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Hydrogenation Fixed-Bed Reactor
Hydrogenation Fixed-Bed Reactor
This unit is a fixed-bed hydrogenation catalyst evaluation system developed by Yanzheng for the school, designed to optimize operating parameters and assess catalyst performance under laboratory conditions. The system consists of a single liquid feed line and four gas feed lines, one of which is used for sparging. The reactor is made of 310S stainless steel and can operate under two sets of conditions: high‑temperature, atmospheric pressure (1000°C at ambient pressure) and high‑temperature, high‑pressure (500°C at 10 MPa). The entire system is housed in a modular skid-mounted aluminum frame, with acrylic panels installed around the perimeter and a vent outlet on the top, which can be connected to the laboratory’s exhaust duct. This design prevents experimental materials from escaping into the entire lab, thereby enhancing experimental safety. The system employs a PLC‑plus‑computer control architecture to manage the test setup, collect data, and perform data management, offering functions such as equipment status monitoring, parameter adjustment, curve visualization, data storage and export, as well as alarm notifications.
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Product Description
This unit is a fixed-bed hydrogenation catalyst evaluation system developed by Yanzheng for the school, designed to optimize operating parameters and assess catalyst performance under laboratory conditions. The system comprises one liquid feed line and four gas feed lines, with one of the gas lines used for sparging. The reactor is constructed from 310S stainless steel and can operate under two sets of conditions: high‑temperature, atmospheric pressure (1000°C at ambient pressure) and high‑temperature, high‑pressure (500°C at 10 MPa). The entire system is housed in a modular skid-mounted aluminum frame, with acrylic panels installed around the perimeter and a vent outlet on the top, which can be connected to the laboratory’s exhaust duct. This design prevents experimental materials from escaping into the entire lab, thereby enhancing experimental safety. The system employs a PLC‑plus‑computer control architecture to manage the test setup, collect data, and perform data management, offering functions such as equipment status monitoring, parameter adjustment, curve visualization, data storage and export, as well as alarm notifications.
- Product Description
- Technical parameters
- Product Details Chart
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Details
This unit is a fixed-bed hydrogenation catalyst evaluation system developed by Yanzheng for the school, designed to optimize operating parameters and assess catalyst performance under laboratory conditions. The system comprises one liquid feed line and four gas feed lines, with one of the gas lines used for sparging. The reactor is constructed from 310S stainless steel and can operate under two sets of conditions: high‑temperature, atmospheric pressure (1000°C at ambient pressure) and high‑temperature, high‑pressure (500°C at 10 MPa). The entire system is housed in a modular skid-mounted aluminum frame, with acrylic panels installed around the perimeter and a vent outlet on the top, which can be connected to the laboratory’s exhaust duct. This design prevents experimental materials from escaping into the entire lab, thereby enhancing experimental safety. The system employs a PLC‑plus‑computer control architecture to manage the test setup, collect data, and perform data management, offering functions such as equipment status monitoring, parameter adjustment, curve visualization, data storage and export, as well as alarm notifications.
- Product Description
- Technical parameters
- Product Details Chart
-
This unit is a fixed-bed hydrogenation catalyst evaluation system developed by Yanzheng for the school, designed to optimize operating parameters and assess catalyst performance under laboratory conditions. The system comprises one liquid feed line and four gas feed lines, with one of the gas lines used for sparging. The reactor is constructed from 310S stainless steel and can operate under two sets of conditions: high‑temperature, atmospheric pressure (1000°C at ambient pressure) and high‑temperature, high‑pressure (500°C at 10 MPa). The entire system is housed in a modular skid-mounted aluminum frame, with acrylic panels installed around the perimeter and a vent outlet on the top, which can be connected to the laboratory’s exhaust duct. This design prevents experimental materials from escaping into the entire lab, thereby enhancing experimental safety. The system employs a PLC‑plus‑computer control architecture to manage the test setup, collect data, and perform data management, offering functions such as equipment status monitoring, parameter adjustment, curve visualization, data storage and export, as well as alarm notifications.
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