Tianjin is the third largest megacity and the fastest growth area in China, and consequently faces the problems of surface ozone and haze episodes. This study measures and characterizes volatile organic compounds (VOCs), which are ozone precursors, to identify their possible sources and evaluate their contribution to ozone formation in urban and suburban Tianjin, China during the HaChi (Haze in China) summer campaign in 2009. A total of 107 species of ambient VOCs were detected, and the average concentrations of VOCs at urban and suburban sites were 92 and 174 ppbv, respectively. Of those, 51 species of VOCs were extracted to analyze the possible VOC sources using positive matrix factorization. The identified sources of VOCs were significan...
The Pearl River Delta region (PRD) of China has long suffered from severe ground-level ozone polluti...
The compositions, spatial distributions, seasonal variations and ozone formation potential (OFP) of ...
Photochemical smog, characterized by high concentrations of ozone (O3) and fine particles (PM2.5) in...
Level of surface ozone (O-3) has been increasing continuously in China in recent years, while its co...
Volatile organic compounds (VOCs) are important precursors in the formation of ozone (O-3) and secon...
AbstractThe measurement of volatile organic compounds (VOCs) was conducted during November 2014 in t...
A 5-month campaign (from May to September 2017) was conducted to characterize volatile organic compo...
High loads of fine particulate matter (PM2.5) and ozone (O3) pollution occurred frequently since ear...
To insight the urban volatile organic compound (VOC) profiles and its contribution to ozone, four-ti...
This work comprehensively investigated the constituents, sources, and associated health risks of amb...
Volatile organic compounds (VOCs) are crucial for ozone formation in the Yangtze River Delta (YRD) i...
Vehicular emission (VE) is one of the important anthropogenic sources for ground-level volatile orga...
Photochemical smog, characterized by high concentrations of ozone (O-3) and fine particles (PM2.5) i...
Beijing has long suffered from serious ground-level ozone pollution, and volatile organic compounds ...
Ozone (03) pollution is becoming increasingly severe in China. In addition, our limited understandin...
The Pearl River Delta region (PRD) of China has long suffered from severe ground-level ozone polluti...
The compositions, spatial distributions, seasonal variations and ozone formation potential (OFP) of ...
Photochemical smog, characterized by high concentrations of ozone (O3) and fine particles (PM2.5) in...
Level of surface ozone (O-3) has been increasing continuously in China in recent years, while its co...
Volatile organic compounds (VOCs) are important precursors in the formation of ozone (O-3) and secon...
AbstractThe measurement of volatile organic compounds (VOCs) was conducted during November 2014 in t...
A 5-month campaign (from May to September 2017) was conducted to characterize volatile organic compo...
High loads of fine particulate matter (PM2.5) and ozone (O3) pollution occurred frequently since ear...
To insight the urban volatile organic compound (VOC) profiles and its contribution to ozone, four-ti...
This work comprehensively investigated the constituents, sources, and associated health risks of amb...
Volatile organic compounds (VOCs) are crucial for ozone formation in the Yangtze River Delta (YRD) i...
Vehicular emission (VE) is one of the important anthropogenic sources for ground-level volatile orga...
Photochemical smog, characterized by high concentrations of ozone (O-3) and fine particles (PM2.5) i...
Beijing has long suffered from serious ground-level ozone pollution, and volatile organic compounds ...
Ozone (03) pollution is becoming increasingly severe in China. In addition, our limited understandin...
The Pearl River Delta region (PRD) of China has long suffered from severe ground-level ozone polluti...
The compositions, spatial distributions, seasonal variations and ozone formation potential (OFP) of ...
Photochemical smog, characterized by high concentrations of ozone (O3) and fine particles (PM2.5) in...