Citation: Js. Lighty et al., Combustion aerosols: Factors governing their size and composition and implications to human health, J AIR WASTE, 50(9), 2000, pp. 1565-1618
Citation: Br. Ball et al., Bioavailability of iron from coal fly ash: Mechanisms of mobilization and of biological effects, INHAL TOXIC, 12, 2000, pp. 209-225
Authors:
Veranth, JM
Smith, KR
Hu, AA
Lighty, JS
Aust, AE
Citation: Jm. Veranth et al., Mobilization of iron from coal fly ash was dependent upon the particle size and source of coal: Analysis of rates and mechanisms, CHEM RES T, 13(5), 2000, pp. 382-389
Authors:
Veranth, JM
Smith, KR
Huggins, F
Hu, AA
Lighty, JS
Aust, AE
Citation: Jm. Veranth et al., Mossbauer spectroscopy indicates that iron in an aluminosilicate glass phase is the source of the bioavailable iron from coal fly ash, CHEM RES T, 13(3), 2000, pp. 161-164
Authors:
Smith, KR
Veranth, JM
Hu, AA
Lighty, JS
Aust, AE
Citation: Kr. Smith et al., Interleukin-8 levels in human lung epithelial cells are increased in response to coal fly ash and vary with the bioavailability of iron, as a function of particle size and source of coal, CHEM RES T, 13(2), 2000, pp. 118-125
Authors:
Veranth, JM
Smith, KR
Aust, AE
Dansie, SL
Griffin, JB
Hu, AA
Huggins, ML
Lightly, JS
Citation: Jm. Veranth et al., Coal fly ash and mineral dust for toxicology and particle characterizationstudies: Equipment and methods for PM2.5-and PM1-enriched samples, AEROS SCI T, 32(2), 2000, pp. 127-141
Authors:
Smith, KR
Veranth, JM
Lighty, JS
Aust, AE
Citation: Kr. Smith et al., Mobilization of iron from coal fly ash was dependent upon the particle size and the source of coal, CHEM RES T, 11(12), 1998, pp. 1494-1500