FIELD: separation.
SUBSTANCE: present invention relates to production and treatment of air flow passed through a liquid volume. Device for production and processing of gas flow comprises vessel, lower part of which is immersed in liquid supply device and including, on one side, inlet hole for liquid, providing communication of lower part of vessel with liquid supply means so that lower submerged part of vessel contains volume of said liquid, and on the other side, including a gas flow outlet hole located above the surface of the liquid contained in the vessel; besides, the device contains a gas flow production and injection facility, which includes an injection pipeline, the lower part of which is immersed into the liquid volume contained in the lower submerged part of the vessel and changes into the upper part inside the vessel beyond the specified volume of the liquid; wherein in its lower submersible part the said injection pipeline contains an outlet hole located below the surface of the specified liquid volume; wherein said gas flow production and injection means includes a compressor connected to the non-gravity part of the injection conduit or to the outlet of the vessel, and enabling during operation to create and input inlet gas flow to non-gravity part of injection pipeline entering inlet gas flow in such a way that said inlet gas flow is provided through outlet opening in lower submerged part of injection pipeline and its introduction into said contained in lower submerged part of vessel volume of liquid below surface of said volume of liquid with lifting of treated as a result of direct contact with said volume of liquid outlet gas flow inside vessel outside the injection pipeline and its outlet beyond the above vessel with passage through the outlet of the vessel.
EFFECT: disclosed technical solution improves production and processing of gas flow by means of liquid volume contained in vessel and, in particular, enables efficient treatment of gas flow with considerable flow rate.
102 cl, 10 dwg
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Authors
Dates
2019-11-26—Published
2015-11-06—Filed