METHOD AND REACTOR FOR SELECTIVE REMOVAL OF PRODUCT FROM GASEOUS SYSTEM Russian patent published in 2016 - IPC B01J8/00 B01J8/04 B01J19/08 B01D53/32 B01D63/06 C01C1/04 

Abstract RU 2597921 C2

FIELD: chemistry.

SUBSTANCE: invention relates to a method for selective removal of gaseous reaction products from gas system including reagents and products during chemical reactions, such as synthesis of ammonia, methanol, etc., and reactors for carrying out method. Method consists in that a gaseous system is admitted to a first environment, which is separated from a second environment by a boundary wall formed by a permeation membrane, a spatially non-uniform electric field is generated between a first electrode or first group of electrodes located in first environment and a second electrode or second group of electrodes located in second environment, so that field lines of said non-uniform electric field cross said membrane, and a dielectrophoretic force generated on particles of gaseous product is a driving force of permeation through said membrane, an amount of said product being selectively removed from first environment and collected insecond environment. Particles of said product have a permanent electric dipole moment which is greater than electric dipole moment of particles of other components of gaseous system or particles said product, polarisability of which is greater than polarisability of particles of other components of gaseous system, so that electric dipole moment induced on particles of said product by non-uniform electric field is greater than electric dipole moment induced by same field on other components of system.

EFFECT: invention provides efficient extraction of gaseous components of gaseous system during chemical reactions and low power consumption.

14 cl, 7 dwg, 4 tbl, 1 ex

Similar patents RU2597921C2

Title Year Author Number
INTEGRATED MEMBRANE-CATALYTIC REACTOR AND COPRODUCTION METHOD OF SYNTHESIS GAS AND ULTRAPURE HYDROGEN 2016
  • Tsodikov Mark Veniaminovich
  • Fedotov Aleksej Stanislavovich
  • Antonov Dmitrij Olegovich
  • Uvarov Valerij Ivanovich
  • Khadzhiev S.N.
RU2638350C1
METHOD OF PRODUCING OXIDATE AND GENERATION OF ELECTRIC POWER BY MEANS OF SOLID ELECTROLYTIC MEMBRANE COMBINED WITH GAS TURBINE (VERSIONS) 1998
  • Drnevich Rehjmond Frehnsis
  • Gottdzmann Kristian Fridrikh
RU2178529C2
ACTIVE MOLECULAR SIEVE 2008
  • Khartov Stanislav Viktorovich
  • Romashkin Aleksej Valentinovich
RU2389536C1
PROCEDURE FOR COMPLEX OIL PROCESSING AND INSTALLATION FOR ITS IMPLEMENTATION 2013
  • Kozlov Ivan Lolievich
  • Rozhko Ivan Ivanovich
  • Mironov Aleksandr Viktorovich
RU2527281C1
INTEGRATED MEMBRANE-CATALYTIC REACTOR AND METHOD OF JOINT PRODUCING SYNTHESIS GAS AND ULTRA-PURE HYDROGEN 2016
  • Tsodikov Mark Veniaminovich
  • Fedotov Aleksej Stanislavovich
  • Antonov Dmitrij Olegovich
  • Uvarov Valerij Ivanovich
RU2635609C1
METHOD FOR PRODUCTION OF MULTILAYER METAL NANOSTRUCTURED CATALYTIC COATINGS 2020
  • Shelakhaev Dmitrii Aleksandrovich
  • Gurin Sergei Aleksandrovich
  • Nikolotov Aleksei Dmitrievich
RU2749729C1
STARTING HEATER FOR AMMONIA SYNTHESIS REACTORS 2009
  • Ritstsi Ehnriko
  • Filippi Ehrmanno
  • Tarotstso Mirko
RU2481888C2
PRODUCTION OF SYNTHESIS GAS BY MEANS OF ION-CONDUCTING MEMBRANES 1998
  • Shankar Nataradzh
  • Stiven Li Rassek
RU2144494C1
METHODS AND DEVICES FOR HYDROGEN PRODUCTION 2018
  • Zhou, Shaojun James
  • Gupta, Raghubir P.
  • Carpenter, John Reeves Iii.
  • Turk, Brian S.
RU2779804C2
UNIT OF GAS-STEAM-LIQUID FLOW PREPARATION 2007
  • Kuznetsov Sergej Nikolaevich
  • Ardamakov Sergej Vital'Evich
  • Vasil'Ev Vitalij Vasil'Evich
RU2344875C1

RU 2 597 921 C2

Authors

Pantsa Serdzhio

Dates

2016-09-20Published

2011-06-10Filed