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Partial CNT surface damage was observed in case of the 10 wt.% CNT coating due to CNT mesh formation and smaller size of spray dried agglomerate.
In this study we investigated the relationship between input variables (inlet temperature, feed concentration, flow rate, solvent and atomization parameters) and quality attributes (yield, outlet temperature and mean particle size) of spray dried solid dispersions (SSDs) using response surface model and ensemble artificial neural network.
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The particle size of spray-dried ART microparticles was found to be dependent on inlet temperature, flow rate, pressure and feed ratio.
The average particle size of spray-dried amorphous lactose decreased from 8.15 ± 0.28 μm to 7.60 ± 0.10 μm after conditioning with modified CO2 at 150 bar and 50 °C for a period of 5 h.
Results show that the droplet size of sprays ranges from dozens of microns to several millimeters.
The critical parameters found were particle size, diameter of spray cone at a break-up length and a spray cone angle.
The influence of inlet temperature, hole size of the spray cap membrane and ethanol concentration in the spray solution was studied using a 33 full factorial design.
The particle size of the spray dried formulations was 2 10 μm under polarized light microscopy.
SEM study suggested that the inlet temperature and feed concentration impacted on the particle size of the spray dried particles.
Sensitivity analysis showed that droplet diameter and injected water mass flow rate have the largest effect on the final size of the spray tower.
The jet was illuminated by coherent pulsed laser: the subsequent Mie scattering of the light was related to the size of bubbles, spray droplets, and the cavitation nuclei forming in the jet.
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