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Procedure for in-situ cleaning of contaminated ground water flow, comprises carrying out direct gas injection of reactive gas mixture from compressed air and oxygen with gas injection elements into the porous solid matrix of the water flow
Procedure for in-situ cleaning of contaminated ground water flow, comprises carrying out direct gas injection of reactive gas mixture from compressed air and oxygen with gas injection elements into the porous solid matrix of the water flow
The procedure for in-situ cleaning of contaminated ground water flow, comprises carrying out direct gas injection of a reactive gas mixture from compressed air and oxygen with gas injection elements into the porous solid matrix of a contaminated water flow. A reactive gas wall and a reactive outlet stream are developed and operated as flow reactors connected in rows. The compressed air and oxygen are produced continuously in a fully automatic procedure in a unit for the air separation directly on the spot. An automatic additional system is covered by a system with a liquid oxygen container. The procedure for in-situ cleaning of contaminated ground water flow, comprises carrying out direct gas injection of a reactive gas mixture from compressed air and oxygen with gas injection elements into the porous solid matrix of a contaminated water flow. A reactive gas wall and a reactive outlet stream are developed and operated as flow reactors connected in rows. The compressed air and oxygen are produced continuously in a fully automatic procedure in a unit for the air separation directly on the spot. An automatic additional system is covered by a system with a liquid oxygen container. A membrane plant is used as plant for air decomposition, in which oxygen-rich product flow is used as reactive gas mixture. The oxygen in the plant for the air decomposition based on a vacuum-change in pressure adsorption process is generated with zeolites.
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