/
ARO-X 8000

ARO-X 8000

In Stock
18 Total Reviews
/
ARO-X 8000

ARO-X 8000

In Stock
Product Desciption
  • The largest unit in the ARO-X line — up to 8,000 CFM for central systems and full-facility mist networks.
  • Five-stage filtration with certified HEPA included as standard — eight mechanical elements, eight demisters, eight oil mist fiber bed stages and four HEPA filters.
  • Heavy-duty 316 stainless steel construction holds up to aggressive coolant chemistry, washdown and corrosive vapor.
  • Eight Magnehelic® gauges — four primary, four secondary — every filter bank monitored independently.
  • Engineered for continuous duty — consistent airflow and filtration efficiency under sustained load, 85°C temperature limit.
  • More airflow on less power — 8,000 CFM from a 30 hp motor, the highest capacity-per-horsepower in the line.
  • 82 dB(A) at full capacity, quieter than the 6,000 unit despite moving a third more air.
  • Long service intervals, low cost of ownership — HEPA changed only at 3.75 in. w.g.
  • Customizable to the application.
Product Highlights

Air Flow

8000

 cfm

Quick Installation
Fast Lead Times
Modular Design
Machine Specific
Air Flow
8000 - cfm
Filters
HEPA Filter
Standard
Activated Carbon Filter
Optional

Upgrade your workspace with the ARO series.

Experience improved air quality and increased efficiency firsthand.
Don't miss out - try it for free today and experience the Aeroex advantage!

Customers Google Reviews

Frequently Asked Questions about the ARO-X 8000

To help you make an informed decision, we've compiled a list of commonly asked questions about this high-performing collector solution.
An engineered air purification system can be configured for coolant and oil mist, weld, plasma and laser-cutting fume, cooking smoke and grease, plastic smoke and off-gassing, high-temperature process exhaust, acid fume and corrosive gas, sticky and tacky aerosols, solvent and coating vapor, VOC and odor, soldering and reflow fume, thermal spray and additive manufacturing fume, and rubber and composite curing off-gas. The contaminant determines the filtration stages, not the other way around — a system built for tacky aerosol is configured differently from one built for solvent vapor. This is why engineered systems are specified from process data rather than selected from a catalog.
HEPA and activated carbon solve two different problems and are not interchangeable. HEPA is mechanical filtration — it captures solid and liquid particulate, including sub-micron smoke, at 99.97% efficiency at 0.3 microns, but gas molecules pass straight through it. Activated carbon works by adsorption, holding gas-phase compounds such as VOCs, solvent vapor and odor on its surface, but it does not capture particulate. A process that produces both smoke and vapor needs both stages, with the particulate stages placed upstream so they do not blind the carbon.
Size on the volume of air that has to be moved and the resistance of the system moving it, not on machine count. Calculate the enclosed volume to be ventilated in cubic feet, multiply by the air changes per hour the process requires and divide by 60 to get the airflow in CFM, then determine the static pressure loss across the duct run and the filtration stages before selecting a blower. Undersizing the blower for static pressure is the most common specification error, because a system that hits its airflow target on paper will not reach it through real ductwork.
Source capture is the more effective approach in almost every process application, because it removes the contaminant where it is generated, at the highest concentration and the smallest volume of air. Ambient or general room filtration treats the whole building volume, which requires far more airflow to achieve the same result and leaves the operator breathing the contaminant before it reaches the filter. Occupational exposure rules in most jurisdictions treat source capture as the expected engineering control for welding fume, machining mist and similar process emissions — a facility should confirm its specific obligations with its own health and safety authority.
An industrial air scrubber is a system that removes contaminants from a process airstream before that air is recirculated into the plant or exhausted outside, using several filtration stages in sequence rather than one filter element. Wet scrubbers do this by passing the airstream through a liquid; dry systems do it through staged mechanical, coalescing, HEPA and adsorption media. A basic air filter traps particles of one size range and then loads up; a staged industrial system separates the contaminant progressively, which is what allows it to handle mist, smoke, fume and gas in the same airstream.

Explore Other Products From ARO Series

Get in touch to learn more about the ARO series.
Experience the difference. Try the ARO series for free today.

Request A Quote

Product Quote Request

ARO-X 8000

Contact Us

Request A Free Trial

Let us find the right fit

Our expert will contact you shortly, find out your needs, and offer the best option for you.

Request an Application Review

Tell us about your process, machine configuration, and airflow needs. Our engineering team will review your application and recommend an appropriate solution.

Take Advantage of Our 
Free Trial Offer

Step 1. Consultation Request
Start by reaching out to us so we 
can understand your specific needs.

Step 2. Receive Our Products
The trial period usually lasts for 30 to 60 days, allowing you ample 
time to assess our machines' performance and efficiency.

Step 3.Try Out Our Mist Collectors
Deploy our mist collectors in your environment. If, for any reason, you're not completely satisfied with their performance, you can return them 
with no strings attached.

Trust choose to an expert

Our expert will contact you shortly, 
find out your needs, and offer 
the best option for you.

First Name *
Last Name *
Phone *
Email *