Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor

Product Details
Customization: Available
Model: Cm-P
Size: 290×290×21mm
Diamond Member Since 2011

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No. 248 Guanganmenwai Avenue, Xicheng District, Beijing, China
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  • Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor
  • Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor
  • Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor
  • Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor
  • Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor
  • Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor
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Basic Info.

Model NO.
CM-P
Material
High Borosilicate Float Glass
Channel Length
2.4m
Volume
100ml
Temperature Range
-25°c-195°c
Operating Pressure
0-16 Bar (-25°c-100°c); 0-10 Bar (100°
Throughput
0.5-3L/Min up to 180kg/H
Transport Package
Plywooden Case
Specification
1 Unit
Trademark
Laryee
Origin
China
HS Code
90278990
Production Capacity
200

Product Description

Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics ReactorCM-P Pilot-scale & Production-scale Glass Flow Reactor
Summary
CM-P is a modular, glass flow reactor for process development, pilot & full-scale production.  Fabricated from borosilicate glass, with integrated heat exchange, MF-V9 flow reactor modules give unrivalled chemical compatibility & process control for challenging chemical applications at scale.

Employing standard tube fittings, MF-V9 flow reactor can be used with existing pumps & thermostats, or supplied as total systems on request.

Our industrial flow reactors are modular glass reactors for the performance of continuous flow reactions at ton scale. Microchannel reactors are suitable for chemically challenging reactions under extreme processing conditions such as fast, highly exothermic reactions, reactions with aggressive media, reactions employing unstable intermediates or hazardous reactions not accessible under batch conditions.

The CM-P thousand-ton glass microreactor is a capacity upgrade without magnification structure based on the CM-D small scale glass microreactor. Compared with CM-D, CM-P does not amplify the former unit hybrid structure to the same proportion, but transfers the unit hybrid structure of CM-D in parallel with 8 threads without amplification.  Through the special design of 3-layer heat exchange, 2-layer process, and 1-layer sealing, the flux is increased by 15-20 times, and the heat exchange efficiency is further strengthened, so that the reaction can still be obtained in the case of high flux Good heat transfer control. At the same time, the two major factors of mass transfer and pressure drop are taken into account, ensuring mass transfer without amplification effect and small pressure drop, realizing the maximization of mass transfer and heat transfer efficiency, and safely and stably achieving the thousand-ton pilot production process.
Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor


CM-P, liquid holding capacity 100mL, 8-pass parallel connection, 6-layer 3 heat exchange 2 process design, flux can reach 1500-2000T/a, support UV light penetration above 315nm UVB (80% light transmittance) , and the same flow pressure.

Specifications

 
CM-P Pilot-scale&Production-scale Continuous Flow Microchannel Reactors
Model CM-P
Size 290×290×21mm
Material Glass
Channel Length 2.4m
Volume 100ml
Temperature Range -25ºC-195ºC
Operating Pressure 0-16bar(-25ºC-100ºC);  0-10bar(100ºC-195ºC)
 Throughput 0.5-3L/min(up to 180kg/h)


 Examples of User applications

1.Fast, strongly exothermic reactions
2.Reactions with aggressive media & / or unstable intermediates
3.Material supply under GMP conditions
4.Processes include nitrations, cyanations, lithiations, diazotisations & halogenations
Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor
Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor
Continuous Flow Microchannel Reactors Glass Flow Reactor Microfluidics Reactor

 

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