ATEX-szűrőberendezések

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ATEX-szűrőberendezések robbanásveszélyes por- és technológiai alkalmazásokhoz

Az ATEX-szűrőberendezéseket akkor alkalmazzák, amikor éghető porok vagy más robbanásveszélyes légkörök elszívása és szűrése során különleges védelmi intézkedésekre van szükség. Ilyenkor nemcsak a szűrési teljesítmény meghatározó, hanem a teljes elszívórendszer biztonságos értékelése is – a leválasztástól kezdve a csővezetéken és a szűrőn át a ventilátorig, a kihordásig, a földelésig és a vezérlésig.

Ebben a kategóriában olyan szűrőmegoldásokat talál, amelyek ipari alkalmazásokhoz készültek, ahol a kockázatértékelésnek megfelelő kivitel szükséges. A berendezések a kialakítástól függően előleválasztással, szűrőtisztítással, porkihordással, felügyelettel és további biztonsági komponensekkel kombinálhatók.

A professzionálisan megtervezett ATEX-szűréstechnika előnyei

✅ Szűréstechnika megfelelően értékelt robbanásveszélyes alkalmazásokhoz

✅ Teljes elszívórendszer részeként történő kialakítás

✅ Megfelelő elszívóelemekkel, csővezetékekkel és ventilátorokkal kombinálható

✅ Különböző szűrő- és kihordási koncepciók valósíthatók meg

✅ A berendezéskoncepcióhoz illeszkedő felügyelet és vezérlés integrálható

✅ Központi ipari elszívórendszerekhez és meghatározott technológiai területekhez alkalmas

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ATEX filtration units for dust applications in potentially explosive atmospheres

In the presence of flammable dusts, an explosive atmosphere can develop within an extraction and filtration unit. An ATEX filtration unit is therefore not simply a standard filtration unit with additional labeling, but rather part of a safety concept tailored to the specific hazard. Key factors include material properties, dust concentration, potential ignition sources, installation location, and interactions with piping, fans, discharge systems, and capture elements.

Typical Applications

✔ flammable metal dusts

✔ Wood and organic dusts

✔ Plastic and mixed dusts

✔ Production processes involving explosive dust atmospheres

✔ Centralized extraction systems with hazard zones classified accordingly

Risk Assessment as a Foundation

Whether and which ATEX measures are required is determined by the operational risk assessment. This assessment considers, among other things, substance data, potential ignition sources, the frequency and duration of explosive atmospheres, and the spatial conditions. Only then can it be determined which technical design and which protective measures are necessary.

Looking at the system as a whole

An ATEX-compliant filtration unit alone does not automatically make an extraction system safe. The fan, piping, hoses, shut-off valves, discharge, grounding, and, if necessary, explosion protection measures must also be suitable for the application. Interfaces between the components are particularly important.

Key Planning Parameters
CriterionMeaningPlanning Note
Dust CharacteristicsBasis for the Risk AssessmentUse reliable material data
Ignition sourcesInfluence Safety ConceptJointly Evaluate the Process and Equipment
Installation locationRelevant for potential protective measuresDistinguish between indoor and outdoor installation

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Grounding and Electrostatic Charge

Electrostatic charging can be a significant ignition source in dust-generating systems. Conductive connections, grounding, and suitable components must therefore be planned and tested according to the specific application.

Explosion protection measures

Depending on the risk assessment, design-related or organizational protective measures may be necessary. Which measures are appropriate depends heavily on the dust, the process, the installation site, and the system design and cannot be generalized based on a single product designation.

Common Mistakes in Selection

✔ Assess ATEX compliance based solely on the filtration unit

✔ Do not include the fan and ductwork in the risk assessment

✔ Insufficient documentation of dust properties

✔ Disregard grounding and electrostatic charging

✔ Select protective measures without reference to the risk assessment

Maintenance and Changes

Explosion protection remains relevant even after commissioning. Changes to the process, different materials, additional extraction points, or altered operating conditions may require a reassessment. Maintenance and inspections should be documented accordingly.


FAQ

When is an ATEX filtration unit required?
If the risk assessment indicates that explosive atmospheres caused by combustible dusts may occur and that appropriate technical measures are required.

Is an ATEX filtration unit sufficient on its own?
No. The entire extraction system—including the fan, ductwork, discharge, and collection—must be taken into account.

What dust data is required?
Depending on the application, reliable material and explosion characteristics are required. The specific selection is based on the risk assessment.

Does grounding play a role?
Yes. Electrostatic charging can be a source of ignition and must be taken into account in the safety plan.

Can an existing standard system be retrofitted to comply with ATEX?
There is no one-size-fits-all answer to this. Retrofitting requires a technical assessment of the entire system and its components.

Does ATEX require re-certification when process changes are made?
Yes, if there are relevant changes to materials, operating procedures, or system configuration, a new assessment may be necessary.

Consulting on ATEX filtration units

To ensure a reliable preliminary selection, information on dust, the process, flow rate, installation location, and existing system technology is required. The final design must be based on the specific risk assessment.

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