Anhorn Plate Component Phase Separator AFCP-2900
The Anhorn AFCP-2900 Plate Component Phase Separator represents a robust and high-efficiency solution engineered for the critical separation of complex liquid mixtures, specifically tailored for demanding applications within the coking and chemical processing industries. This advanced separator excels in partitioning residual ammonia water, light coal tar, and heavy coal tar into distinct phases through optimized plate component technology, ensuring operational reliability and superior performance under challenging conditions.
Key technical specifications defining the AFCP-2900's capabilities and construction are detailed below:
Parameter |
Specification |
Design Pressure |
0.8 MPa |
Pressure Test |
1.0 MPa (Hydrostatic) |
Design Temperature |
98°C |
Empty Weight |
21,455 kg |
Shell Material |
Q345R Steel |
Volume |
64 m³ |
Working Media |
Residual Ammonia Water, Light Coal Tar, Heavy Coal Tar |
Design Standard |
GB150 (Pressure Vessels) |
Manufacturing License |
Class A2 |
Engineered for optimal performance and longevity, the AFCP-2900 leverages high-strength Q345R steel for its primary structure, ensuring exceptional resistance to the corrosive nature of the processed media (ammonia water, light, and heavy coal tars) within its design temperature envelope. Its substantial 64 m³ capacity facilitates efficient large-scale processing, while adherence to the rigorous GB150 pressure vessel standard and manufacture under the stringent Class A2 pressure vessel license guarantee the highest levels of safety, quality control, and regulatory compliance. The robust design, validated by a 1.0 MPa hydrostatic test pressure, provides a significant safety margin over its 0.8 MPa operational design pressure.
In summary, the Anhorn AFCP-2900 Plate Component Phase Separator stands as a premier, certified (GB150, A2 License) separation system. Its robust Q345R construction, significant capacity, and engineered resilience make it an indispensable and reliable asset for achieving precise and efficient three-phase separation of residual ammonia water, light coal tar, and heavy coal tar in critical industrial processes.