It demonstrates its effectiveness in the concentration and separation recovery of non-volatile components.
The ultrasonic misting section has a similar structure, but the collection method differs from Type-1. This method is called the electrostatic field collection method and was developed for the purpose of concentrating and separating non-volatile components. According to this method, it excels in the performance of capturing mist around 100nm and collects the altered mist of non-volatile components. 【Specifications】 ○Product Name: USA-SUS-16-ES ○Size (W×D×H) mm: 1200(W) x 400(D) x 1000(H) ○Weight: Approximately 40kg For more details, please contact us or download the catalog.
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basic information
【Usage Examples】 ○ Separation of non-volatile components ○ Ozone oxidation or reduction reaction with ammonia gas for chemical substances ○ Classification of nanoparticles ○ Concentration of dilute sugars ○ Concentration of salts ○ Deodorization, etc. ● For more details, please contact us or download the catalog.
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Applications/Examples of results
【Usage】 ○ Concentrated separation of table salt, amino acids, organic acids, surfactants, sugars, etc. ● For more details, please contact us or download the catalog.
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Nanomist Technologies Co., Ltd. focuses on ultrasonic mist separation technology as its core technology, engaging in research and development, design, and sales related to hot spring water concentration devices, medical solvent recovery devices, and wastewater treatment devices. The ultrasonic mist technology was discovered by the founder of Nanomist Technologies and was first put into practical use in 1999 at a sake brewing company (Honke Matsuura Sake Brewery). In 2011, the first industrial application device was introduced. Many collaborators were involved from the discovery of the phenomenon to its practical application, and it is expected to be utilized even more widely in the future. Our ideal at Nanomist Technologies is to contribute to the fields of separation and deodorization with innovative technologies that have never existed before, using nanomist technology. We aim to continue our efforts so that the invisible mist can support the lives of many people from the unseen aspects of society.