HR: 0800h
AN: A11A-0009 [Abstracts]
TI: Continuous VOC Monitoring at the CENICA Supersite during April 2000-2004: A Comparison with the
MCMA-2003 Campaign
AU: * Bueno, E
EM: ebueno@ine.gob.mex
AF: General Direction of the National Center for Environmental Research and Training (CENICA). National
Institute of Ecology (INE), Av. San Rafael Atlixco No. 186, Col. Vicentina, Iztapalapa, Distrito Federal, Mexico City, 09340
Mexico
AU: Wohrnschimmel, H
AF: General Direction of the National Center for Environmental Research and Training (CENICA). National
Institute of Ecology (INE), Av. San Rafael Atlixco No. 186, Col. Vicentina, Iztapalapa, Distrito Federal, Mexico City, 09340
Mexico
AU: Velasco, A
AF: General Direction of the National Center for Environmental Research and Training (CENICA). National
Institute of Ecology (INE), Av. San Rafael Atlixco No. 186, Col. Vicentina, Iztapalapa, Distrito Federal, Mexico City, 09340
Mexico
AU: Guti‚rrez, V
AF: General Direction of the National Center for Environmental Research and Training (CENICA). National
Institute of Ecology (INE), Av. San Rafael Atlixco No. 186, Col. Vicentina, Iztapalapa, Distrito Federal, Mexico City, 09340
Mexico
AU: C rdenas, B
AF: General Direction of the National Center for Environmental Research and Training (CENICA). National
Institute of Ecology (INE), Av. San Rafael Atlixco No. 186, Col. Vicentina, Iztapalapa, Distrito Federal, Mexico City, 09340
Mexico
AU: Wakamatsu, S
AF: National Institute for Environmental Studies (NIES), 16-2 Onogawa, Tsukuba-Shi, Ibaraki, 305-8506
Japan
AB:
Since 1999, VOC's have been monitored at CENICA, located in the southeast of the Mexico City Metropolitan Area (MCMA), in
order to contribute to the understanding of ozone formation and the presence of toxic air pollutants. CENICA was also the
supersite of the MCMA-2003 campaign. This work presents an analysis of the total and thirteen specific VOC's (compounds from
C2-C9) measured over some days of the month of April from 2000-2004. Hourly measurements were made throughout the year on
four minute samples using a humidifier and cryogenic trap. Samples were analyzed with gas chromatography and FID according
to the EPA TO-15 method.
The highest and second highest total and specific VOC concentrations were observed during the morning (7-9 am) and night
period (9-11 pm), respectively. The highest VOC concentrations were observed for propane, n-butane, acetylene and toluene in
both periods. Statistical analysis will be presented to determine if there are significant differences between the
different years. Correlations among the 13 VOC's indicated common sources for specific compounds. Therefore, the Chemical
Mass Balance Model was applied using samples from 8 am of each year respectively. Preliminary results imply that the GLP
contribution increased during this five year period and that the vehicle exhaust contribution decreased in the same time.
DE: 0322 Constituent sources and sinks
DE: 0345 Pollution--urban and regional (0305)
DE: 0365 Troposphere--composition and chemistry
DE: 0399 General or miscellaneous
SC: Atmospheric Sciences [A]
MN: 2004 AGU Fall Meeting