Cellulose Nanofiber Flame-Retardant Antistatic Filter Cartridge 1. Conductive carbon-based additives or metallic conductive fibers are incorporated into the cellulose nanofiber media. A conductive copper grounding braid is fitted to the finished cartridge to help dissipate accumulated static charge when it is correctly connected to ground. 2. This media is suitable for applications in which fine dust can generate and retain static charge, such as plastic-particle processing. Its conductive structure helps reduce electrostatic accumulation and supports more reliable pulse-jet cleaning. 3. For combustible metal dusts, including aluminum, magnesium and titanium alloy dust, antistatic media and verified grounding can form part of the overall dust-hazard control system. They do not replace application-specific explosion protection, equipment bonding, ventilation or other safety measures required by applicable regulations. 4. The standard media weight is approximately 135 g/m². A Ø352 × 660 mm cartridge provides a filtration area of approximately 21–23.5 m². Filtration performance depends on the selected media specification and should be confirmed for each application.
PET PTFE Flame-Retardant Antistatic Filter Cartridge 1. The cartridge uses polyester PET spunbond filter media with PTFE membrane lamination. Flame-retardant and antistatic options can be supplied according to the application requirements. 2. Antistatic media is suitable for dusts that may accumulate electrostatic charge, including certain plastic-processing dusts. A conductive grounding braid can help dissipate static charge when correctly connected to ground. 3. For combustible metal dusts, including aluminum, magnesium and titanium alloy dust, antistatic media and verified grounding form only part of the overall hazard-control system. They do not replace application-specific explosion protection or other measures required by applicable regulations. 4. Polyester filter media offers good mechanical strength and can be selected for suitable industrial dust applications. Chemical compatibility must be confirmed according to the actual gas composition, temperature and chemical concentration.
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