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...
Motivated by the importance of the heterogeneous chemistry of squalene contained within skin oil to ...
Motivated by the importance of the heterogeneous chemistry of squalene contained within skin oil to ...
Outdoor ozone transported indoors initiates oxidative chemistry, forming volatile organic products. ...
Ozone reacts with skin lipids such as squalene, generating an array of organic compounds, some of wh...
Ozone reacts with skin lipids such as squalene, generating an array of organic compounds, some of wh...
Ozone reacts with skin lipids such as squalene, generating an array of organic compounds, some of wh...
Squalene is a major skin oil lipid which can react with ozone forming a range of products including ...
The reaction of gas-phase ozone with human skin oil has been studied at room temperature. Skin oil w...
The reaction of gas-phase ozone with human skin oil has been studied at room temperature. Skin oil w...
The reaction of gas-phase ozone with human skin oil has been studied at room temperature. Skin oil w...
It is well-established that indoor surfaces, such as building materials, act as a sink for indoor oz...
The reactions between ozone and indoor unsaturated lipid films leads to the formation of products wi...
The reactions between ozone and indoor unsaturated lipid films leads to the formation of products wi...
Volatile organic chemicals are produced from reactions of ozone with squalene in human skin oil. Bot...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Motivated by the importance of the heterogeneous chemistry of squalene contained within skin oil to ...
Motivated by the importance of the heterogeneous chemistry of squalene contained within skin oil to ...
Outdoor ozone transported indoors initiates oxidative chemistry, forming volatile organic products. ...
Ozone reacts with skin lipids such as squalene, generating an array of organic compounds, some of wh...
Ozone reacts with skin lipids such as squalene, generating an array of organic compounds, some of wh...
Ozone reacts with skin lipids such as squalene, generating an array of organic compounds, some of wh...
Squalene is a major skin oil lipid which can react with ozone forming a range of products including ...
The reaction of gas-phase ozone with human skin oil has been studied at room temperature. Skin oil w...
The reaction of gas-phase ozone with human skin oil has been studied at room temperature. Skin oil w...
The reaction of gas-phase ozone with human skin oil has been studied at room temperature. Skin oil w...
It is well-established that indoor surfaces, such as building materials, act as a sink for indoor oz...
The reactions between ozone and indoor unsaturated lipid films leads to the formation of products wi...
The reactions between ozone and indoor unsaturated lipid films leads to the formation of products wi...
Volatile organic chemicals are produced from reactions of ozone with squalene in human skin oil. Bot...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Motivated by the importance of the heterogeneous chemistry of squalene contained within skin oil to ...
Motivated by the importance of the heterogeneous chemistry of squalene contained within skin oil to ...
Outdoor ozone transported indoors initiates oxidative chemistry, forming volatile organic products. ...