Приклади вживання Ultrasonic dispersion Англійська мовою та їх переклад на Українською
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Ultrasonic Dispersion Systems.
Boch, Phillipe(1990): Ultrasonic Dispersion of Ceramic Powders.
Ultrasonic Dispersion of Graphene.
Click here to learn more about ultrasonic dispersion of nano particles!
Ultrasonic dispersion emulsification machine.
Click here to learn more about ultrasonic dispersion for reinforced composites!
Ultrasonic dispersion gives a high particle surface and homogeneous distribution.
For more information about the ultrasonic dispersion of bentonite, please click here!
The ultrasonic dispersion can be run in batch or continuous flow-through mode.
In heterogeneous catalysis,where the catalyst is in a different phase to the reactants, ultrasonic dispersion increases the surface area available to the reactants.
By the efficient ultrasonic dispersion, the scavenger can be used sparingly.
Ultrasonic dispersion of bentonite(performed with ultrasonic mixer UIP2000hdT).
In heterogeneous catalysis,where the catalyst is in a different phase to the reactants, ultrasonic dispersion increases the surface area available to the reactants. Background….
Ultrasonic dispersion is the superior method to blend C60 homogeneously into a stable oil-based supplement.
This effect is based on the ultrasonic dispersion and deagglomeration of the pepsin aggregates.
Ultrasonic dispersion avoids larger agglomerates, that can cause dispersion instability.
For more information on the ultrasonic dispersion of thickeners, such as xanthan gum and guar gum, please click here!
Ultrasonic dispersion is a superior technique to disperse and deagglomerate nano-sized polishing particles.
Researchers have recommended the ultrasonic dispersion method for nano particles as preferred solution,“because the material dispersed by the ultrasonic method is much purer than that produced by bead milling”[Kim et al. 2010].
Ultrasonic dispersion is the superior method to blend C60 homogeneously into a stable oil-based supplement.
Ultrasonic dispersion allows to deagglomerate and blend uniformly with a very high monodispersity of the particles.
Ultrasonic dispersion is a simple and efficient method for reducing the size of liposomes and manufacturing nanoliposomes.
Ultrasonic dispersion enables for a superior particle distribution and dispersion stability- even when formulating at high concentrations and viscosities.
Ultrasonic dispersion is used to produce nanofuels or diesohol, a fuel blend of ethanol and diesel, which is improved by the addition of CNTs or nanoparticles.
Ultrasonic dispersion is used to produce nanofuels or diesohol, a fuel blend of ethanol and diesel, which is improved by the addition of CNTs or nanoparticles.
Ultrasonic dispersion easily handles high solid concentrations(e.g. pastes) and distributes nano-particles into single-dispersed particles so that a uniform suspension is produced.
Ultrasonic dispersion of silica nano particles allows to control the process parameters exactly so that a spherical morphology, precisely adjusted particle size, and very narrow size distribution is obtained.
Ultrasonic dispersion is the preferred technique to disperse nanoparticles, since sonication gives a very narrow grain size distribution, high particle functionalities and reproducible results.
The ultrasonic dispersion of the nano-additive results in substantially improves fuel performance such as reduced ignition delay, longer flame sustenance and agglomerate ignition as well as significant overall reductions in the emission.