere, the reaction of Criegee intermediates (CIs) with (H2O)(2) is considered to be the predominant removal pathway for CIs. However, recent experimental findings reported that the reactions of CIs with organic acids and carbonyls are faster than expected. At the same time, the interface behavior between CIs and carbonyls has not been reported so far. Here, the gas-phase and air-water interface behavior between Criegee intermediates and HCHO were explored by adopting high-level quantum chemical calculations and Born-Oppenheimer molecular dynamics (BOMD) simulations. Quantum chemical calculations evidence that the gas-phase reactions of CIs + HCHO are submerged energy or low energy barriers processes. The rate ratios speculate that the HCHO could be not only a significant tropospheric scavenger of CIs, but also an inhibitor in the oxidizing ability of CIs on SOx in dry and highly polluted areas with abundant HCHO concentration. The reactions of CH2OO with HCHO at the droplet's surface follow a loop structure mechanism to produce i) SOZ (), ii) BHMP (HOCH2OOCH2OH), and iii) HMHP (HOCH2OOH). Considering the harsh reaction conditions between CIs and HCHO at the interface (i.e., the two molecules must be sufficiently close to each other), the hydration of CIs is still their main atmospheric loss pathway. These results could help us get a better interpretation of the underlying CIs-aldehydes chemical processes in the global polluted urban atmospheres. (c) 2022TheResearchCenterforEco-EnvironmentalSciences,ChineseAcademyofSciences.PublishedbyElsevierB.V
引用
收藏
页码:308 / 319
页数:12
相关论文
共 50 条
  • [1] Multiple evaluations of atmospheric behavior between Criegee intermediates and HCHO:Gas-phase and air-water interface reaction
    Tianlei Zhang
    Mingjie Wen
    Chao Ding
    Yongqi Zhang
    Xiaohui Ma
    Zhuqing Wang
    Makroni Lily
    Junhai Liu
    Rui Wang
    Journal of Environmental Sciences, 2023, 127 (05) : 308 - 319
  • [2] Mechanistic insights into Criegee intermediates with benzoic acid at gas-phase and air-water interface and nucleation of product
    Li, Mengyao
    Zhang, Yafeng
    Yu, Xiaoxia
    Li, Lei
    Wang, Shengming
    Zhang, Qingzhu
    Wang, Wengxing
    Wang, Qiao
    ATMOSPHERIC ENVIRONMENT, 2024, 320
  • [3] Atmospheric Intermediates at the Air-Water Interface
    Enami, Shinichi
    Numadate, Naoki
    Hama, Tetsuya
    JOURNAL OF PHYSICAL CHEMISTRY A, 2024, 128 (28): : 5419 - 5434
  • [4] Determination of reactions between Criegee intermediates and methanesulfonic acid at the air-water interface
    Ma, Xiaohui
    Zhao, Xianwei
    Huang, Zixiao
    Wang, Junjie
    Lv, Guochun
    Xu, Fei
    Zhang, Qingzhu
    Wang, Wenxing
    SCIENCE OF THE TOTAL ENVIRONMENT, 2020, 707
  • [5] Reaction of Criegee Intermediate with Nitric Acid at the Air-Water Interface
    Zeng, Xiao Cheng (xzeng1@unl.edu), 1600, American Chemical Society (140):
  • [6] Reaction of Criegee Intermediate with Nitric Acid at the Air-Water Interface
    Kumar, Manoj
    Zhong, Jie
    Zeng, Xiao Cheng
    Francisco, Joseph S.
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2018, 140 (14) : 4913 - 4921
  • [7] HONO Formation from the Oxidation Reactions of ClO, NO, and Water in the Gas-Phase and at the Air-Water Interface
    Zhang, Qi
    Hadizadeh, Mohammad Hassan
    Wang, Xiaotong
    Zhao, Xianwei
    Bai, Xurong
    Xu, Fei
    Sun, Yanhui
    ATMOSPHERE, 2023, 14 (01)
  • [8] Direct gas-phase formation of formic acid through reaction of Criegee intermediates with formaldehyde
    Pei-Ling Luo
    I-Yun Chen
    M. Anwar H. Khan
    Dudley E. Shallcross
    Communications Chemistry, 6
  • [9] Direct gas-phase formation of formic acid through reaction of Criegee intermediates with formaldehyde
    Luo, Pei-Ling
    Chen, I-Yun
    Khan, M. Anwar H.
    Shallcross, Dudley E.
    COMMUNICATIONS CHEMISTRY, 2023, 6 (01)
  • [10] Real-time monitoring of the kinetics and gas-phase products of the reaction of ozone with an unsaturated phospholipid at the air-water interface
    Wadia, Y
    Tobias, DJ
    Stafford, R
    Finlayson-Pitts, BJ
    LANGMUIR, 2000, 16 (24) : 9321 - 9330