Koercl Fluid Control System
Address: No. 225, nine waterway, Licang District, Qingdao
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
Vacuum water deaeration by stripping with CO2
Very low residual oxygen values ﹤20ppb
Low CO2 consumption
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 specification
Equipment and components according to customer specification
Compact tubular-frame system (skid mounted)
In industrial and laboratory applications where water quality directly impacts process outcomes, the Vacuum Water Deaeration system addresses a critical requirement by systematically removing dissolved oxygen from water down to residual oxygen concentrations below 20 parts per billion, a specification essential for applications ranging from pharmaceutical manufacturing to precision electronics production where even minimal ox
The methodology has become integral to manufacturing operations within the brewing, beverage, food processing, and chemical-pharmaceutical sectors, each of which depends critically on water characterized by minimal dissolved oxygen concentrations to guarantee superior produ
The system demonstrates high operational reliability through robust engineering design and continuous monitoring protocols, while s
Technical Description
The water undergoes homogeneous distribution across the structured packing material positioned at the uppermost section of the column, ensuring uniform liquid coverage and preventing localized channeling or bypass flows that would compromise mass transfer efficiency. The carbon dioxide gas stream is introduced at the lower inlet of the column where it begins its upward trajectory. The water descends gradually through the structured packing layers in a counter-current flow arrangement relative to the ascending CO2 gas phase, a configuration that thermodynamically optimizes the driving force for mass transfer by maintaining maximum concentration differences between the two phases throughout the column height.
The deaerated water extraction process operates through a frequency controlled pump positioned at the column's lower section to withdraw the processed liquid, while optional thermal management can be integrated via a plate heat exchanger utilizing glycol or ammonia as cooling mediums to reduce the water temperature to specified operational parameters, and the system incorporates a comprehensi
The unit can be controlled through multiple operational interfaces, including a local programmable logic controller equipped with an
In the context of maintaining rigorous hygienic protocols across production environments, this system has been engineered to accommodate the full spectrum of cleaning agents that are routinely deployed throughou
Technical Specification
|
Capacity |
10 to 500hl/h |
|
Residual oxygen content |
<20ppb |
|
Cooling media |
glycol or ammonia |
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