Ultrasonic extraction is a mature technique that utilizes an ultrasonic extractor to leverage a multi-tiered array of effects—including intense cavitation pressure, mechanical vibration, turbulence, high acceleration, emulsification, diffusion, fragmentation, and agitation—all generated by ultrasonic radiation pressure. These effects serve to increase the frequency and velocity of molecular motion within the substance and enhance the solvent's penetrative power, thereby accelerating the migration of target components into the solvent and facilitating the extraction process.
The
ultrasonic extraction system is a specialized ultrasonic solution designed to integrate seamlessly with extraction equipment. Its core components—comprising an intelligent, auto-frequency-tracking ultrasonic generator, a high-Q value high-power transducer, and a titanium alloy extraction probe—demonstrate exceptional performance in applications involving extraction, homogenization, agitation, and emulsification. The system features a comprehensive suite of functions, including automatic frequency tracking, adjustable power output, adjustable amplitude, and anomaly alarms. Furthermore, it is equipped with RS485 communication capabilities, allowing users to monitor and modify various operational parameters via a Human-Machine Interface (HMI).
Application Fields:
Applicable across biotechnology, chemical technology, pharmaceutical technology, food technology, and environmental technology:
• Disruption of cells, bacteria, viruses, spores, and other cellular structures;
• Homogenization of soil and rock samples;
• Preparation of DNA fragments for high-throughput sequencing and chromatin immunoprecipitation (ChIP);
• Investigation of the structural and physical characteristics of rocks;
• Dispersion of pharmaceutical substances intended for injection;
• Ultrasonic homogenization of beverages;
• Dispersion and extraction of traditional Chinese medicinal herbs;
• Ultrasonic aging (maturation) technology for alcoholic beverages;
• Lysis, emulsification, homogenization, and fragmentation of particulate materials, such as carbon nanotubes and rare earth materials;
• Acceleration of dissolution and chemical reactions (e.g., in the processing of fats and oils).