Skip to content
MarketScale
‹ Back to IndustriesEnergy

What You Need to Know About Deaerators

Steam boilers do exactly as their name implies, they produce steam; however, many factors must be considered and managed to do this, including corrosion, scale, water minimization, fuel efficiency, safety, and Total Cost of Operation. Boiler feedwater often contains dissolved gases, such as oxygen, carbon dioxide, and ammonia. These dissolved gases are problematic for the…

This story was produced through MarketScale. See how Energy teams put it to work with Customer Stories & Case Studies.

Share
What You Need to Know About Deaerators

Get featured

Want to get featured in MarketScale Energy?

Create a free MarketScale workspace and get your company's expertise featured across our Energy coverage. No credit card, no demo required.

Request an invite

Steam boilers do exactly as their name implies, they produce steam; however, many factors must be considered and managed to do this, including corrosion, scale, water minimization, fuel efficiency, safety, and Total Cost of Operation. Boiler feedwater often contains dissolved gases, such as oxygen, carbon dioxide, and ammonia. These dissolved gases are problematic for the boiler system because they may cause corrosion, leading to equipment failures (e.g., carbon dioxide can form carbonic acid in boiler condensate, lowering the pH, and corroding the condensate piping). To minimize corrosion, the dissolved gases must be removed or neutralized. This can be achieved through the use of deaerators, which work to remove such dissolved gases to low levels reducing the amount of follow-up neutralization required (e.g., sulfite-based oxygen scavenging).

“Where a choice is available, the reduction or removal of objectionable constituents by pretreatment external to the boiler is always preferable to, and more reliable than, management of these constituents within the boiler by internal chemical treatment.” ASME Consensus on Operating Practices for the Control of Feedwater and Boiler Water Chemistry in Modern Industrial Boilers

What is Deaeration?

Undesirable dissolved gases, such as oxygen, carbon dioxide, and ammonia, have reduced solubility at higher temperatures (see Figure 1). Deaeration uses mechanical equipment to not only increase the temperature of the water but to increase the surface area of the water for more efficient heat and dissolved gas transfer.

Deaeration Equipment

Deaerators are typically designed with two sections. In the first section, unwanted dissolved gases are removed from feedwater. The second section stores the deaerated boiler feedwater, where additional boiler chemistries may be applied prior to the water being introduced to the higher-pressure boiler system. Two primary deaerator designs include tray-type and spray-type systems.

Tray-Type Design

Water is distributed into the deaeration space flowing down trays to create droplets, thus increasing the water’s surface area. Low-pressure steam is supplied to increase the temperature of the water and drive off the undesirable dissolved gases. The deaerated water then flows into a storage section.

Spray-Type Design

In a spray-type deaerator, the process functions similarly to a tray-type deaerator, except water is broken into droplets by spray nozzles instead of trays.

Venting in Deaeration

The dissolved gases removed from boiler feedwater through deaeration must go somewhere. Hence, the need for venting. Deaerators are designed with vent piping directed to the atmosphere. There will be a visible plume of steam leaving the vent, particularly on colder days. The required amount of venting will depend upon the efficiency and maintenance of the deaerator equipment, but general rules of thumb include:

  • 15 to 30 inches of actively moving plume
  • An invisible area between the vent exit and the plume

Ultimately, determining how much venting is actually needed will require testing for the removal of the objectionable dissolved gas (e.g., dissolved oxygen testing in the boiler feedwater using a meter or reagent-based test kit)

Understanding Deaerator Benefits

Operating an efficient steam boiler system involves more than just producing steam. It involves controlling fuel usage, managing water consumption, preventing scale, minimizing corrosion, operating safely, and reducing the Total Cost of Operation. Deaerators are a key component in boiler systems to help minimize equipment-damaging, maintenance-cost-increasing corrosion. The minimum amount of steam seen leaving the deaerator vent (if properly controlled) is not a waste but an investment in protecting the boiler water system instead.

As a global leader in custom-designed water treatment programs, Chem-Aqua has the experience, knowledge, and technology to effectively help manage your deaerator and complete boiler system. Since 1919, our success has been built upon our Total System Approach providing solutions for water treatment problems and improving water system efficiencies. To learn more, contact Chem-Aqua today!

Figure 1: Maximum Solubility of Oxygen in Water

Your experts belong here

Every story in MarketScale Energy starts with a company putting its field engineers, operations leads, and project developers on the record. Buyers are already reading this topic. The only question is whose experts they find.

Developers and operators shortlist on credibility, and your engineers give your sales team something real to send.

Get your team featuredSee how it works15 minutes, straight to a calendar.

Follow Energy Insights

Get new expert content in your inbox.

Energy: are you visible to AI?

Before they reach out, Energy buyers ask AI engines which vendors to trust. See how AI describes your company today, and where competitors show up instead.

Free workspace

You just read one Energy expert. Your company is full of them.

This article was produced through MarketScale. The same platform turns your field engineers, operations leads, and project developers into the articles, video, and social content Energy buyers are searching for. Create a free workspace and see it with your own people. No credit card, no demo required.

NPS +73 · 1,000+ creators · 38+ countries

What you get, free

Your own MarketScale Studio workspace
One video edit a month, on us
AI writing, editing, and publishing tools
In-platform coaching to learn the system

More Energy Insights

NuScale and Nucor’s SMR talks put “always-on” power back in industrial planning

NuScale and Nucor’s SMR talks put “always-on” power back in industrial planning

NuScale Power and Nucor signed an MOU to explore co-locating NuScale VOYGR small modular nuclear reactor plants near Nucor electric arc furnace steel mills, including studies of site suitability, transmission interconnection capability, and capital costs, according to POWER Magazine. The move lands as commercial and industrial energy buyers are re-evaluating “return quality” across distributed energy resource value stacks, a dynamic pv magazine USA illustrated with Massachusetts electricity rates rising to about 20.9 cents/kWh for commercial customers in 2024, up roughly 61% from 2014. At the same time, grid-facing flexibility is getting practical attention, with Renewable Energy World’s Factor This reporting on managed EV charging and vehicle-to-grid reforms needed to scale V2X. For operators, the implication is clear: “firm” electricity is no longer a single procurement lane, it’s a portfolio decision spanning on-site generation, grid programs, and controllable load.

  • 01The operational question behind the NuScale-Nucor MOU is not “nuclear vs renewables,” it’s whether a mill can secure 24/7 power with a permitting and interconnection path that matches expansion timelines (POWER Magazine).
  • 02A useful benchmark for C&I energy planning: Massachusetts average commercial electricity rates rose from roughly 13.0 cents/kWh in 2014 to 20.9 cents/kWh in 2024, well above the 2024 national commercial average of about 13.9 cents/kWh (pv magazine USA, citing EIA data).
  • 03Managed EV charging and V2X are shifting from pilots to policy and tariff design work, which means facilities with fleet electrification can treat charging as a dispatchable asset only if their utility and program rules allow it (Renewable Energy World).

Sep 2, 2026

GE Vernova is adding HVDC capacity as grids scramble to serve data centers

GE Vernova is adding HVDC capacity as grids scramble to serve data centers

GE Vernova is enhancing its high-voltage direct current (HVDC) capacity as part of efforts to meet increasing demand from data centers. The company is navigating challenges in project timelines caused by equipment lead times, which now dictate power-plant schedules.

  • 01GE Vernova is expanding its HVDC capacity to support increasing data center demands.
  • 02Project timelines for power plants are now dictated by equipment lead times rather than design.
  • 03GE Vernova's initiatives occur amidst growing urgency to upgrade transmission capabilities.

Aug 29, 2026

SMR power deals hinge on fuel supply, licensing and waste, not just megawatts

SMR power deals hinge on fuel supply, licensing and waste, not just megawatts

As TerraPower's Natrium and X-energy's reactors move toward deployment, HALEU fuel availability, NRC licensing pathways, and waste handling plans are becoming key diligence points for enterprise buyers evaluating SMR power deals. The article argues these fuel and waste assumptions, once treated as policy footnotes, now belong in RFP checklists.

  • 01HALEU fuel supply has already delayed TerraPower's Natrium startup target from 2028 to 2030.
  • 02The NRC's Part 53 framework and the 2024 ADVANCE Act aim to streamline licensing for advanced reactors.
  • 03The article recommends buyers press vendors on fuel supply schedules, licensing pathway, and waste handling plans before signing.

Aug 28, 2026

Explore More Energy Insights

Read more expert perspectives from across Energy.

Browse Energy Hub

For B2B teams

Your experts could be publishing here

Stories like this one run on content MarketScale captures from real practitioners. See how your team's expertise becomes coverage in Energy and beyond.

Book a 15-minute demo

Or call us. No forms required. We pick up. 214-945-2512