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Oushi Sheng (Beijing) Technology Co., Ltd

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    market@osskj.com

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    13810070659

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    Building 3, Zhongke Industrial Park, No. 103 Beiqing Road, Haidian District, Beijing

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Micro reaction synthesis platform

NegotiableUpdate on 05/16
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Overview

MO-FLOW-S microreactor synthesis platform is a universal flow chemistry synthesis platform equipment launched by Oushi Sheng Company for application needs. The equipment can be equipped with multiple units such as feeding unit, multi-channel temperature acquisition unit, multi-channel pressure acquisition unit, electronic control microreactor working platform, online pressure control unit, online sample acquisition unit, online detection, etc. Each unit can be quickly replaced according to application needs, suitable for development and verification under different process conditions in research and production. Equipped with a dedicated software workstation, it provides functions such as experimental scheme design, data tracking and acquisition recording, reaction process image recording, real-time analysis of detection results, and output of multiple report formats. The powerful software features fully utilize the functions of the micro reaction synthesis platform.

Product Details

Product Features
Feature 1
A one-stop solution for flow chemistry applications, with flexible and diverse configurations that can be matched with different module units according to application needs.
Feature 2
Digital fast plugging and unplugging microchannel reactors, allowing for quick replacement of reactors and enabling the development of multiple types of fluidization processes on the same platform.
Feature 3
Multiple microchannel reactors can be freely installed, involving homogeneous, heterogeneous, gas-liquid, photochemical and other reaction types.
Feature 4
The reactor is equipped with a built-in storage chip that can read reactor parameter information, providing raw reactor parameter information for process development. The entire reaction process data is recorded for easy traceability of process conditions and repeated synthesis conditions.
Feature 5
Optional online Fourier transform infrared or online ultraviolet detectors can monitor reaction results in real time, providing guarantees for rapid optimization of process routes.
Feature 6
An online sample collector can be optionally selected to sample the reaction products at regular intervals, eliminating the hassle of manual sampling.
Instrument composition
Feeding unit
The feeding unit is the power source of the entire micro reaction synthesis platform and is a key factor in determining whether continuous reactions can be accurately completed. The accuracy, stability, reliability, and diversity of raw materials transported are key factors in evaluating the feeding unit.
Reaction control unit
In the continuous reaction process, monitoring temperature and pressure parameters can provide real data for the reaction and provide data support for reaction analysis; One of the key factors for the success of continuous process development is to achieve rapid temperature and pressure collection and control through precise sensor devices.
Reaction unit
Plug in digital microreactor
Convenient operation: Based on the reactor material, reactor channel type, and liquid holding capacity, nearly 60 different types of microchannel reactors are provided, suitable for liquid-liquid homogeneous, liquid-liquid heterogeneous, gas-liquid, photochemical and other reactions with different fluxes. A standardized card interface is provided.
Security guarantee: With a technical card insertion structure design, it achieves 6MPa high-pressure sealing without fastening screws. The pipeline design can prevent liquid splashing when inserting or removing the reactor.
Information visualization: After inserting the reactor into the device slot, the software system can automatically recognize different types of reactors and display basic information such as microreactor type, material, and liquid holding volume. The platform has some built-in cases and provides parameters such as flow rate, pressure, and temperature for the cases, providing a basis for process development and equipment matching.
Application field
Case 1: Nitrification reaction
General Parameters