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Rock characterization instrument high-throughput carbon dioxide supercritical reaction device

NegotiableUpdate on 05/06
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Overview

The rock characterization instrument is a high-throughput CO2 supercritical reaction device, and the four parallel CO2 supercritical foaming experimental device adopts an automatic heating furnace for heating and temperature control, with a design pressure of 25MPa; The design temperature is 300 ℃, and the operating temperature is 0-250 ℃. The kettle contains a supercritical fluid of carbon dioxide. It is mainly used to evaluate and study the process, explore the optimal process parameters, obtain product distribution, product properties and other data through sampling analysis, evaluation and data processing, and provide design basis data for pilot and industrial process design.

Product Details


Rock characterization instrument high-throughput carbon dioxide supercritical reaction device

Product introduction: The four parallel CO2 supercritical foaming experimental device adopts an automatic heating furnace for heating and temperature control, with a design pressure of 25MPa; The design temperature is 300 ℃, and the operating temperature is 0-250 ℃. The kettle contains a supercritical fluid of carbon dioxide. It is mainly used to evaluate and study the process, explore the optimal process parameters, obtain product distribution, product properties and other data through sampling analysis, evaluation and data processing, and provide design basis data for pilot and industrial process design.


Advantages of the rock characterization instrument high-throughput carbon dioxide supercritical reaction device:

1. Efficient and high-throughput experimental capability

Four parallel reaction stations with a single station capacity of 0.1L, conducting four sets of experiments simultaneously to shorten the research and development cycle.

Automated operation reduces manual intervention and improves efficiency.


2. Accurate temperature and pressure control

Temperature control accuracy ± 1 ℃, real-time monitoring to ensure experimental repeatability.

High pressure tolerance, design pressure of 25MPa, maximum 21MPa, suitable for supercritical CO ₂ conditions.


3. Safe and reliable design

316L stainless steel reactor, corrosion-resistant and high-temperature resistant, ensuring long-term stable operation.

Multiple safety protections, including overpressure alarm and over temperature protection, and automatic cut-off of abnormal working conditions.


4. Intelligent control system

Siemens PLC+touch screen control, user-friendly human-computer interaction, supports parameter setting, data recording, and historical tracing.

The accuracy of electrical instruments is ± 1% F.S., ensuring precise and controllable key parameters.


Technical Features
  • Reaction kettleUsing advanced stainless steel materials to ensure chemical stability, the reactor capacity can be adjusted to meet the experimental needs of different scales.

  • Temperature control systemEquipped with an intelligent temperature control system, it can monitor and adjust the reaction temperature in real time, accurate to ± 0.1 ℃, meeting the requirements of various synthesis reactions.

  • high-pressure pumpAdopting an efficient high-pressure pump to ensure the stability of carbon dioxide flow rate and pressure, and improve reaction efficiency and selectivity.

  • data processingEquipped with a data analysis module that automatically records key parameters during the reaction process, facilitating data organization and analysis.

performance advantage

1. 高通量合成

The device can achieve multiple parallel reactions, significantly improving synthesis efficiency, and is suitable for high-throughput screening and batch synthesis.

2. Green and environmentally friendly

Carbon dioxide, as a reaction medium, is non-toxic and harmless. After the reaction, it can be recycled and reused, which is in line with the concept of green chemistry.

3. Easy to operate

Fully automated control system reduces manual intervention, lowers operational difficulty, and improves laboratory work efficiency.

4. Precise control

Key parameters such as temperature, pressure, and flow rate can be precisely controlled to improve the purity and yield of synthetic products.

application field

1. Drug synthesis

Suitable for synthesizing bioactive drugs, novel drug molecules, etc.

2. Materials Science

Plays an important role in the synthesis of new polymer materials and nanomaterials.

3. Food industry

Used for extracting natural products, developing new food additives, etc.

4. Biochemical Engineering

Suitable for biochemical processes such as fermentation and enzymatic reactions.