RU2017113033A -
The method of intensification of purification of gas-saturated low-temperature water
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The method of intensification of purification of gas-saturated low-temperature water
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RU2017113033A
RU2017113033ARU2017113033ARU2017113033ARU2017113033ARU 2017113033 ARU2017113033 ARU 2017113033ARU 2017113033 ARU2017113033 ARU 2017113033ARU 2017113033 ARU2017113033 ARU 2017113033ARU 2017113033 ARU2017113033 ARU 2017113033A
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Application filed by Максим Павлович ШеферfiledCriticalМаксим Павлович Шефер
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Publication of RU2017113033ApublicationCriticalpatent/RU2017113033A/en
Способ интенсификации очистки насыщенных газами низкотемпературных вод, состоящий в проведении стандартных процессов очистки при повышенном давлении в очищаемой воде, увеличивающем растворимость содержащихся газов для устранения газовыделения вследствиие повышения температуры воды в процессе очистки.A method of intensifying the purification of low-temperature water saturated with gases, which consists in carrying out standard purification processes at elevated pressure in the water being purified, which increases the solubility of the contained gases to eliminate gas evolution due to an increase in water temperature during the purification process.
RU2017113033A2017-04-152017-04-15
The method of intensification of purification of gas-saturated low-temperature water
RU2017113033A
(en)
Absorption tower of an exhaust gas purification device comprising at least one tray installation that provides a multiplicity of openings for the exhaust gas and the liquid, wherein the openings are individually adjustable, in groups or all together in their respective cross sections.
A process and reactor for the selective removal of a gaseous product from a gaseous system, comprising said product and other components, where the gaseous system is admitted to a first environment which is separated from a second environment by a boundary wall and a membrane of permeability, a spatially non-uniform electric field is generated between a first electrode and a second electrode, where the field lines cross said membrane.
Composite material comprising: amyloid fibrils; activated carbon; and optionally a support; use and method of manufacturing the composite material; water treatment and metal recovery with the use of composite material