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Ammonia process

The soda-ammonia process occurs in two main stages. First, brine is saturated with ammonia gas and this ammoniacal brine is then treated with carbon dioxide. The equilibrium... [Pg.133]

When heated, sodium hydrogencarbonate readily decomposes evolving carbon dioxide, a reaction which leads to its use as baking powder when the carhon dioxide evolved aerates the dough. In the soda-ammonia process the carbon dioxide evolved is used to supplement the main carbon dioxide supply obtained by heating calcium carbonate ... [Pg.133]

Precondensate—HHj Process. From a historical point of view, the precondensate—ammonia process is a simplification of the THPC—amide—NH process. In this case, the chemical manufacturer forms a precondensate of THPC and urea by refluxing these components for about... [Pg.489]

In the 1960s and 1970s ethyleneimine was produced by the dichioroethane—ammonia process by the Dow Chemical Co. [Pg.12]

Between 1930 and 1950, the primary emphasis of ammonia process development was ia the area of synthesis gas generation (3) (see Fuels, SYNTHETIC, GASEOUS FUELs). Extensive coal deposits ia Europe provided the feedstock for the ammonia iadustry. The North American ammonia iadustry was based primarily on abundant suppHes of low cost natural gas (see Gas, natural). [Pg.339]

Reduced energy ammonia process utilizing natural gas feed at a U.S. Gulf Coast location. Daily production of 1,000 t, yearly production of 345,000 t, and... [Pg.355]

Copper Hydroxide. Copper(II) hydroxide [20427-59-2] Cu(OH)2, produced by reaction of a copper salt solution and sodium hydroxide, is a blue, gelatinous, voluminous precipitate of limited stabiUty. The thermodynamically unstable copper hydroxide can be kiaetically stabilized by a suitable production method. Usually ammonia or phosphates ate iacorporated iato the hydroxide to produce a color-stable product. The ammonia processed copper hydroxide (16—19) is almost stoichiometric and copper content as high as 64% is not uncommon. The phosphate produced material (20,21) is lower ia copper (57—59%) and has a finer particle size and higher surface area than the ammonia processed hydroxide. Other methods of production generally rely on the formation of an iasoluble copper precursor prior to the formation of the hydroxide (22—26). [Pg.254]

Aminobenzophenone [1137-41-3] M 197.2, m 123-124 , pK 2.17. Dissolved in aq acetic acid, filtered and ppted with ammonia. Process repeated several times, then recrystd from aqueous EtOH. [Pg.104]

Figure 7. Kellogg s new ruthenium-catalyst based advanced ammonia process combined with the reforming exchange system. (Used with permission of Chemical Engineering.)... Figure 7. Kellogg s new ruthenium-catalyst based advanced ammonia process combined with the reforming exchange system. (Used with permission of Chemical Engineering.)...
CO2 can be readily obtained in small amounts by the action of acids on carbonates. On an industrial scale the main source Is as a byproduct of the synthetic ammonia process in which the H2 required is generated either by the catalytic reaction (a) or by the water-gas shift reaction (b) ... [Pg.311]

Ammoniak-rest, m. ammonia residue (amidogen, NH2). -rohr, n. ammonia tube or pipe, -salpeter, m. ammonia saltpeter (ammonium nitrate), -salz, n. ammonium salt, -selfe,/. ammonia soap, -soda, /. ammonia soda, Solvay soda, -stickstoff, m. ammonia nitrogen. -verbindung, /, ammonia compound ammonium compound, -verfahren, n. ammonia process, -wasche, /. ammonia scrubbing ammonia recovery plant, -wascher,... [Pg.21]

Figure 8.21 shows the scheme for producing ammonia. First, the natural gas is desulfurized and then steam-reformed in the primary reformer into a mixture of unreacted methane (10-13 %), CO, CO2, and FI2 that is then combined with air, which contains the necessary nitrogen for the ammonia process, to react in a secondary reformer. Here the oxygen reacts with hydrogen and methane in strongly... [Pg.329]

The design sketched above is an elaborate version of the so-called Kellogg Advanced Ammonia Process (KAAP) in which iron-based catalysts are used in the first bed, and ruthenium-based catalysts, which bind nitrogen more weakly, are used in the second, third and fourth beds [T.A. Czuppon, S.A. Knez, R.W. Schneider and G. Woroberts, Ammonia Plant Safety Relat. Pacil. 34 (1994) 236]. [Pg.335]

Alkali-promoted Ru-based catalysts are expected to become the second generation NHs synthesis catalysts [1]. In 1992 the 600 ton/day Ocelot Ammonia Plant started to produce NH3 with promoted Ru catalysts supported on carbon based on the Kellogg Advanced Ammonia Process (KAAP) [2]. The Ru-based catalysts permit milder operating conditions compared with the magnetite-based systems, such as low synthesis pressure (70 -105 bars compared with 150 - 300 bars) and lower synthesis temperatures, while maintaining higher conversion than a conventional system [3]. [Pg.317]

Rhudy, R. and S. Black, Chilled ammonia process update, C02 Capture Network, Lyon, May 2007. [Pg.322]

The absorption technique using hot potassium carbonate has also been developed to capture C02 (Probstein and Hicks, 1990). The chilled ammonia process is another solvent-based C02 capture technology where ammonia carbonate slurries are used to capture 90% of the C02 in the gas stream mixture gas forming ammonia bicarbonate in the process. A pilot-scale chilled ammonia unit for 5 MW equivalent flue gas capture is under construction by ALSTOM and EPRI. Although this process is developed for a combustion system, the results will provide valuable information for the future development of such a process for hydrogen production. According to ALSTOM, commercial products on chilled ammonia process will be available by 2010 (Alstom, 2007). [Pg.573]

Arbiter Previously known as the Sherritt-Gordon ammonia process. A process for leaching copper from sulfide concentrates, using ammoniacal ammonium sulfate solution at 85°C and relying on air oxidation. Copper is produced from the leachate by solvent extraction and electrowinning. Sulfur is recovered as ammonium sulfate. Operated on a large scale by the Anaconda Copper Company in Montana from 1974 to 1979. See Sherritt-Gordan. [Pg.25]

Casale The first synthetic ammonia process, designed by L. Casale, who founded Ammonia Casale of Lugano, Switzerland, in 1921. See Claude (1). [Pg.51]

KAAP [Kellogg advanced ammonia process] The first high-pressure process developed for synthesizing ammonia from its elements which does not use an iron-containing catalyst. The reformer gas for this process is provided by the KRES process. The catalyst was developed by BP it contains ruthenium supported on carbon. Developed by MW Kellogg Company in 1990 and first installed by the Ocelot Ammonia Company (now Pacific Ammonia) at Kitimat, British Columbia, from 1991 to 1992. Another plant was installed at Ampro Fertilizers in Donaldsonville, LA, in 1996. [Pg.150]

LCM [Leading Concept for Methanol] A process for making methanol, combining the ICI Low Pressure Methanol process with the steam reforming section of the LCA ammonia process. Developed by ICI in 1990 and piloted in Melbourne, Australia, from 1994. Envisaged for floating factories in off-shore gas fields. [Pg.161]

Kellogg Advanced Ammonia Process (KAAP), 19 621 Kelly leaf filter, 11 365 Kelp, 14 360... [Pg.502]


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Ammonia American process

Ammonia Braun process

Ammonia Claude-Casale process

Ammonia Early Process Development

Ammonia Fauser process

Ammonia Haber process

Ammonia Haber-Bosch process

Ammonia KAAP process

Ammonia KRES process

Ammonia Ostwald process

Ammonia absorption process

Ammonia and the Haber Process

Ammonia homogeneous catalytic process

Ammonia injection process, vapor-phase

Ammonia manufacturing processes

Ammonia oxidation Ostwald process

Ammonia oxidation modem process

Ammonia oxidation, aerobic process

Ammonia partial oxidation process

Ammonia process flowsheet

Ammonia process steps

Ammonia processing routes, simplified

Ammonia production process

Ammonia recovery process

Ammonia removal process

Ammonia scrubbing process

Ammonia separation process

Ammonia stripping process

Ammonia synthesis commercial processes

Ammonia synthesis process

Ammonia synthesis process description

Ammonia synthesis process development

Ammonia synthesis reduction process

Ammonia, Fischer-Tropsch process

Ammonia, production related separation processes

Ammonia, production, process synthesis

Ammonia-Ammonium Bisulfate process

Ammonia-hydrogen exchange process

Ammonia-hydrogen process

Ammonia-lime double alkali process

BASF ammonia process

Caron ammonia process

Commercial processes, ammonia

Copper-ammonia solution washing process

Electrochemical ammonia synthesis process

Example Ammonia Process

Haber ammonia synthesis process

Haber process for ammonia

Haber process for the synthesis of ammonia

Haber-Bosch process, ammonia synthesis

History of the Ammonia Process

Indigo ammonia process

Integration of Ammonia and Urea Processes

KBR advanced ammonia Process

Kellogg Brown Root Advanced Ammonia Process-Plus (KAAP)

Kellogg advanced ammonia process

Kellogg ammonia processes

Leading Concept Ammonia Process

Other Processes into an Ammonia Plant

Process Condensate (Methanol and Ammonia)

Processes Governing Ammonia Emissions from Rice

Processes for the Production of Ammonia Synthesis Gas

Processing ammonia removal

Salt removal ammonia extraction process

Sherritt Gordon ammonia leach process

Sherritt Gordon process removal of ammonia

Sherritt-Gordon ammonia leaching process

Snamprogetti ammonia process

Soda, ammonia process

Sodium Carbonate by the Ammonia Process

Solvay ammonia-soda process

Solvay process ammonia

Synthetic ammonia Haber-Bosch process

Synthetic ammonia process

Technical Ammonia Process and Synthesis Reactors

Temperature Ammonia-Hydrogen Exchange Process

The Ammonia Oxidation Process

The Ammonia Synthesis Process

Urea integration with ammonia processes

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