We are engineers who create design/build systems that work. Control is maintained over the design and fabrication, and we are on the job site for installation inspection, start up, and operator training. As engineers, we normally do not supply plans and specifications for others to build. We believe it is critically important to maintain control over the process from design to startup.
We are the engineer or we work with other engineering companies who specify our water treatment systems. The majority of our water treatment systems treat groundwater supplies that have one or more of the contaminants listed below with the following design/build water treatment system processes and services.
We are the engineer or we work with other engineering companies who specify our water treatment systems. The majority of our water treatment systems treat groundwater supplies that have one or more of the contaminants listed below with the following design/build water treatment system processes and services.
Services
At Lowry Engineering we engineer and build water treatment solution to address the rigorous standards set by the EPA and other regulatory agencies.
Below are the main categories of contaminants that our solutions eliminate.
Radionuclides (radioisotopes) are atoms which are unstable due to excess nuclear energy.
They undergo a process of radioactive decay, becoming progressively more stable as energy is released as either radiation of gamma waves, or as an alpha and/or beta particle.
In ground water, radionuclides are generally naturally occurring, from one or more of three natural decay series: uranium-238, thorium-232, and uranium-235.
Below are the main categories of contaminants that our solutions eliminate.
Radionuclides (radioisotopes) are atoms which are unstable due to excess nuclear energy.
They undergo a process of radioactive decay, becoming progressively more stable as energy is released as either radiation of gamma waves, or as an alpha and/or beta particle.
In ground water, radionuclides are generally naturally occurring, from one or more of three natural decay series: uranium-238, thorium-232, and uranium-235.
Lowry Engineering designs and builds granular adsorption media systems to remove arsenic, iron/manganese, chlorine, and organics/pesticides.
Our systems are designed using parallel and/or series operation in a down-flow mode.
Some systems can be designed with one-use media or with recycle and solids disposal to eliminate backwash requirements and the need for a sewer or on-site discharge of waste water.
Our systems are designed using parallel and/or series operation in a down-flow mode.
Some systems can be designed with one-use media or with recycle and solids disposal to eliminate backwash requirements and the need for a sewer or on-site discharge of waste water.
Lowry Engineering brings 30 years of experience designing and building ion exchange systems to remove a variety of contaminants from groundwater supplies.
Alkalinity, arsenic, iron, hardness, manganese, nitrate, radium, sulfate, and uranium, and are removed using cation, anion or mixed-bed ion exchange resin beds.
We were the one of the first to use ion exchange to routinely remove arsenic, radium and uranium from water supplies across the U.S. We continue research and consulting on radionuclide issues involving treatment and disposal of residuals.
Alkalinity, arsenic, iron, hardness, manganese, nitrate, radium, sulfate, and uranium, and are removed using cation, anion or mixed-bed ion exchange resin beds.
We were the one of the first to use ion exchange to routinely remove arsenic, radium and uranium from water supplies across the U.S. We continue research and consulting on radionuclide issues involving treatment and disposal of residuals.
Lowry Systems provides water treatment systems engineering services for design/build water treatment projects and is a consultant to government agencies, other engineering firms, professional societies, and to private water utilities.
Lowry Engineering has performed many studies on the removal of radionuclides from water supplies.
Dr. and his students at the University of Maine conducted some of the first studies on the removal of radon and radon progeny.
Research studies conducted for the American Water Works Research Foundation, the EPA, and private firms focused on the measurement and the removal of uranium, radium, radon, and polonium.
Lowry Engineering has performed many studies on the removal of radionuclides from water supplies.
Dr. and his students at the University of Maine conducted some of the first studies on the removal of radon and radon progeny.
Research studies conducted for the American Water Works Research Foundation, the EPA, and private firms focused on the measurement and the removal of uranium, radium, radon, and polonium.
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