Most dustiness studies do not measure dust release over long durations, nor do they characterize the effect of dust release on bulk powders. In this study, we tested the dustiness of two different samples of silicon carbide (SiC) powders (referred to as F220 and F320) over six hours using a vortex shaker. Additionally, we characterized the bulk sample for change in shape and size distribution due to the testing. Both powders release respirable fractions of dust particles but differ in their dust generation behavior. The numbers of released respirable particles for powder F220 are more than two times higher than those of powder F320. The dust generation mechanism might include the release of aerosols due to the attrition of particles owing t...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
Most dustiness studies do not measure dust release over long durations, nor do they characterize the...
Most dustiness studies do not measure dust release over long durations, nor do they characterize the...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
The dust released from granular materials in industries, so called aerosolisation, can have a negati...
The dust released from granular materials in industries, so called aerosolisation, can have a negati...
Silicon carbide (SiC) powders have been recently adopted as a heat transfer and storage fluid (HTF) ...
International audienceSiC powders have recently been used as a heat transfer and storage fluid (HTF)...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
Most dustiness studies do not measure dust release over long durations, nor do they characterize the...
Most dustiness studies do not measure dust release over long durations, nor do they characterize the...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
Silicon carbide (SiC) particles used in long-duration industrial applications releases potentially h...
The dust released from granular materials in industries, so called aerosolisation, can have a negati...
The dust released from granular materials in industries, so called aerosolisation, can have a negati...
Silicon carbide (SiC) powders have been recently adopted as a heat transfer and storage fluid (HTF) ...
International audienceSiC powders have recently been used as a heat transfer and storage fluid (HTF)...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...
This study explores the relationship between the bulk and grain-scale properties of powders and dust...