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BF hepa air filter from China
BF hepa air filter from China
1.Ultra low resistance to airflow 2.High filter efficiency 3.Light weig ht
FOR IMMEDIATE RELEASE
(Free-Press-Release.com) March 4, 2011 --
BF HEPA filter is made of super fine glass fiber paper as media,sized paper through special moisture resistance treatment aluminum as frame.High filtration efficiency, low resistance ,large dust containing capacity and good performance of moisture-resistance.This style hepa air filters purifies in normal temperature, atmospheric pressure and wet conditions usually.Especially suitable for air purification of pharmaceutical and infusion industry with high humidity environment.
HEPA filters, by definition, remove at least 99.97% of airborne particles 0.3 micrometers (µm) in diameter.
HEPA filters are composed of a mat of randomly arranged fibres. The fibres are typical composed of fiberglass and possess diameters between 0.5 and 2.0 micron. Key metrics affecting function are fibre diameter, filter thickness, and face velocity. The air space between HEPA filter fibres is much greater than 0.3 μm. The common assumption that a HEPA filter acts like a sieve where particles smaller than the largest opening can pass through is incorrect. Unlike membrane filters, where particles as wide as the largest opening or distance between fibres cannot pass in between them at all, HEPA filters are designed to target much smaller pollutants and particles. These particles are trapped (they stick to a fibre) through a combination of the following three mechanisms:
1. Interception, where particles following a line of flow in the air stream come within one radius of a fibre and adhere to it.
2. Impaction, where larger particles are unable to avoid fibres by following the curving contours of the air stream and are forced to embed in one of them directly; this effect increases with diminishing fibre separation and higher air flow velocity.
3. Diffusion, an enhancing mechanism is a result of the collision with gas molecules by the smallest particles, especially those below 0.1 µm in diameter, which are thereby impeded and delayed in their path through the filter; this behaviour is similar to Brownian motion and raises the probability that a particle will be stopped by either of the two mechanisms above; it becomes dominant at lower air flow velocities.
Diffusion predominates below the 0.1 μm diameter particle size. Impaction and interception predominate above 0.4 μm. In between, near the 0.3 μm MPPS, diffusion and interception predominate.
The filter resistance to flow is known as its pressure drop.
Mobile 86-135-6941-8391
Phone 86-0373-3338026
FAX:86-0373-3386909
Email: amanda201099@gmail.com
Company:xinxiang beifang filter co.,ltd.,
Website: http://www.bfyy.com/
Address:No 3 of sizhuangding industrial park,
Xinxiang city, Henan province, china
MSN:cuteqianqian@live.cn

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