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The core advantage of this system is its ability to withstand extreme high-temperature and high-pressure working conditions, which can truly simulate the actual reaction environment of industrial coal chemical and refining catalytic processes. The dual heating mode can realize accurate regulation of reaction temperature, meeting the needs of different high-temperature catalytic reaction scenarios. The multi-channel thermocouple monitoring system can realize real-time monitoring of the temperature distribution in the reactor, ensuring the uniformity of the reaction environment. The built-in safety protection mechanism can effectively avoid the occurrence of safety accidents in extreme working condition experiments.

Overall dimensions: 1800mm(W) × 1200mm(D) × 2000mm(H); Net weight: 1800kg; Maximum temperature tolerance: 1200°C with ±0.5°C accuracy; Maximum pressure tolerance: 30bar; Sample loading capacity: 10-200g; Gas flow control range: 50mL/min-20000mL/min; Reactor inner diameter: 50mm (customizable); Data collection channels: 8-channel thermocouple monitoring; Equipped with Ethernet and 4G interfaces for remote monitoring; Passed CE and ISO9001 safety certifications; Meet the test standards of national industrial high-temperature and high-pressure catalytic devices.

This high-temperature high-pressure thermal catalytic evaluation system is widely applicable to catalytic cracking, water-gas shift reaction, coal direct liquefaction catalysis and other high-temperature and high-pressure catalytic reaction scenarios. It is suitable for national key coal chemical and refining enterprises' catalyst R&D, university national key laboratories' catalytic mechanism research, and scientific research institutions' industrial catalytic technology development. It can help researchers study the performance of high-temperature and high-pressure catalysts, promoting the industrial application of high-temperature catalytic technology.