Person:

Munger, J.

Loading...
Profile Picture

Email Address

AA Acceptance Date

Birth Date

Research Projects

Organizational Units

Job Title

Last Name

Munger

First Name

J.

Name

Munger, J.

Search Results

Now showing 1 - 3 of 3
  • Publication

    Ozone Air Quality During the 2008 Beijing Olympics: Effectiveness of Emission Restrictions

    (Copernicus Publications, 2009) Wang, Yuxuan; Hao, Jiming; McElroy, Michael; Munger, J.; Ma, Hong; Chen, Dan; Nielsen, Chris

    A series of aggressive measures was launched by the Chinese government to reduce pollutant emissions from Beijing and surrounding areas during the Olympic Games. Observations at Miyun, a rural site 100 km downwind of the Beijing urban center, show significant decreases in concentrations of O3, CO, NOy, and SO2 during August 2008, relative to August 2006–2007. The mean daytime mixing ratio of O3 was lower by about 15 ppbv, reduced to 50 ppbv, in August 2008. The relative reductions in daytime SO2, CO, and NOy were 61%, 25%, and 21%, respectively. Changes in SO2 and in species correlations from 2007 to 2008 indicate that emissions of SO2, CO, and NOx were reduced at least by 60%, 32%, and 36%, respectively, during the Olympics. Analysis of meteorological conditions and interpretation of observations using a chemical transport model suggest that although the day-to-day variability in ozone is driven mostly by meteorology, the reduction in emissions of ozone precursors associated with the Olympic Games had a significant contribution to the observed decrease in O3 during August 2008, accounting for 80% of the O3 reduction for the month as a whole and 45% during the Olympics Period (8–24 August). The model predicts that emission restrictions such as those implemented during the Olympics can affect O3 far beyond the Beijing urban area, resulting in reductions in boundary layer O3 of 2–10 ppbv over a large region of the North China Plain and Northeastern China.

  • Publication

    Year round measurements of O3 and CO at a rural site near Beijing: variations in their correlations

    (Co-Action Publishing, 2010) Wang, Yuxuan; Hao, Jiming; McElroy, Michael; Munger, J.; Ma, Hong; Nielsen, Chris; Zhang, Yuqiang

    We examine seasonal variations of carbon monoxide (CO), ozone (O3), and their relationships observed over the course of 3 yr (2005–2007) at Miyun, a rural site 100 km north of Beijing. Monthly mean afternoon mixing ratios of CO have broad maxima in winter and a secondary peak in June. Monthly mean afternoon O3 shows a clear seasonal pattern with a major peak in June (85 ppb), a secondary peak in September (65 ppb) and minimum in winter (50–55 ppb). The seasonal cycles of O3 and CO are associated with seasonal changes in dominant synoptic pattern. Substantial interannual variability is found for CO which is attributed to the interannual variability of meteorology and emissions from biomass burning. The seasonality and magnitude of background CO and O3 derived at Miyun are consistent with observations at upwind remote continental sites. The O3–CO correlation slope is about 0.07 ppb ppb−1 on average in summer, significantly lower than the typical slope of 0.3 ppb ppb−1 reported for developed countries. The O3–CO correlation slope shows large gradients for different types of air masses (0.133 ± 0.017 ppb ppb−1 in aged urban pollution plumes and 0.047 ± 0.008 ppb ppb−1 in biomass burning plumes), suggesting that the conventional method of direct scaling the mean O3–CO slope by CO emissions to deduce O3 production rate is subject to large uncertainties if applied for China.

  • Publication

    Variations of (O_3) and CO in Summertime at a Rural Site Near Beijing

    (Copernicus Publications on behalf of the European Geosciences Union, 2008) Wang, Yuxuan; McElroy, Michael; Munger, J.; Hao, Jiming; Ma, Hong; Nielsen, Chris; Chen, Yaosheng

    Large intra-season differences in mixing ratios of CO and (O_3) were detected at Miyun, a rural site north of Beijing, in summer 2006. Despite an increase in mean daytime mixing ratio of CO from 500 ppbv in June to 700 ppbv in July, mean daytime (O_3) dropped from 67 ppbv in June to 50 ppbv in July and August. The observed changes in CO and (O_3) are attributed to the influence of the summer monsoonal circulation that develops over the North China Plain in July. Photochemical production of (O_3) is reduced as a consequence of increased cloudiness during July and August, as indicated by the strong negative correlation observed between (O_3) and satellite observations of cloud optical depth, with cloudiness having little effect on CO. The analysis suggests a strategy for emission controls that could be implemented in an economically efficient manner to minimize the frequency of high levels of (O_3) during summer in Beijing.