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Technical parameters of Atlas Copco QD+ series filters

作者: Bolet air compressor 时间:2024.03.28 Page views: 480

Atlas Copco QD+ series filtersA high-performance oil vapor filter, the QD+ series filters effectively reduce hydrocarbons, odors, and oil vapor in compressed air to protect customers' assets, equipment, and processes。The micro-porous structure of activated carbon can reduce the residual oil content to 0 by adsorption.Below 003mg/m³。

The product characteristics of Atlas Copco QD+ series filters are as follows:

• Excellent oil vapor removal capability

The micro-porous activated carbon can efficiently and fully adsorb the oil vapor in the compressed air, and keep less activated carbon particles into the compressed air;

• Reduce operating costs

Reasonable gas path design ensures low pressure drop loss;

• Easy maintenance

The shell with rib design is easy to disassemble;

Push-in filter element and integrated drainage valve design easy to replace;

Service indicator shows filter usage status (option);

Filter -QD Filter - Atlas QD filter

Test standards for Atlas Copco QD+ series filters

ISO 8573-5:2001

Performance parameters of Atlas Copco QD+ series filters

Oil vapor
过滤技术 Micro-porous activated carbon
Detection mark SO 8573-5:2001
最大Oil residue (mg/m³)* 0.003*
ISO 8573-1quasi-level [2:-:1]
Initial dry pressing(mbar) 75
Cartridge replacement 2000 hours of operation/year, whichever comes first
前置设备
WSD
UD+/DD+ and PD+
dryer


Atlas Copco QD+ series filtersIntake temperature correction factor
When the equipment is running at a higher temperature, more oil mist will enter the compressed air. When the actual working condition is different from the reference working condition, the reference working condition should be used
The flow rate and the following correction factors are used to calculate the treatment flow rate under actual conditions to ensure the oil removal effect of QD+。


Inlet air temperature 20 25 30 35 40 45 50 55 60
Coefficient of machine correction 1 1 1 1
Oil sprayerCorrection factor 1.2 1.5 1.7 2.1 2.4 2.6

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