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Dust Extractor / HEPA Vacuum

A dust extractor or HEPA vacuum is a high-filtration industrial vacuum system designed to capture respirable crystalline silica and other hazardous dusts generated during concrete grinding, cutting, and surface preparation. These machines use HEPA filtration to meet regulatory exposure limits and connect directly to grinding equipment, saws, and scarifiers to collect dust at the point of generation. The rental industry classifies them by airflow capacity (CFM) and motor horsepower to match tool requirements and jobsite compliance standards.

50
Models
27–3,188 CFM (as flow rate in GPM × 7.48)
Airflow (CFM)
7
Brands
Dust Extractor / HEPA Vacuum

Cat classes

Pick a size class — capacity and reach differ across the range.

How it works

The dust extractor generates negative pressure through a high-efficiency motor and fan assembly, drawing dust-laden air through a hose connected to the power tool or surface equipment. Particulate matter is captured in a multi-stage filtration system—typically a primary cyclonic separator or pre-filter, followed by a certified HEPA filter rated to trap 99.97% of particles 0.3 microns and larger. Many units include automated filter-cleaning mechanisms (pulse-jet or mechanical shakers) to maintain suction during operation. Airflow is regulated by adjustable dampers or variable-speed controls to balance suction power with tool requirements. Collected material accumulates in disposable bags or bins for compliant disposal. Units designed for silica dust extraction meet OSHA Table 1 specifications and incorporate sealed housings, static-dissipative hoses, and continuous-duty motors for extended grinding or cutting operations.

Types & variants

Portable Tool Extractors
Compact units under 150 CFM designed to connect to handheld angle grinders, cut-off saws, and small rotary hammers for single-operator silica compliance.
Single-Disc Grinder Vacuums
Mid-capacity extractors (150–350 CFM) that pair with walk-behind concrete grinders and masonry saws, the most common configuration on concrete finishing and surface prep jobsites.
Planetary Grinder Extractors
High-volume systems exceeding 350 CFM that supply multiple grinding heads or large planetary machines, typically requiring 240 V single-phase or three-phase power.
Wet/Dry Dust Collectors
Dual-mode extractors capable of handling both dry silica dust and water slurry from wet-cutting operations, with sealed pump-out systems.
Explosion-Proof Models
Extractors rated for combustible dust environments, featuring sealed motors, grounded components, and spark-resistant construction for metal grinding or pharmaceutical facilities.

Key specifications

SpecificationTypical rangeWhat it means
Airflow (CFM)27–3,188 CFM (as flow rate in GPM × 7.48)Volumetric capacity to maintain suction across tool shrouds and hoses; must match or exceed connected equipment requirements.
Motor Power1–18 hpDetermines sustained suction performance and duty cycle; larger motors support multiple tools or high-resistance filtration systems.
Filtration EfficiencyHEPA 99.97% @ 0.3 µmCertified particle capture rate required for silica compliance; HEPA is the regulatory minimum for respirable crystalline silica exposure control.
Dust Capacity5–55 gallonsVolume of collected material before disposal is required; larger capacities reduce downtime on high-production grinding operations.
Power Requirements120 V, 240 V, or 3-phaseElectrical supply needed; higher CFM and multi-head units typically require 240 V single-phase or three-phase power.

How the industry sizes it

The rental industry sizes dust extractors and HEPA vacuums by airflow capacity measured in cubic feet per minute (CFM). Units under 150 CFM pair with handheld grinders and cut-off saws for single-tool silica compliance. Mid-range extractors from 150 to 350 CFM serve walk-behind single-disc grinders and masonry saws, representing the most common jobsite configuration. High-capacity systems above 350 CFM supply large planetary grinders, shot blasters, or multiple simultaneous tools, and typically require 240-volt or three-phase power. Manufacturers also designate models by motor horsepower (1–3 hp, 3–5 hp, 5–18 hp), which correlates with sustained suction performance and filter-cleaning capacity during extended surface preparation work.

Applications

  • Concrete grinding and polishing operations requiring OSHA silica exposure compliance
  • Masonry cutting and tuckpointing in occupied buildings where dust containment is mandatory
  • Epoxy coating removal and surface scarification on bridge decks and industrial floors
  • Tile and mortar demolition in healthcare, food processing, and cleanroom environments
  • Drywall sanding and joint compound finishing in commercial tenant improvement projects
  • Asbestos abatement and lead paint removal under negative-pressure containment protocols

Safety & operation

  • Verify HEPA filter certification and replace filters according to manufacturer intervals to maintain silica capture efficiency and regulatory compliance
  • Ground equipment and use static-dissipative hoses when collecting combustible dusts to prevent ignition from electrostatic discharge
  • Inspect hose connections and shroud seals before operation to ensure dust is captured at the source and does not escape into the work environment
  • Follow lockout/tagout procedures during filter changes and bin disposal to prevent accidental startup and exposure to collected material
  • Monitor filter pressure gauges or automatic cleaning cycles; clogged filters reduce suction and may allow dust bypass, compromising exposure control

Standards & certifications

OSHA · 29 CFR 1926.1153 Table 1
Specifies minimum dust control requirements for common concrete and masonry tasks, including required extractor performance for silica compliance.
ANSI · ANSI/ASME B7.1
Safety requirements for portable abrasive wheels and tools, including provisions for dust collection attachment points and operator exposure.
EPA · RRP Rule (40 CFR 745)
Mandates HEPA vacuums for lead paint renovation work in pre-1978 structures; establishes cleaning verification and disposal protocols.
IEST · IEST-RP-CC001
Defines HEPA filter testing and performance standards, including minimum 99.97% efficiency at 0.3-micron most-penetrating particle size.

Frequently asked

What differentiates a dust extractor from a standard shop vacuum?
Dust extractors use certified HEPA filtration to capture respirable silica and other sub-micron particles at 99.97% efficiency, whereas shop vacuums typically use lower-grade filters that allow hazardous dust to pass through. Extractors also provide higher sustained airflow, sealed collection systems, and continuous-duty motors required for regulatory compliance on grinding and cutting operations.
How is CFM capacity matched to grinding equipment?
Tool manufacturers specify minimum airflow requirements—typically 50–150 CFM per inch of grinding width for single-disc grinders, and 300+ CFM for planetary or multi-head systems. The extractor's CFM rating must meet or exceed the connected tool's requirement to maintain adequate suction across the shroud and prevent dust escape during operation.
What is the difference between OSHA Table 1 and Table 2 compliance?
OSHA Table 1 lists specific dust control methods—including prescribed CFM and filter requirements—for common tasks like handheld grinding or walk-behind sawing; following Table 1 eliminates the need for exposure monitoring. Table 2 allows alternative control methods but requires initial exposure assessment, ongoing air monitoring, and documented engineering controls to verify permissible exposure limits are met.
When is three-phase power required for dust extraction?
Three-phase extractors are common for systems exceeding 10 hp or 500 CFM, particularly when supplying large planetary grinders, multiple simultaneous tools, or central dust collection for shop environments. Three-phase motors provide more efficient power delivery and smoother operation for high-demand, continuous-duty applications where single-phase capacity is insufficient.

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Sources

Every specification is verified against the manufacturer's published data, with the source linked for reference.

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