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2400Nm3/h VPSA O2 Plant

2400Nm3/h VPSA O2 Plant

The VPSA O2 Plant Data:

Feedstock: Air

Oxygen capacity: 24000 Nm³/h

Oxygen purity: 93%

Project Location: South Korea

Application: Ternary lithium battery cathode material smelting

Typical consumption data for 2400 Nm³/h oxygen:

Installed power of main engine: 1120kw

Circulating cooling water: 4.2T/h

Circulating sealing water: 3.6T/h

Instrument air: 75Nm³/h(P=0.6MPa·G)

* The VPSA oxygen production process implements “customized” design according to the user’s different altitude, meteorological conditions, device size, oxygen purity (70%~93%).

Floor area:

24m×21m

Plant Features of the VPSA Oxygen Plant:

In order to meet the needs of the ternary lithium battery cathode material company of Samsung in South Korea to reduce the cost of oxygen and the dependence on liquid oxygen, Samsung uses the VPSA oxygen generation plant provide by TCWY to replace the liquid oxygen supply.

The VPSA O2 Plant adopts a typical 211 process (one set of two-tower adsorption system, one set of blowing system, one set of vacuuming system), the adsorption system adopts two radial flow adsorption towers + composite adsorption bed, and the blowing and vacuuming system adopts a two-axis extension roots integrated unit. Product oxygen (purity 93%) is pressurized by piston type oxygen compressor and then transported to the oxygen network, and the original liquid oxygen supply system is retained as a backup system.

After the completion of the VPSA oxygen generation plant, the customer's oxygen cost is significantly reduced, and the dependence on liquid oxygen supply is reduced, and the oxygen guarantee capacity is further strengthened.

TCWY has extensive experience and innovative ideas in the field of VPSA oxygen production plant (VPSA-O2 Plant), and TCWY’s technology is very mature and reliable, the process is reasonable and perfect, which can well meet the needs of customers. Users in a wide range of industries can benefit from operating a cost-effective TCWY VPSA oxygen plant and reduce their production costs significantly.