Degassing Module DIC EF-G6-B22
Description
Degassing Module DIC EF-G6-B22
Atlas Trading Company | All-In-One Ceramic Supplier
The DIC EF-G6-B22 degassing module is a high-performance membrane contactor designed for the removal of dissolved gases from industrial inkjet circuits. It is commonly used in SYSTEM Ceramics printers (part number 90018642) and other industrial inkjet systems like SACMI that require stable ink flow and bubble-free operation.
The Degassing module is built with hollow-fiber membrane technology (Liqui-Cel type), which allows gases to permeate through the membrane while completely retaining the liquid phase. During operation, the process ink flows on one side of the membrane, while the opposite side is kept under vacuum or flushed with an inert gas. This pressure differential efficiently removes dissolved oxygen, nitrogen and entrapped air from the ink.
This degassing module action prevents the formation of micro-bubbles inside the ink recirculation loop, resulting in:
Higher printing stability
Elimination of nozzle misfiring and drop-instability
Reduced cavitation inside the pumps
Improved jetting consistency and print quality
Increased reliability of the printheads and longer lifetime
The Degassing Module DIC EF-G6-B22 features a compact, lightweight and plug-and-play construction, making it easy to install as a direct replacement part in ink delivery systems. The housing and internal components are manufactured from materials compatible with solvent-based, water-based and UV inks, ensuring long-term durability under continuous industrial use.
Typical characteristics include:
Hollow-fiber membrane contactor
High gas-removal efficiency
Compact body (approx. 18 × 7 × 7 cm depending on version)
Weight approx. 0.6 kg
Suitable for continuous duty in production environments
The degasser module is supplied sealed in individual packaging and is intended as an original replacement part for inkjet ceramic printing systems.
Explore: Digital printing Spare Parts
Discover our:Spare Parts
Contact Us for a Quote!
Follow Us on:



