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Јул . 27, 2025 21:01 Back to list

Active Carbon Air Filter for Air Purifier – Superior Filtration Efficiency

In today’s dynamic air filtration industry, technologies around active carbon air filter for air purifier are evolving rapidly to meet stricter regulatory demands and end-user expectations for indoor air quality (IAQ), energy savings, and specialized applications. This comprehensive guide examines technical parameters, manufacturing processes, industry standards, product comparisons (including oil, fuel, and HEPA/carbon filters), and real-world deployment cases – all rooted in the recognized EEAT (Expertise, Experience, Authoritativeness, Trustworthiness) framework.

1. Industry Trend: Surge in Demand for Advanced Air Filtration

According to Grand View Research, the market for room air purifiers is expected to reach $16 billion by 2027 (source), with active carbon air filter for air purifier designs gaining traction in both residential and industrial settings due to their proven performance in VOC removal, odor control, allergy management, and particulate reduction.

Core Product Specifications: Active Carbon Air Filter for Air Purifier
Parameter Typical Value / Range Unit Industry Standard
Activated Carbon Content 200-500 g/m2 ISO 10121-1:2014
Filtration Efficiency (PM2.5) 85-99.5 % EN 1822, GB/T 14295
Removal Rate (Benzene/TVOC) >95 % GB/T 18801-2015
Pressure Drop @ Rated Flow 25-45 Pa ASHRAE 52.2
Service Life 6-12 months ISO 16890
Temperature Resistance 60–80 IEC 60068
Structure Type Honeycomb, Pleated, Bag - -
Active Carbon Air Filter for Air Purifier – Superior Filtration Efficiency
Honeycomb & pleated carbon filter variants boost adsorption efficiency

2. Comparative Technical Overview: Multi-Segment Filtration Products

Product Comparison Table: Advanced Filtration Products
Product Primary Material Filtration Target Efficiency (%) Standard
Active Carbon Air Filter for Air Purifier Activated carbon + nonwoven fiber VOC, Odor, PM2.5 98 (PM), 95+ (VOC) EN 1822
Oil Filter Fit for Outback/Legacy/SVX Car Synthetic blend media, metal mesh Engine oil impurities 96 SOC SAE J1858
Fuel Filter for Caterpillar Truck Engine Cellulose media, resin-impregnated Diesel, soot separation 95+ ISO 19438
Replacement Dyson Carbon HEPA Air Filter Glass fiber, activated carbon PM0.3, gas phase 99.97 (HEPA) EN 1822:2009
MERV 8 Pleated AC Furnace Air Filter Pleated synthetic fiber Dust, allergens 70-85 ASHRAE 52.2
Honeycomb Activated Carbon Filter Extruded carbon block Odor, TVOC 90-97 GB/T 18801
F5 F6 F7 F8 F9 Pocket Air Filter High-loft microfiber glass Fine particulate (PM1-10) 70-95 (varies by grade) ISO 16890
37010 - Auto Car Engine Oil Filter Cellulose + synthetic, steel cap Engine oil contaminants 93 SAE J1858
Oil Filter for Chevrolet Camaro High-performance synthetic Lubricant purification 98 SOC ISO 4548-12

3. Active Carbon Air Filter for Air Purifier: Detailed Manufacturing Process

Raw Material Selection Premium activated carbon, PET/PP nonwoven base
Carbon Impregnation Even load of 250g-500g/m² (per design)
Forming & Shaping Pleating/honeycomb extrusion via automated lines
Thermal Bonding Edge sealing, controlled at 130–170℃
CNC Cutting Accuracy & dimension standardization (tolerance <0.5mm)
ISO Standard Testing Filtration, removal rate, and pressure drop
Final Assembly & Packing
Key Node Highlights:
  • Materials: Activated coconut shell carbon; PET/PP support, eco-friendly adhesives.
  • Manufacturing: Automated pleating/extrusion, tolerance guarantee, CNC accurate cutting, ultrasonic welding/cold-press frame.
  • Standards: ISO 10121 (adsorption performance), ANSI/ASHRAE 52.2 (particulate efficiency), EN 1822-5 (HEPA segment).
  • Quality Assurance: 100% inspection (odor; pressure; leakproofness) with certified batch reports.
Typical Lifespan: 6-12 months (subject to pollutant load & flow rate).
Industries Served: Residential (home/office), petrochemical, metallurgy, HVAC, semiconductor, high-purity labs.
Graphical demo: Automated line for activated carbon air filter shaping

4. Data Visualization: Technical Parameter Trends

Continuous progress in active carbon air filter for air purifier: Higher PM2.5 removal, lower pressure drop

5. PLGS-6 Thread Tapping Machine C: Support Technology for Precision Filter Components

PLGS-6 Thread Tapping Machine C is an advanced automated equipment enabling high-precision machining of housing covers and end caps for filtration products, crucial for the dimensional stability and sealing performance of active carbon air filter for air purifier components. Its features cover high-speed thread tapping, intelligent error detection, and compatibility with casting, forging, or machined metal/plastic parts.

PLGS-6 Machine - Key Specifications

  • Thread Range: M3–M16
  • Speed: up to 2400 rpm
  • Repeatability: ±0.03mm
  • Automation: Servo-controlled, auto-load/unload
  • Suitable Materials: Al, Die-cast Zn, Steel, Engineering Plastics
  • Certifications: ISO 9001:2015

Application Benefits

  • Ensures airtightness of filter assemblies
  • Minimizes thread burrs (
  • Ideal for large batch, high-mix production
  • Integrates with in-line vision QC
PLGS-6 supports multi-material component machining for filter covers/seal-rings
Performance improvement: Higher throughput, tighter thread control

6. Manufacturer Comparison & Custom Solution Offer

Supplier Benchmark: Global Carbon Filter Leaders
Manufacturer ISO Certified Custom Options MOQ Lead Time (days) After-Sales Support
3M ISO 9001, ISO 14001 OEM, ODM 500 35–50 B2B Portal/Global
AAF Flanders ISO 16890 Custom media, size 200 25–40 Dedicated Rep
PLGS Filters ISO 9001:2015, SGS Material, frame, private label 100 15–28 1v1 Technical Team
Honeywell ISO 9001 Limited 2000 45–60 Standard
Custom Solution: PLGS offers flexible active carbon air filter for air purifier modifications (shape, frame, carbon type, multi-layer functionalization), rapid prototyping (as low as 7 working days), and technical support for system integration (HVAC/auto/lab). All solutions certified to ISO & ANSI standards.

7. Application Scenarios & Real-World Case Studies

1) Commercial HVAC Upgrades (Europe, 2023):
Large hospital network in Germany switched to customized active carbon air filter for air purifier sets, resulting in:
  • TVOC reduction: 97% (tested by TÜV Rheinland)
  • Odor complaints: -89% in 2 months
  • Annual energy savings: 16.8% (due to optimized airflow and lower ΔP)
2) Petrochemical Plant Fume Control (Southeast Asia, 2022):
Refitting absorber towers with high-density carbon filters achieved >98.5% benzene capture at 1.2 m/s flow—meeting OSHA, ISO 10121, and local hygiene codes.
3) Laboratory Cleanroom Vents (US, 2024):
Exploratory research lab required removal of finely dispersed VOCs and O3. Dual-function HEPA/catalyst+carbon stacks delivered 99.85% O3 + 97.9% formaldehyde removal, validated by peer-reviewed studies.
Active Carbon Air Filter for Air Purifier – Superior Filtration Efficiency
Industrial air purification upgrade using active carbon modules

8. EEAT: Certifications, Partnerships & Quality Control

  • Certifications: ISO 9001:2015 (manufacture), ISO 16890 (air filter), SGS (material analysis)
  • Testing: Random batch tests, traceable QC report, external third-party lab validation (SGS/TÜV)
  • Clients: Major HVAC OEMs, cleanroom solution providers, automotive Tier1s
  • Service: 24-72h tech support, warranty up to 24 months, on-site troubleshooting
  • Documentation: Factory inspection records, CAD drawings, batch traceability
“We have observed a consistent drop in odor/AQI levels across all monitored sectors since deploying PLGS custom active carbon air filter sets. The filters exhibit stable airflow and lower maintenance downtime.” — OEM HVAC integrator, 2023.

9. FAQ: Professional Q&A on Technical Terms

Frequently Asked Technical Questions
  • Q1: What is the difference between honeycomb and pleated carbon filters?
    A: Honeycomb filters embed carbon in hexagonal cells, offering high surface area and VOC removal; pleated types maximize dust/particulate holding via increased media area.
  • Q2: What materials are best for active carbon air filter for air purifier frames?
    A: Anodized aluminum (corrosion resistant), polypropylene (lightweight, high chemical tolerance), and custom-engineered plastics. Choice depends on use conditions and regulatory requirements.
  • Q3: Which standards apply for filter efficiency testing?
    A: EN 1822 (for HEPA/ULPA), ISO 10121 (for carbon adsorption), and ASHRAE 52.2/ISO 16890 (general HVAC use).
  • Q4: How often should activated carbon filters be replaced?
    A: Typically every 6–12 months, unless high VOC loads or specialized environments require shorter intervals (per ISO 16890 guidelines).
  • Q5: What is the pressure drop, and why is it important?
    A: Pressure drop (ΔP) is the resistance the filter adds to airflow; lower ΔP translates to energy savings and prolonged fan/lab equipment service.
  • Q6: Can filters be customized for non-standard shapes or machines?
    A: Yes—advanced production lines (e.g., with CNC/casting/molded process) enable tailored geometries, multi-layer fusion, OEM-printed logos/labels.
  • Q7: What is "service life," and how is it tested?
    A: Service life refers to the duration in which a filter maintains target efficiency; tested with accelerated gas/particle loading under standardized (ISO/ASTM) protocols.

10. Delivery Lead Time, Warranty & Support

  • Sample Delivery: 7–10 working days (express shipping, ISO test report included)
  • Bulk Production: 10–28 days (up to 100,000 pcs/month scaling)
  • Warranty: Standard 12 months; extended up to 24 months upon request
  • Support: Online technical guidance (24h), on-site engineer deployment (as needed)
  • Traceability: Each batch provided with QR code traceable records
Request Custom Active Carbon Filter Quotation

11. References & Industry Best Practices

  1. Grand View Research: Global Air Purifier Market Size, Share & Trends
  2. ASHRAE: Filtration and Disinfection Guidance
  3. Building and Environment Journal: Performance of active carbon filters for VOC removal
  4. PLGS Product Page: PLGS-6 Thread Tapping Machine C
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