Abstract:The research presented in this doctoral dissertation aimed to improve knowledge on methods to evaluate exposures to carbon-containing nanomaterials and to develop optimized respiratory filters properties to protect workers from these exposures while minimizing discomfort due to breathing resistance. In the initial study, a novel laboratory-based system generated aerosols of four carboncontaining powders (carbon black, a small-diameter (<8 nm) multi-walled carbon nanotube (MWCNT), a large-diameter (50-80 nm) MW… Show more
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