Aerosol samples in PM10-2.0 and PM2.0 size fractions were collected on the platform of a metropolitan underground railway station in central Budapest. Individual aerosol particles were studied using atomic force microscopy, scanning electron microscopy and transmission electron microscopy with energy-dispersive X-ray spectrometry and electron diffraction. The bulk aerosol samples were investigated by Fe-57 Mossbauer spectroscopy, and they were subjected to chemical speciation analysis for Cr. The particles were classified into groups of iron oxides and iron, carbonates, silicates, quartz and carbonaceous debris. Electron micrographs showed that the Fe-rich particles in the PM2.0 size fraction typically consisted of aggregates of nano-sized ...
This complex magnetic and mineralogical study, which was carried out on settled dust and PM10 (parti...
The subway system is an important traffic facility in Beijing and its internal air quality is an env...
Magnetite (Fe3O4) nano-particles (MNPs) have been found in human tissues and causally linked to seri...
Most particles breathed on rail subway platforms are highly ferruginous (FePM) and extremely small (...
Most particles in the rail subway environment are sub-micron sized ferruginous flakes and splinters ...
Particulate matter pollution in the subway station's atmosphere can seriously influence the air qual...
Iron plays an important role in the chemistry and physics (by varying the hygroscopicity) of the atm...
Underground railway stations are known to have elevated particulate matter (PM) loads compared to am...
Underground railway stations are known to have elevated particulate matter (PM) loads compared to am...
PM10 samples were collected in a site of Apulia region (South-East Italy) near a steel plant when th...
Atmospheric iron aerosol is a bioavailable essential nutrient playing a role in oceanic productivity...
Eight aerosol samples were collected in Krakow using a low-volume sampler in February and March 2019...
Underground railway stations are known to have elevated particulate matter (PM) loads compared to am...
Particle emissions caused by railway traffic have hardly been investigated in the past, due to their...
AbstractMost particles breathed on rail subway platforms are highly ferruginous (FePM) and extremely...
This complex magnetic and mineralogical study, which was carried out on settled dust and PM10 (parti...
The subway system is an important traffic facility in Beijing and its internal air quality is an env...
Magnetite (Fe3O4) nano-particles (MNPs) have been found in human tissues and causally linked to seri...
Most particles breathed on rail subway platforms are highly ferruginous (FePM) and extremely small (...
Most particles in the rail subway environment are sub-micron sized ferruginous flakes and splinters ...
Particulate matter pollution in the subway station's atmosphere can seriously influence the air qual...
Iron plays an important role in the chemistry and physics (by varying the hygroscopicity) of the atm...
Underground railway stations are known to have elevated particulate matter (PM) loads compared to am...
Underground railway stations are known to have elevated particulate matter (PM) loads compared to am...
PM10 samples were collected in a site of Apulia region (South-East Italy) near a steel plant when th...
Atmospheric iron aerosol is a bioavailable essential nutrient playing a role in oceanic productivity...
Eight aerosol samples were collected in Krakow using a low-volume sampler in February and March 2019...
Underground railway stations are known to have elevated particulate matter (PM) loads compared to am...
Particle emissions caused by railway traffic have hardly been investigated in the past, due to their...
AbstractMost particles breathed on rail subway platforms are highly ferruginous (FePM) and extremely...
This complex magnetic and mineralogical study, which was carried out on settled dust and PM10 (parti...
The subway system is an important traffic facility in Beijing and its internal air quality is an env...
Magnetite (Fe3O4) nano-particles (MNPs) have been found in human tissues and causally linked to seri...