ECO2 Technology is used in a variety of water and wastewater applications. From sewer collection lines, to lakes and rivers, discover more about the efficient use of dissolved gases as an alternative to chemicals. Resources and references for the science and application of dissolved gases. This library includes technical documents and published papers from industry and academia.
Learn more about ECO2 technology and how SuperOxygenation is commonly used for controlling odor and corrosion in wastewater. SuperOxygenation offers an eco-friendly alternative to chemicals for wastewater odor and corrosion control. By completely dissolving pure oxygen, aerobic conditions in the wastewater prevent the formation of sulfides.
Learn more about ECO2 technology and how SuperOxygenation is commonly used for controlling odor and corrosion in wastewater. SuperOxygenation offers an eco-friendly alternative to chemicals for wastewater odor and corrosion control. By completely dissolving pure oxygen, aerobic conditions in the wastewater prevent the formation of sulfides.
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ECO2 SuperOxygenation systems for water and wastewater treatment are designed and produced by ECO Oxygen Technologies, LLC, an independent company headquartered in Indianapolis, Indiana. The technology is the pioneering effort of Dr. Richard Speece, Centennial Professor Emeritus of Civil and Environmental Engineering at Vanderbilt University, who invented the "Speece Cone.".
It is well known that highly oxic conditions support rapid oxidation of H2S and other reduced sulfur compounds present in wastewaters. As long as oxic conditions are maintained, H2S formation is prevented. Therefore successful oxygen transfer technology would significantly lessen capital outlay and provide many extra years of infrastructure usefulness.
ECO2's proven sidestream SuperOxygenation System can deliver readily dissolved oxygen where and when you need it. Need to increase the capacity of your aeration basins without wanting to expand? The ECO2 System can deliver more D.O. in the same space. The ECO2 System has been proven effective in raw wastewater as well as in high MLSS concentrations.
Denver Water installed a 6ft ECO2 System at the Marston Reservoir to increase the water quality of their drinking water. Maintaining aerobic conditions above the sediment will suppress the release of iron and manganese, having a direct effect on drinking water quality.
Aerobic conditions also prevent the formation of H2S and the release of phosphorous back into the water column, reducing the internal nutrient load and its fertilizing effect on algae growth.Experience from a 20 year long operation of a Speece Cone in a reservoir has shown the reversal from a eutrophic lake to an almost oligotrophic state.
Aerobic conditions also prevent the formation of H2S and the release of phosphorous back into the water column, reducing the internal nutrient load and its fertilizing effect on algae growth.Experience from a 20 year long operation of a Speece Cone in a reservoir has shown the reversal from a eutrophic lake to an almost oligotrophic state.
ECO2 offers an elegant solution to meet industrial wastewater discharge limits for BOD, Dissolved Oxygen (D.O.), and Hydrogen Sulfide. The efficient use of pure oxygen is often the most effective solution at the lowest ongoing cost. High strength process and wastewater from pulp and paper mills often contains high levels of BOD and sulfides, causing odors and requiring high D.O. levels for wastewater treatment.
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