Back to Search Start Over

VOCs and OVOCs distribution and control policy implications in Pearl River Delta region, China

Authors :
Louie, Peter Kwok Keung
Ho, Josephine W.K.
Tsang, Roy C.W.
Blake, Donald Ray
Lau, Alexis Kai Hon
Yu, Jian Zhen
Yuan, Zibing
Wang, Xinming
Shao, Min
Zhong, Liuju
Louie, Peter Kwok Keung
Ho, Josephine W.K.
Tsang, Roy C.W.
Blake, Donald Ray
Lau, Alexis Kai Hon
Yu, Jian Zhen
Yuan, Zibing
Wang, Xinming
Shao, Min
Zhong, Liuju
Publication Year :
2013

Abstract

Ambient air measurements of volatile organic compounds (VOCs) and oxygenated volatile organic compounds (OVOCs) were conducted and characterised during a two-year grid study in the Pearl River Delta (PRD) region of southern China. The present grid study pioneered the systematic investigation of the nature and characteristics of complex VOC and OVOC sources at a regional scale. The largest contributing VOCs, accounting over 80% of the total VOCs mixing ratio, were toluene, ethane, ethyne, propane, ethene, butane, benzene, pentane, ethylbenzene, and xylenes. Sub-regional VOC spatial characteristics were identified, namely: i) relatively fresh pollutants, consistent with elevated vehicular and industrial activities, around the PRD estuary; and ii) a concentration gradient with higher mixing ratios of VOCs in the west as compared with the eastern part of PRD. Based on alkyl nitrate aging determination, a high hydroxyl radical (OH) concentration favoured fast hydrocarbon reactions and formation of locally produced ozone. The photochemical reactivity analysis showed aromatic hydrocarbons and alkenes together consisted of around 80% of the ozone formation potential (OFP) among the key VOCs. We also found that the OFP from OVOCs should not be neglected since their OFF contribution was more than one-third of that from VOCs alone. These findings support the choice of current air pollution control policy which focuses on vehicular sources but warrants further controls. Industrial emissions and VOCs emitted by solvents should be the next targets for ground-level ozone abatement. (C) 2012 Elsevier Ltd. All rights reserved.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn895601174
Document Type :
Electronic Resource