HEPA Filtration Sizing for Remediation
Why this matters
HEPA filtration is the engine of mold remediation: it removes airborne spores from the work area and maintains negative pressure within containment. The right size air scrubber for the work area produces effective filtration and proper negative pressure; an undersized one fails to control spores; an oversized one wastes money. Knowing the math (CFM, air changes, room volume) lets the contractor size appropriately for each project.
What HEPA means
HEPA (High-Efficiency Particulate Air) is a standard for filtration:
- 99.97 percent of particles 0.3 micron and larger captured
- Larger and smaller particles also captured (HEPA's worst case is the 0.3 micron range)
- The standard used for medical, industrial, and remediation work
For mold remediation:
- Mold spores typically 1 to 10 microns
- Well above HEPA's worst case
- HEPA effectively captures mold spores
Air scrubber types
Standalone HEPA air scrubber
- Self-contained unit
- HEPA filter inside
- Fan motor
- Inlet and outlet
- Common brands: Phoenix, Drieaz, Drymatic, BlueDri
Portable negative air machine
- Air scrubber configured for negative pressure
- Inlet inside containment
- Exhaust to outside (typical) or to clean room
- Pulls air through containment
Stationary HVAC-mounted HEPA
- Permanent installation in HVAC system
- Standard for high-end commercial buildings
- Not typical for residential remediation
Sizing methodology
Calculate room volume
Volume (cubic ft) = length × width × height
Example: 12 × 12 × 8 ft room = 1,152 cubic ft
Determine target air changes per hour (ACH)
For different contamination levels:
| Contamination | Target ACH |
|---|---|
| Light cleaning | 4 ACH |
| Standard remediation | 6 to 8 ACH |
| Heavy contamination | 10 to 12 ACH |
| Active remediation (during work) | 6 to 8 ACH minimum |
| Post-work clearance | 4 to 6 ACH |
Calculate required CFM
CFM (cubic feet per minute) = (volume × ACH) / 60
Example: 1,152 cubic ft × 8 ACH / 60 = 154 CFM
So an air scrubber providing 200 CFM or more is appropriate for this room.
Common air scrubber sizes
| Air scrubber size (CFM) | Suitable for |
|---|---|
| 500 CFM | Small bathroom; closet (up to 750 cu ft) |
| 1,000 CFM | Bedroom; small room (up to 1,500 cu ft) |
| 1,500 CFM | Medium room (up to 2,250 cu ft) |
| 2,000 CFM | Large room; small commercial (up to 3,000 cu ft) |
| 2,500 CFM | Large room; commercial (up to 3,750 cu ft) |
| 3,000+ CFM | Multi-room; large commercial |
For typical residential remediation (one or two rooms), 1,000 to 2,000 CFM air scrubber.
Air scrubber placement
For containment:
- Place inside the containment
- Inlet (filter side) facing the contaminated area
- Exhaust through wall or window to outside (preferred)
- Exhaust to clean air zone (acceptable if outside not feasible)
For non-contained cleaning:
- Place in the room being cleaned
- Allow air to circulate naturally
- Run during and after cleaning
Negative pressure considerations
For containment, the air scrubber:
- Pulls air through containment
- Discharges outside (or to clean zone)
- Creates negative pressure inside containment
Negative pressure verification:
- Use manometer at the critical barrier
- Target: -0.02 to -0.05 inches water column negative
- More negative = air more strongly pulled into containment from clean zones
- Positive pressure = air pushing out of containment (BAD; spreads spores)
Adjusting negative pressure
- Air scrubber speed
- Containment seal quality
- Make-up air opening (sometimes a small opening allows fresh air)
Filtration capability
A HEPA air scrubber's filter:
- HEPA filter: 99.97 percent at 0.3 micron
- Pre-filter (typical): captures larger particles; extends HEPA life
- Carbon filter (some): captures odors
Filter life:
- Pre-filter: replace every 1 to 5 days during heavy use
- HEPA filter: replace every 200 to 1,000 hours
- Replacement cost: a modest per HEPA filter
Verify filter condition during work; replace as needed.
Air sampling for verification
After remediation:
Post-remediation verification (PRV)
- Air sample from inside the cleaned area
- Compared to outside air sample (control)
- Both samples sent to lab
- Lab counts spores per cubic meter
Target for clearance:
- Indoor spore count similar to or lower than outdoor control
- Indoor spore count not exceeding industry benchmark
- No specific target species above threshold
Sampling cost: a moderate per pair of samples (indoor + outdoor).
Capacity calculation worksheet
For each remediation project:
- Measure containment dimensions
- Calculate cubic volume
- Choose target ACH (typically 6 to 8 for typical work)
- Calculate CFM needed: (volume × ACH) / 60
- Choose air scrubber that meets or exceeds this CFM
- Verify the air scrubber will achieve negative pressure
- Plan exhaust location
Multiple air scrubbers
For large containment:
- Multiple smaller scrubbers may be more effective than one large
- Better air distribution
- Easier to maintain
- Redundancy if one fails
Calculate combined CFM matches the target.
Practical considerations
Air scrubber noise
- HEPA scrubbers are loud (typical 70 to 85 decibels)
- Noise affects worker comfort
- Customer's neighbors may complain
- Consider duty cycle
Power consumption
- Typical air scrubber: 700 to 1,500 W
- Operating cost: pennies per hour at typical residential tariffs; multiply machine wattage by the customer's kWh rate
- Multi-day rental can add up
Heat generation
- Air scrubber generates heat
- Containment temperatures rise
- May require additional cooling or ventilation
Sequence of operation
During remediation:
- Set up containment
- Install and start air scrubber
- Verify negative pressure
- Perform remediation
- Continue running air scrubber for 4 to 8 hours post-work
- Test air for PRV
- Stop air scrubber after PRV passes
Rental vs ownership
For occasional remediation:
- Rental: a modest per day
- Multiple scrubbers may be rented per project
For active mold remediation business:
- Owned scrubbers: meaningful per-unit capital cost (varies by CFM, brand, and dealer)
- Multiple owned for typical operation
- Maintenance and filter replacement ongoing
Break-even: typically 20 to 50 days of use per year favors ownership.
Common HEPA sizing errors
Undersized for the containment
- Inadequate air changes
- Negative pressure not maintained
- Worker comfort compromised
- Spores not adequately captured
Oversized for small jobs
- Wasted money on equipment that's unused
- Excessive noise
- Power consumption
Filter not replaced
- Reduced airflow
- Negative pressure drops
- Less effective filtration
References
- IICRC S520 (Standard for Professional Mold Remediation).
- ASHRAE Filter Standards (Minimum Efficiency Reporting Value, MERV; HEPA filters are MERV 17+).
- EPA Guidance on indoor air quality.
- ANSI / ASA Standard on aerosol filtration.
- Manufacturer literature: Phoenix, Drieaz, Drymatic, BlueDri.
- Manuall internal: Mold Remediation Containment Barrier Setup, Mold Remediation IICRC S520 Standards Summary.