Koercl Fluid Control System
The operational headquarters of this organization is situated at No.
Tel:0532-88769174
Fax:0532-68076087
Engineering Department
Contactor:Mr Wang
Tel:13386425750
WeChat:wjp945100
QQ:894213830
Contactor:Mr Wang
Tel:13335019256
QQ:2435412200
Sales Department
Contactor:Mr Zhang
Tel:13335033289
QQ:287718655
Contactor:Mr Zhang
Tel:18953207732
QQ:2914696236
Cold water deaeration by stripping with CO2
Low residual oxygen values ‹5 ppb
Simultaneous carbonation of the water
Low energy consumption
Optional In-line oxygen analyzer,filtration or carbonization
Hygienic design,full CIP capability
Easy operation,low maintenance effort,long service life
Fully automatic operation with standard PLC and touch panel
Optional integration in process control system and remote maintenance
Individually dimensioned and designed for each specific application
Equipment and components according to customer specification
Compact tubular –frame system
The Cold Water Deaeration system represents a specialized treatment technology designed to remove dissolved oxygen from water streams through a controlled mechanical process that reduces residual oxygen concentration to levels below 5 ppb, a specification critical for applications in pharmaceutical manufacturing, high-purity chemical production, and precision laboratory environments where oxygen-sensitive reactions could compromise product quality or experimental validity.
The methodology finds widespread deployment across the brewing sector, beverage manufacturing operations, food processing facilities, and chemical-pharmaceutical production environments, specifically in contexts where the introduction of dissolved oxygen must be minimized t
The system demonstrates notably high operational reliability achieved through robust engineering design, straightforward functionality that requires minimal technical complexity, and comparatively low capital investment requirements relative to output capacity.
Technical Description
The water undergoes homogeneous distribution across the structured packing media positioned at the uppermost section of the absorption column, ensuring uniform initial contact conditions. The carbon dioxide stream is introduced at the lower end of the column structure. As the water descends gradually through the layers of structured packing material, it travels in counter-current flow orientation relative to the ascending carbon dioxide gas phase, creating a dynamic interaction pattern fundamental to gas-liquid separation processes. This counter-current arrangement maximizes concentration gradients between phases, driving mass transfer efficiency.
The deaerated water extracted from the lower section of the degassing column is conveyed through a frequency-regulated pump that enables precise flow control and operational flexibility.
In industrial and commercial applications, sensors designed to measure oxygen concentration, liquid or material level, fluid flow rates,
The unit can be controlled through multiple operational modes, including direct management via a local PLC integrated with a touch pan
In sectors where sanitation protocols form a critical operational requirement, such as beverage manufacturing and chemical-pharmaceutical production environments, the system accommodates integration with standard cle
Technical Specification
|
Capacity |
10-1000hl/h |
|
Residual oxygen content |
<5ppb |
|
CO2 consumption |
2.4g/l |
|
CO2 pressure |
5bar |
|
CO2 purity |
99.98% |
|
Cooling media |
glycol or ammonia |
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