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Weisite Technology (Suzhou) Co., Ltd

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Pilot micro jet homogenizer M30

NegotiableUpdate on 01/31
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Overview
The pilot micro jet homogenizer M30 $r $n WST-M30 is a medium-sized micro jet homogenizer designed for research and development pilot stages and small-scale production applications. The maximum operating pressure designed can reach 2000 bar, and hydraulic drive design is used to improve homogenization efficiency. Considering the common occurrence of homogenization chamber blockage in practical production applications, the WST-M30 is equipped with a diamond material homogenization chamber as standard and a "backwash system" for easy cleaning of residual foreign objects and treatment of homogenization chamber blockage, minimizing the probability of blockage and reducing maintenance costs.
Product Details

1、 Introduction to Micro Jet Technology

Microfluidic technology utilizesMicrochannels and structuresTo achieve specific and complex fluid operationsInterdisciplinary technologyThe micro jet homogenizer utilizes mature and stable hydraulic technology to pressurize liquid materials under the action of a plunger pump. With accurate pressure regulation, the material pressure is increased to the set pressure value; The pressurized material flows towards a fixed geometric shapeDiamond NanoprocessorAnd generate high-speed microjets. Materials with high-speed jets generate physical forces such as shear, collision, and cavitation effects in the microchannels of the nanoprocessor, thereby reducing particle size, achieving uniformity, emulsification, and encapsulating active ingredients.

2、 Working principle of microjet homogenizer

Microfluidic injection is the process of injecting high-pressure suspension materials into channels with pore sizes ranging from tens to hundreds of micrometers through hydraulic means, creating a huge pressure gradient before and after the valve inlet, causing the suspension of the material to be subjected to high velocityShear actionreach, achieve, attainFirst crushingPurpose; After passing through the valve hole, the material liquid forms a high-speed jet with subsonic or supersonic velocity at the outlet of the valve holeVelocity difference and turbulence effectThe formation of materialsBroken againWhen high-speed jets interact with diamond target plates or jets in the opposite directionHigh speed collision, then the target impact crushing is formed to enhance the crushing effect and complete the suspension of particles in the material liquidofUltrafine pulverization.

IIICore component - diamond interactive cavity

The specially designed micro pores inside the diamond interactive cavity can generate high pressure under the action of the booster. The application of diamond increases its service life, and the design of Y-shaped and Z-shaped channels meets various homogeneous application requirements.

Advantages of diamond mutual cavity:

Diamond has a built-in layer, which is more wear-resistant and suitable for processing samples with harder particles;

※ It can be customized according to different applications of customers;

Using turbulence and collision between samples to achieve sample processing reduces the risk of sample contamination!

※ It can withstand pressure and achieve greater shear force, cavitation, and turbulence effects!

4Pilot micro jet homogenizer M30Equipment parameters

Maximum pressure: 2000bar

Maximum flow rate: 30L/H

Drive system: hydraulic cylinder system

Control System: Huichuan Touchscreen Control System

Working voltage and power: 380V, 7.5KW

Size: 1419 * 769 * 1750mm

Quality: 50kg

Equipment parameters for the entire line

model

type

Operating pressure

processing capacity

power

WST-MINI

experimental

0-2000bar

3-6L/H

2.17KW

WST-NANO

experimental

0-2000bar

5-10L/H

2.5KW

WST-M30

Pilot type

0-2000bar

24-30L/H

7.5KW

WST-M60

Pilot type

0-2000bar

50-60L/H

11KW

WST-M120

productive

0-2000bar

120L/H

18.5KW

WST-M240

productive

0-2000bar

240L/H

37KW

WST-M480

productive

0-2000bar

480L/H

55KW

5Pilot micro jet homogenizer M30Device Application

1. Complex injection formulations: nanoemulsions, liposomes, nanoparticles, nanocrystals, microspheres, etc;

2. Biotechnology: Cell lysis extraction, vaccine adjuvant;

3. Liposome cosmetics;

4. Fine chemicals: conductive polymers, inkjet printing, etc;

5. New energy materials: hydrogen fuel cell membrane electrode dispersion, carbon nanotube dispersion, graphene stripping, etc;

6. Food and beverage: food macromolecule modification, nanocellulose, liposome nutritional supplements, etc.