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Ultrasonic Customized Water-Cooled Control Laboratory Sonochemistry
Description:
Ultrasonic customized water-cooled control laboratory sonochemistry is a research and application of chemical reactions using ultrasonic technology customized according to customer requirements. By exciting chemical reactions with ultrasound, the reaction rate is promoted, and an efficient water cooling system developed by FUNSONIC is equipped to control the temperature of the solution and improve and optimize the ultrasound effect.
Parameters:
Model | FSD-2010-GL |
Name | 20Khz Experimental Liquid Ultrasonic Processing |
Frequency | 20Khz |
Power | 1000w |
Input Voltage | 220V±10%,50/60Hz |
Emitter Materials | Titanium Alloy |
Emitter Type | Focus Type |
Durable Temperature | 0-80℃ |
Component Accessories | Ultrasonic Generator, Ultrasonic Vibration System, Ultrasonic Horn |
Application:
1. Cavitation effect
Cavitation phenomenon: When ultrasonic waves pass through a liquid,
rapid pressure changes occur, leading to the formation of tiny
bubbles in the liquid. These bubbles rapidly compress under high
pressure, then rapidly expand under low pressure, and eventually
burst.
High temperature and high pressure environment: The rupture of
bubbles releases a large amount of energy, creating localized high
temperature and high pressure environments. This extreme condition
can trigger chemical reactions in the reactants.
2. Increase reaction rate
Enhanced molecular collision: The vibration of ultrasound can
increase the frequency of motion between molecules, increase their
collision probability, and thus accelerate the reaction rate.
Reduce reaction energy barrier: The energy of sound waves can lower
the activation energy of certain reactions, making them easier to
carry out.
3. Promote material mixing
Uniform dispersion: Ultrasonic waves can promote the uniform
dispersion of different components in the reaction mixture,
avoiding precipitation and stratification, and improving reaction
efficiency.
4. Generate free radicals
Free radical generation: Under the action of ultrasound, certain
molecules may break and form free radicals, which can further
participate in the reaction and promote chemical transformation.
5. Application Fields
Catalytic reaction: Sonochemistry can be applied in catalytic
reactions to increase the activity of catalysts.
Synthesis of new materials: using sonochemical methods to
synthesize nanomaterials or functional materials.
Environmental protection: Ultrasonic waves can be used for water
treatment and waste degradation, promoting the decomposition of
pollutants.
Ultrasonic Customized Water-Cooled Control Laboratory Sonochemistry