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1 Dip coating of air purifier ceramic honeycombs with photocatalytic TiO2 nanoparticles: A case study for occupational exposure
article 2018    
Author: Koivisto, A.J. · Kling, K.I. · Fonseca, A.S. · Brostrøm Bluhme, A. · Moreman, M. · Yu, M. · Costa, A.L. · Giovanni, B. · Ortelli, S. · Fransman, W. · Vogel, U. · Jensen, K.A.
Keywords: Nutrition · Nanomaterial · Titanium dioxide · Indoor aerosol modeling · Inhalation exposure · Emission rate · Air cleaners · Air purification · Biological organs · Ceramic materials · Coatings · Honeycomb structures · Industrial hygiene · Nanoparticles · Nanostructured materials · Occupational risks · Particulate emissions · Respiratory system · Titanium dioxide · Deposited surface areas · Emission rates · Environmental exposure · Indoor aerosol model · Inhalation exposure · Nanoparticle suspension · National institute for occupational safety and healths · Occupational exposure · Particles (particulate matter) · Titanium dioxide nanoparticle · Aerosol · Catalysis · Ceramics · Emission · Modeling · Nanomaterial · Nanoparticle · Photochemistry · Titanium · Bronchus · Case study · Controlled study · Lung alveolus · Material coating · No-observed-adverse-effect level · Particle size · Particulate matter · Photocatalysis · Physical chemistry · Prediction · Trachea · Work environment · Food and Nutrition · Healthy Living · Life · RAPID - Risk Analysis for Products in Development · ELSS - Earth, Life and Social Sciences
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