Mold Remediation Containment Barrier Setup

Why this matters

Containment is the first line of defense in mold remediation: it isolates the work area so spores released during remediation don't spread to clean areas of the building. A poorly built containment leaks spores throughout the home; the customer's occupied areas become contaminated; remediation effectively fails. A properly built containment seals the work area completely, with controlled access through a critical barrier door. The skill is in the seal: tape, sheeting, and the small details that make the difference between a barrier and a sieve.

What containment does

Containment:

  • Prevents spore migration to clean areas
  • Maintains negative pressure (with air scrubber inside)
  • Allows safe access for workers
  • Protects building occupants
  • Documents work area boundaries

Containment levels per S520

Limited containment

For small projects (under 10 sq ft of moldy material):

  • Minimal containment
  • Drop cloth on adjacent surfaces
  • Plastic sheeting around immediate work area
  • HEPA-filtered vacuum during work
  • No formal negative pressure required

Full containment

For typical residential remediation (10 sq ft to 100 sq ft):

  • Plastic sheeting around the entire work area
  • Critical barrier at access point (zipper door or two-layer)
  • Negative air machine (air scrubber)
  • HEPA filtration
  • All workers in PPE

Full containment with negative pressure

For large or complex projects:

  • All elements of full containment
  • Calibrated negative pressure (typical 0.05 inch water column negative)
  • Air sampling capability
  • More extensive documentation

Materials and equipment

Containment materials

  • 6 mil plastic sheeting (poly sheeting)
  • Tyvek tape or similar high-quality construction tape
  • Painter's plastic for floors (additional protection)
  • Zipper doors (commercially available; ZipDoor brand etc.)
  • Floor protection (Ram Board or thin plywood)

Engineering controls

  • Negative air machine / air scrubber (with HEPA filter)
  • Auxiliary HEPA vacuum
  • Temperature and humidity meter
  • Manometer (for pressure verification)
  • Air sampling equipment (for verification)

Pre-containment preparation

Step 1: Clear the work area

  • Remove furniture, art, valuables (if possible)
  • Cover anything that can't be moved with plastic
  • Document existing condition

Step 2: Plan the containment

  • Identify the containment perimeter
  • Note doors, windows, HVAC vents in the area
  • Plan air scrubber location
  • Plan access point (critical barrier)

Step 3: Address HVAC

  • Shut off HVAC serving the contained area
  • Seal HVAC vents within containment
  • This prevents spore distribution through ductwork

Containment installation

Step 1: Floor protection

  • Lay floor protection (Ram Board) over the original floor in the work area
  • Tape seams
  • Protects original floor; provides clean working surface

Step 2: Wall and ceiling protection

If walls and ceiling will be exposed to work:

  • Cover with poly sheeting
  • Tape edges
  • Protects from contamination during work

Step 3: Containment perimeter

The actual barrier:

  • 6 mil poly sheeting
  • Floor to ceiling
  • All sides of the work area
  • Tape all seams (Tyvek tape; multiple passes)

For each side:

  • Adhere to ceiling first
  • Drop down to floor
  • Tape to baseboards or floor
  • Vertical seams sealed

Step 4: Critical barrier at access

Standard methods:

Zipper door

  • Commercial zipper door panel
  • Tape to existing wall material on each side
  • Provides controlled access
  • Reusable

Two-layer flap

  • First layer: poly sheeting with a vertical slit
  • Second layer: poly sheeting with horizontal slit
  • Two layers offset so spores don't directly escape

Standard door

  • Existing door
  • Sealed with tape and poly around the frame
  • Open with appropriate PPE

Step 5: Verify all seals

  • Walk the perimeter; verify all seams sealed
  • Check for any gaps or pinholes
  • Address with additional tape
  • Check HVAC vent seals

Step 6: Install negative pressure

  • Place air scrubber inside containment
  • HEPA filter on intake
  • Exhaust through wall, window, or door (to outside if possible)
  • Verify discharge doesn't recirculate to home

The air scrubber:

  • Pulls air through HEPA filter
  • Maintains negative pressure inside containment
  • Captures spores in the filter
  • Discharges clean air

Step 7: Verify negative pressure

  • Use manometer at the critical barrier
  • Verify pressure is negative (typically -0.02 to -0.05 inch water column)
  • If positive, adjust air scrubber or check for leaks

Specific containment scenarios

Single-room containment

  • Containment around the room perimeter
  • Critical barrier at the door
  • HVAC vents within the room sealed
  • Air scrubber inside

Partial-room containment

  • Plastic perimeter around just the contaminated area
  • Smaller air scrubber
  • Limited containment if appropriate

Whole-floor containment

  • Containment at the stair landing
  • HVAC zones isolated
  • Multiple air scrubbers if needed

Crawl space or attic

  • Crawl space: sealed entry and access points; HEPA vacuum during work
  • Attic: ceiling penetrations sealed; access through attic stairs

Air scrubber sizing

The air scrubber must provide adequate air changes per hour:

Containment volume Air scrubber CFM needed
500 cubic ft 500 to 800 CFM
1,000 cubic ft 1,000 to 1,500 CFM
2,000 cubic ft 2,000 to 3,000 CFM

For high-rate air exchange (4 to 6 air changes per hour):

  • Volume in cubic ft × 4 / 60 = CFM needed for 4 air changes

A typical 12 x 12 x 8 = 1,152 cubic ft room needs roughly 76 CFM for 4 changes per hour, but most air scrubbers run 500 to 2,000 CFM for adequate clearance.

Negative pressure maintenance

Negative pressure (typically -0.02 to -0.05 inches water column):

  • Measure with manometer
  • If too low (closer to positive): air leaks; check seals
  • If too high (very negative): may pull contaminated air from other areas
  • Adjust air scrubber speed

Common containment errors

Inadequate seal at edges

  • Spores escape
  • Tape with multiple layers
  • Use sealant for critical seals

HVAC vent not sealed

  • Spores distributed through ductwork to clean areas
  • Verify all vents are sealed

Air scrubber too small

  • Inadequate air exchange
  • Negative pressure not maintained
  • Worker discomfort during work

Plastic sheeting torn or damaged

  • Spores escape through tears
  • Inspect daily; repair any damage

Critical barrier left open

  • Workers entering and exiting through unprotected gap
  • Spores escape
  • Train workers; use zipper door for ease

Containment removed too early

  • Spores still suspended in air after work
  • Allow air scrubber to run after work completion
  • Test air before removing containment

Post-work containment removal

Sequence

References

  • IICRC S520 (Standard for Professional Mold Remediation).
  • IICRC AMRT certification material.
  • EPA mold remediation guidance.
  • OSHA general duty requirements.
  • Manuall internal: Mold Remediation IICRC S520 Standards Summary.