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Baker aps universal bu2010 scanning mode
Baker aps universal bu2010 scanning mode









baker aps universal bu2010 scanning mode

Havránek, V., Voseček, V., Smolík, J., Schwarz, J., & Ždímal, V. Biological Trace Element Research, 71–72, 431–442. Matrix effects in PIXE analysis of aerosols and ashes. Havránek, V., Kučera, J., Horáková, J., Voseček, V., Smolík, J., Schwarz, J., et al. Particulate matter in the atmosphere: Which particle properties are important for its effects on health? The Science of the Total Environment, 249, 85–101. Infiltration of ambient PM2.5 and levels of indoor generated non-ETS PM2.5 in residences of four European cities. O., Lebret, E., Ilacqua, V., Katsouyanni, K., Künzli, N., Srám, R. American Journal of Respiratory Critical Care Medicine, 164, 704–708. Inflammatory lung injury after bronchial instillation of air pollution particles. Mass concentration and elemental composition of indoor PM 2.5 and PM 10 in University rooms in Thessaloniki, northern Greece. Gemenetzis, P., Moussas, P., Arditsoglou, A., & Samara, C.

baker aps universal bu2010 scanning mode

Indoor/outdoor relationship and chemical composition of fine and coarse particles in the southern California deserts. Air quality criteria for particulate matter. Indoor–outdoor relationships of respirable sulfates and particles. Aerosol Science and Technology, 39, 737–749.ĭockery, D. Airborne particulate matter and human health: A review. Journal of Exposure Analysis and Environmental Epidemiology, 3, 227–250.ĭavidson, C.

baker aps universal bu2010 scanning mode

Particle total exposure assessment methodology (PTEAM) study: Distribution of aerosol and elemental concentrations in personal, indoor and outdoor samples in a Southern California community. Atmospheric Environment, 36, 265–277.Ĭlayton, C. Residential indoor PM10 and PM2.5 in Hong Kong and their elemental composition. Inhalation Toxicology, 12, 15–39.Ĭhao, C. Association between particulate-and gas-phase components of urban air pollution and daily mortality in eight Canadian cities. T., Brook, J., Dann, T., Delocla, C., Philips, O., Cakmak, S., et al. The Journal of the Air and Waste Management Association, 41, 171–181.īurnett, R. Indoor and outdoor concentrations of inorganic acidic aerosols and gases. Atmospheric Environment, 29, 3519–3526.īrauer, M., Koutrakis, P., Keeler, G.J., & Spengler, J. Indoor organic and inorganic pollutants: In-situ formation and dry deposition in Southeastern Brazil. Environmental Science and Technology, 34, 3579–3587.Īllen, A. Relative contribution of outdoor and indoor particle sources to indoor concentrations. Smoking and the burning of incense also increased the concentration of potassium, bromine and chlorine content in fine particles.Ībt, E. The presence of people increased the mass concentration of coarse particles, whereas cooking, smoking, and burning of incense and candles contributed predominantly to the fine particle mode. Crustal elements (Al, Si, Ca, Ti, Mn, and Fe) were associated with the coarse aerosol mode. Ion chromatography showed that the major inorganic components of the fine particle mode are sulfate, nitrate, and ammonium with very low indoor nitrate concentration. Finally, the ventilation rate was determined by a radon technique. The indoor and outdoor PM dynamics were recorded by two scanning mobility particle sizers (SMPS) and an aerodynamic particle sizer (APS). Temperature, pressure and relative humidity were measured both indoors and outdoors parallel to PM sampling. The PM samples were collected by two Berner type low pressure impactors separating particles into 10 size fractions from 26 nm to 10 μm and were further analyzed by ion chromatography (IC) and proton induced X-ray emission (PIXE). The mass, ionic and elemental size distributions of particulate matter (PM) measured indoors and outdoors in an apartment situated in a north–westward suburb of Prague are presented.











Baker aps universal bu2010 scanning mode