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Although spring concentrations rarely reach the peaks that we experience during summertime smog, a health impacts study across Sussex found that the frequency of days with moderate ozone results in more air pollution-induced hospital admissions during spring than at any other season.
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Our study suggests that at moderate temperature ozone may activate the fibrinolytic pathway, while at elevated temperature ozone may impair it.
In a region with moderate outdoor ozone levels, persons doing their own day-to-day house cleaning are estimated to inhale an average of 20 μg/day of formaldehyde and 35 μg/day of SOAs (a large fraction of which are ultrafine particles) as a consequence of ozone-initiated reactions with constituents of cleaning agents and air fresheners [table 5.3 of Nazaroff et al. (2006)].
In our case, the moderate correlations between ozone and the other pollutants are inconsistent with strong shifting of effects from ozone to secondary particles, based on their simulations.
This happened during May's warm weather causing moderate ground level ozone over the whole UK.
Earlier in June, sunny spells caused brief moderate ground level ozone across many parts of the UK.
Moderate levels of ozone were measured across eastern England including the south-east, the east Midlands and parts of Yorkshire, but two factors enabled us to avoid serious smog.
Warm weather at the start of the month caused moderate ground level ozone over the southern half of England, reaching as far north as Birmingham, Nottingham and Leicester, but generally unsettled weather prevented serious summertime smog.
To assess whether the moderate correlations between ozone and the secondary particle pollutants had any effect on the model, we examined the correlation between the estimated ozone and particle coefficients in each of the communities.
The research was conducted in a controlled chamber into which either a relatively high level of the VOC mixture (26 milligrams per cubic meter), the VOCs plus moderate concentrations of ozone (40 parts per billion), or clean air with a low one-minute spike of VOCs (about 2.5 milligrams per cubic meter) was introduced.
The increase in mixing ratios of reactive olefins is of relevance to understand the moderate success in the ozone and fine aerosols abatement in recent years in comparison to other criteria pollutants.
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