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Structural optimization design of separator The gas-liquid separator for the AEL coupled with renewable energy sources, is designed to separate gas (H2 and O 2) and lye, necessitating adaptation to fluctuating processing capacities.
When the AEL operating at 70 °C + 1.6 MPa gauge pressure, the hydrogen volume flow rate is 0.15 m3 /h. Converted to standard operation, the hydrogen volume flow rate is 2Nm 3 /h. So the rated power of AEL is defined 2Nm 3 /h. The experimental results are presented in Table 1. The separation efficiency of the gravity gas-liquid separator is 88.28%.
Results and discussion The gas-liquid two phases are separated by settlement at the gravity gas-liquid separator. The separation time and the inlet velocity affect the gas settlement performance, and then affect the separation performance of the gravity gas-liquid separator.
This increases the capacity of the separator and gas load factors of up to 0.45 m/s are possible. This makes them an excellent choice when equipment size is critical, for example, in offshore applications or for de-bottlenecking existing equipment.
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We provide industrial energy-saving components, deep cycle solar batteries, multi-MPPT inverters, telecom power supplies, and smart energy systems tailored for the South African mining and industrial sectors.
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