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Chemical kinetics of multiphase reactions between ozone and human skin lipids: Implications for indoor air quality and health effects

机译:臭氧与人类皮肤脂质之间多相反应的化学动力学:对室内空气质量和健康影响的影响

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摘要

Ozone reacts with skin lipids such as squalene, generating an array of organic compounds, some of which can act as respiratory or skin irritants. Thus, it is important to quantify and predict the formation of these products under different conditions in indoor environments. We developed the kinetic multilayer model that explicitly resolves mass transport and chemical reactions at the skin and in the gas phase (KM-SUB- Skin). It can reproduce the concentrations of ozone and organic compounds in previous measurements and new experiments. This enabled the spatial and temporal concentration profiles in the skin oil and underlying skin layers to be resolved. Upon exposure to ~30 ppb ozone, the concentrations of squalene ozonolysis products in the gas phase and in the skin reach up to several ppb and on the order of -10 mmol m~ (−3). Depending on various factors including the number of people, room size, and air exchange rates, concentrations of ozone can decrease substantially due to reactions with skin lipids. Ozone and dicarbonyls quickly react away in the upper layers of the skin, preventing them from penetrating deeply into the skin and hence reaching the blood.
机译:臭氧与角鲨烯等皮肤脂质发生反应,生成一系列有机化合物,其中一些可以充当呼吸道或皮肤刺激物。因此,重要的是量化和预测在室内环境中不同条件下这些产物的形成。我们开发了动力学多层模型,该模型明确解决了在皮肤和气相(KM-SUB- Skin)中的物质传输和化学反应。它可以在以前的测量和新实验中再现臭氧和有机化合物的浓度。这使得能够解决皮肤油和下面的皮肤层中的空间和时间浓度分布。暴露于约30 ppb的臭氧后,气相和皮肤中角鲨烯的臭氧分解产物的浓度高达几ppb,约为-10 mmol m〜(-3)。取决于人数,房间大小和空气交换率等各种因素,臭氧浓度会由于与皮肤脂质的反应而大大降低。臭氧和二羰基化合物在皮肤的上层迅速反应掉,阻止它们深入渗透到皮肤中,从而到达血液。

著录项

  • 来源
    《Indoor Air》 |2017年第4期|816-828|共13页
  • 作者单位

    Multiphase Chemistry Department, Max Planck Institute for Chemistry, Mainz,Germany;

    Department of Chemistry, University of Oslo,Oslo, Norway;

    Multiphase Chemistry Department, Max Planck Institute for Chemistry, Mainz,Germany;

    Department of Chemistry, University of Oslo,Oslo, Norway;

    Multiphase Chemistry Department, Max Planck Institute for Chemistry, Mainz,Germany;

    Multiphase Chemistry Department, Max Planck Institute for Chemistry, Mainz,Germany,Department of Chemistry, University of California, Irvine, CA, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dicarbonyls; kinetic modeling; ozone; respiratory irritants; skin irritants; squalene;

    机译:二羰基动力学建模臭氧;呼吸道刺激物皮肤刺激物角鲨烯;

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