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0.5L Hydrogen Fluoride Dehydrofluorination Skid-Mounted Unit
0.5L Hydrogen Fluoride Dehydrofluorination Skid-Mounted Unit
0.5L Hydrogen Fluoride Dehydrofluorination Skid-Mounted Unit
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  • 0.5L Hydrogen Fluoride Dehydrofluorination Skid-Mounted Unit
  • 0.5L Hydrogen Fluoride Dehydrofluorination Skid-Mounted Unit
  • 0.5L Hydrogen Fluoride Dehydrofluorination Skid-Mounted Unit

0.5L Hydrogen Fluoride Dehydrofluorination Skid-Mounted Unit

0.5L Hydrogen Fluoride Dehydrofluorination Skid-Mounted Unit

It is primarily used to evaluate and study process operations, explore optimal process parameters, and, through sampling, analysis, evaluation, and data processing, obtain data on product distribution, product properties, and other relevant metrics—providing foundational design data for pilot-scale and industrial process design.

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Shanghai Yanzheng Experimental Instrument Co., Ltd.

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Product Description

The 0.5L hydrogen fluoride dehydrofluorination skid-mounted unit is primarily used for research in areas such as raw gas dehydrofluorination, molecular sieve performance evaluation, molecular sieve regeneration, and optimization of reaction conditions. Under laboratory conditions, it simulates industrial dehydrofluorination processes to determine optimal process operating conditions, with the aim of obtaining reaction parameters at the pilot scale and providing technical guidance for industrial production. The reactor is made of Inconel 600, with a design pressure of 0.5 MPa, an operating pressure of 0.1 MPa, a design temperature of 300°C, and an operating temperature range of 80–200°C. The exterior of the unit features a carbon steel structure coated with paint, topped with a rain shield and enclosed on all sides by sealed panels to provide dust and rain protection. Pipelines and cables are connected via through‑plate fittings or gland connections. Inside the frame, acrylic partitions are used to separate the electrical components, the raw gas inlet unit, the reactor unit, and the detection unit into distinct zones, enhancing experimental safety and, in the event of a leak, limiting the spread of gas between units to a certain extent.

  • Product Description
  • Technical parameters
  • Product Details Chart
  • dotDetails

    The 0.5L hydrogen fluoride dehydrofluorination skid-mounted unit is primarily used for research in areas such as raw gas dehydrofluorination, molecular sieve performance evaluation, molecular sieve regeneration, and optimization of reaction conditions. Under laboratory conditions, it simulates industrial dehydrofluorination processes to determine optimal process operating conditions, with the aim of obtaining reaction parameters at the pilot scale and providing technical guidance for industrial production. The reactor is made of Inconel 600, with a design pressure of 0.5 MPa, an operating pressure of 0.1 MPa, a design temperature of 300°C, and an operating temperature range of 80–200°C. The exterior of the unit features a carbon steel structure coated with paint, topped with a rain shield and enclosed on all sides by sealed panels to provide dust and rain protection. Pipelines and cables are connected via through‑plate fittings or gland connections. Inside the frame, acrylic partitions are used to separate the electrical components, the raw gas inlet unit, the reactor unit, and the detection unit into distinct zones, enhancing experimental safety and, in the event of a leak, limiting the spread of gas between units to a certain extent.

  • Product Description
  • Technical parameters
  • Product Details Chart
  • The 0.5L hydrogen fluoride dehydrofluorination skid-mounted unit is primarily used for research in areas such as raw gas dehydrofluorination, molecular sieve performance evaluation, molecular sieve regeneration, and optimization of reaction conditions. Under laboratory conditions, it simulates industrial dehydrofluorination processes to determine optimal process operating conditions, with the aim of obtaining reaction parameters at the pilot scale and providing technical guidance for industrial production. The reactor is made of Inconel 600, with a design pressure of 0.5 MPa, an operating pressure of 0.1 MPa, a design temperature of 300°C, and an operating temperature range of 80–200°C. The exterior of the unit features a carbon steel structure coated with paint, topped with a rain shield and enclosed on all sides by sealed panels to provide dust and rain protection. Pipelines and cables are connected via through‑plate fittings or gland connections. Inside the frame, acrylic partitions are used to separate the electrical components, the raw gas inlet unit, the reactor unit, and the detection unit into distinct zones, enhancing experimental safety and, in the event of a leak, limiting the spread of gas between units to a certain extent.

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