What are the factors influencing where particulates are deposited?
In general, particles with an aerodynamic diameter greater than 10 µm are deposited in the nasopharyngeal region (upper airway passages - nose, nasal cavity and throat) largely by impaction. This mechanism is prominent because of the high air speed and the many turns in the nasopharyngeal air way. The changes in airflow direction cause many particles to hit the walls of the air passage and so the particles deposit or settle in this region.
Smaller particles with an aerodynamic diameter of about 0.003 to 5 µm are deposited in the tracheobronchial and alveolar regions. Sedimentation is the most common method because, at this point, the air has slowed enough for particles to "settle" out.
When the air gets to the alveolar region (the lower lung area), it has slowed even more. The air is essentially calm. Particulates that make it this far into the lungs are usually 0.5 µm or smaller.
They enter the lung essentially by randomly landing on the membrane or other parts of the lung.
Because different-sized particles deposit in different areas of the lung, nose or throat, the American Conference of Governmental Industrial Hygienists (ACGIH) recommends the concept of particle size-selective limits in their occupational exposure limits, the Threshold Limit Values (TLVs). The ACGIH uses the terms inhalable, thoracic, and respirable particulate mass for TLVs for particulates that are hazardous when inhaled.
- context Inhalable Particulate Mass-TLVs are for materials that are hazardous when deposited anywhere in the respiratory tract.
- context Thoracic Particulate Mass-TLVs are assigned to materials that are hazardous when deposited anywhere within the lung airways and the gas-exchange region (the lower airways passages).
- context Respirable Particulate Mass-TLVs are for particulates that are small enough to reach the gas exchange region and are hazardous only if they are deposited in that region.
Do nanoparticles behave the same way as regular-sized particles?
Nanoparticles are those particles that range in size from 1 to 100 nanometres (nm). As stated by NIOSH (the National Institute for Occupational Safety and Health):
At this size, materials begin to exhibit unique properties that affect physical, chemical, and biological behavior. ... Studies have indicated that low solubility nanoparticles are more toxic than larger particles on a mass for mass basis. Particle surface area and surface chemistry are strong indicators for observed responses in cell cultures and animals. Studies suggest that some nanoparticles can move from the respiratory system to other organs. Research is continuing to understand how these unique properties may lead to specific health effects.
And
Workers may be exposed to nanomaterials through inhalation, ingestion, or skin contact. Processes that lead to airborne nanoparticles; respirable nanostructured particles (typically smaller than 4 micrometers); and respirable droplets of nanomaterial suspensions, solutions, and slurries pose a [for] potential inhalation exposures.
And
Results from experimental animal studies with engineered nanomaterials have provided evidence that some nanoparticle exposures can result in serious health effects involving pulmonary and cardiovascular systems and possibly other organ systems.
From: NIOSH (2023) Nanotechnology and Frequently Asked Questions.