Correlation between airborne particle concentrations in seven industrial plants and estimated respiratory tract deposition by number, mass and elemental composition

Author:

Elihn Karine,Berg Peter,Lidén Göran

Publisher

Elsevier BV

Subject

Pollution,Atmospheric Science,Fluid Flow and Transfer Processes,Mechanical Engineering,Environmental Engineering

Reference33 articles.

1. Alhberg, M.S., Hansson, H.C., & Fängmark, I. (1985). The growth of a welding fume as a function of relative humidity. In: Proceedings of the International Conference on Health Hazards and Biological Effects of Welding Fumes and Gases. Amsterdam: Elsevier Science Publishers BV.

2. Pulmonary responses to welding fumes: Role of metal constituents;Antonini;Journal of Toxicology and Environmental Health, Part A,2003

3. Prediction of particle deposition in the human lung using realistic models of lung ventilation;Asgharian;Aerosol Science,2006

4. CEN (1995) EN 481 Workplace atmospheres—Size fraction definitions for measurement of airborne particles, Comité Européenne de Normalisation, Brussels.

5. Mathematical analysis of particle deposition in human lungs: An improved single path transport model;Choi;Inhalation Toxicology,2007

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