Where the goal is stripping
The equipment is typically called a VOC stripper, gas stripper, or methane stripper.
Water is contacted with air for two general purposes: to strip volatile components from the water, and to expose contaminants to oxygen so they can be oxidized.
Strippers and aerators are usually similar in configuration, and aerators often serve a stripping function as well.
WETS aerators are widely used for iron and manganese removal and THM removal. An aerator performs two basic functions: introducing oxygen into the water to oxidize undesirable compounds (typically iron and manganese), and stripping volatile compounds from the water (typically H2S and methane).
The equipment is typically called a VOC stripper, gas stripper, or methane stripper.
The equipment is called an aerator.
Over more than 50 years, WETS has installed or retrofitted hundreds of aeration water treatment systems, developing a wide variety of high-efficiency aeration and stripping processes and equipment along the way.
Our unique distributor, vessel internals, and in-house blower designs deliver very low pressure loss for optimal flow distribution.

In the typical configuration, the aerator is elevated on a dedicated structure, with treated water gravity-draining into the ground storage tank (GST), sometimes through filters.

In other designs, the aerator sits at ground level and treated water is pumped to the GST. Ground Aerators are often chosen where the facility is near a residential community and the visual profile of an elevated aerator is considered undesirable.
For aerators performing an oxidation service, a gravity filtration system is often — though not always — provided downstream for solids removal. Depending on solids content, it may be acceptable to forgo filtration and allow solids to settle in the GST, provided pump suction is taken above the maximum anticipated buildup level.
Aerator designs can differ in how air and water are introduced, the vessel internals, and the choice between cylindrical and rectangular vessels.
WETS designs generally use a positive (forced) draft, with air introduced by a blower through either dumped packing or slat trays, and water introduced via a liquid distributor of proprietary WETS design. Given the relatively low gas rates and pressure drop in the system, no air sparger is typically required.
WETS aeration systems typically employ a proprietary forced draft design, introducing air at the base of the equipment.
While we have developed induced draft and natural draft designs, we favor forced draft: in an induced draft design, the blower is exposed to the aerator exhaust gas, which tends to be corrosive. Forced draft aerators also generally outperform natural draft designs across varying weather conditions, with negligible drift.
Over time, aerator packing and internals are prone to fouling from bacteria and metal precipitates, leading to performance and operational issues.
WETS has completed dozens of aerator rehabilitation projects, typically involving:
Methane strippers, VOC strippers, and degassifiers — similar in configuration to our aerators — target the removal of gases and volatile organic compounds.
WETS applications have included VOCs, THMs, methane, hydrogen sulfide, radon, and benzene/BTX. Our forced draft design and unique internal packing media are selected by our application engineers for maximum efficiency, with degassifier designs available for both low- and high-iron applications.
If your aerator is experiencing issues, contact a WETS professional engineer to arrange a site visit.
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