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Introduction and advantages of Hefei in-situ high-tech multi-channel fixed bed reactor products!

Release date:2023-03-30 Reading quantity:2141

Product introduction of multi-channel fixed bed reactor:

The Hefei in situ multi-channel fixed bed reactor is a high-temperature and high-pressure multi position reaction device designed to maximize the efficiency of experimental personnel. It can achieve rapid, efficient, and parallel screening of catalytic materials, reaction evaluation, and process optimization. Each channel reactor can choose from integrated, independent, and fast switching operating modes.

Advantages of multi-channel fixed bed reactor products:

Strong pertinence: The process flow, process parameter recognition, and standard component selection are fully customized according to customer needs;

Accurate calculation and design: Based on customer information, accurately calculate the material and heat balance, and calculate and design the dimensions and parameters of non-standard components including reactors, separation devices, and heat exchange devices;

Accuracy: pressure ± 0.25% F.S, flow rate ± 1% F.S, temperature difference in the constant temperature zone ± 1 ℃, mixing difference between channels ± 1 ℃, temperature control accuracy ± 0.1 ℃

High degree of automation: data collection and control of pressure, temperature, flow rate, etc. are integrated on the touch screen, with a simple and friendly operating interface, making it convenient and fast to use. It can achieve automatic product sampling and analysis, and operate continuously 24/7. Able to achieve arbitrary switching of evaluation stages such as pre-treatment, blowing, and reaction between different channels, maximizing the efficiency of experimental personnel;

Parallelism: Independent setting of reaction parameters for each channel, real-time monitoring of status, and product analysis: Independent flow meter injection, temperature control, separate configuration of product separation and sampling analysis modules, control of parameter errors between channels.


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