Proceso de eliminación de los humos con alto contenido en CO2 para su conversión a bicarbonato utilizando salmueras de rechazo
Process of elimination of fumes with a high content of co2 for their conversion to bicarbonate using rejection brines, for the elimination of co2 emissions into the atmosphere, from of industrial processes, to combat climate change. The absorption tank (4) absorbs ammonia nh3 (3) on brine (2), which...
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creator | PORCAR VIVES, Javier ROS PEREZ, Rafael DE JULIAN ORTIZ, Jesús Vicente MAGRANER PARDO, Lorena |
description | Process of elimination of fumes with a high content of co2 for their conversion to bicarbonate using rejection brines, for the elimination of co2 emissions into the atmosphere, from of industrial processes, to combat climate change. The absorption tank (4) absorbs ammonia nh3 (3) on brine (2), which is introduced into reactor (6). The emissions (1), once cooled (5) are introduced into the reactor (6). Instantaneous reaction occurs in contact with the brine and ammonia and precipitates sodium bicarbonate. The ammonium chloride solution nh4 cl (7) is concentrated, produces desalinated water (11), passes through nebulization (8) and water is collected in a condenser (10) and goes to the tank (eleven). Nh4 cl crystallized by nebulization goes to the reactor, and decomposes by heat (9) in hcl and nh3, which are separated by reaction with a metal halide. (Machine-translation by Google Translate, not legally binding) |
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The absorption tank (4) absorbs ammonia nh3 (3) on brine (2), which is introduced into reactor (6). The emissions (1), once cooled (5) are introduced into the reactor (6). Instantaneous reaction occurs in contact with the brine and ammonia and precipitates sodium bicarbonate. The ammonium chloride solution nh4 cl (7) is concentrated, produces desalinated water (11), passes through nebulization (8) and water is collected in a condenser (10) and goes to the tank (eleven). Nh4 cl crystallized by nebulization goes to the reactor, and decomposes by heat (9) in hcl and nh3, which are separated by reaction with a metal halide. 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The absorption tank (4) absorbs ammonia nh3 (3) on brine (2), which is introduced into reactor (6). The emissions (1), once cooled (5) are introduced into the reactor (6). Instantaneous reaction occurs in contact with the brine and ammonia and precipitates sodium bicarbonate. The ammonium chloride solution nh4 cl (7) is concentrated, produces desalinated water (11), passes through nebulization (8) and water is collected in a condenser (10) and goes to the tank (eleven). Nh4 cl crystallized by nebulization goes to the reactor, and decomposes by heat (9) in hcl and nh3, which are separated by reaction with a metal halide. 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The absorption tank (4) absorbs ammonia nh3 (3) on brine (2), which is introduced into reactor (6). The emissions (1), once cooled (5) are introduced into the reactor (6). Instantaneous reaction occurs in contact with the brine and ammonia and precipitates sodium bicarbonate. The ammonium chloride solution nh4 cl (7) is concentrated, produces desalinated water (11), passes through nebulization (8) and water is collected in a condenser (10) and goes to the tank (eleven). Nh4 cl crystallized by nebulization goes to the reactor, and decomposes by heat (9) in hcl and nh3, which are separated by reaction with a metal halide. (Machine-translation by Google Translate, not legally binding)</abstract><oa>free_for_read</oa></addata></record> |
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title | Proceso de eliminación de los humos con alto contenido en CO2 para su conversión a bicarbonato utilizando salmueras de rechazo |
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