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Carbon monoxide, emitted primarily from vehicles, is a colorless, odorless gas that can be fatal in high indoor concentrations.
Indoor concentrations inside schools were relatively stable in classrooms.
Outdoor sources can be the main contributors to indoor concentrations of some contaminants.
At specific cases, indoor concentrations during midday were 30%40%% higher than outdoor.
Indoor concentrations of most pollutants were higher than their outdoor concentrations owing to the presence of indoor sources.
These results show that, to obtain representative estimates of indoor concentrations, measurements in multiple seasons are required.
The estimation of outdoor contributions to measured indoor concentrations provides insights about the relative importance of indoor and outdoor sources in determining indoor concentrations, the main determinant of personal exposure for most of the measured compounds.
Thus, increases in room temperature would have the potential to enhance indoor concentrations.
As shown in Figs. 8 and 9, the indoor concentrations of the cultivable airborne bacteria were higher than outdoors.
For some species there were no significant indoor sources in the majority of the homes; thus indoor concentrations were mainly determined by outdoor concentrations in these homes.
The simultaneous measurements of indoor concentrations, outdoor concentrations, AERs, and room volumes allowed the use of a mass balance model, under the steady-state approximation, to mechanistically examine the relative contributions of indoor and outdoor sources to measured indoor concentrations on a home-by-home basis.
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