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Hollow reactor, schematic diagram

Based on the schematic diagram of the WGS hollow-fiber membrane reactor illustrated in Figure 9.1, the molar and energy balances were performed on both feed... [Pg.389]

Figure 9.1. Schematic diagram of water-gas shift hollow-fiber membrane reactor. (Reprinted with permission from Huang et al.,6 Copyright 2005 Elsevier.)... Figure 9.1. Schematic diagram of water-gas shift hollow-fiber membrane reactor. (Reprinted with permission from Huang et al.,6 Copyright 2005 Elsevier.)...
The bags employed in single use bioreactors are presterilized prior to use in cultivation of cells. Several forms of disposable bag bioreactors are available from multiple vendors. Examples include physically stirred bag bioreactors and wave-mixed bag bioreactors. A schematic diagram of a wave-mixed bag bioreactor is shown in Figure 13.13. Bag bioreactors are used in the production of therapeutic recombinant proteins and monoclonal antibodies. Other types of single use bioreactors include permselective membrane reactors in both hollow-fiber and flat-sheet membrane configurations (see Section 13.2.7). [Pg.514]

Figure 15.16 Schematic diagram of hollow fiber carbon membrane reactor. Figure 15.16 Schematic diagram of hollow fiber carbon membrane reactor.
Consider the packed-bed tubular reactor whose schematic diagram is shown in Figure P4.ll. It is a hollow eylindrical tube of uniform cross-sectional area A, packed with solid catalyst pellets, in which the exothermic reaction A Bis taking place. The packing is such that the ratio of void space to the total reactor volume— the void fraction—is known let its value be represented by E. The reactant flows in at one end at constant velocity v, and the reaetion takes place within the reactor. Obtain a theoretical model that will represent the variation in the reactant concentration C and reactor temperature r as a function of time and spatial position z. Consider that the temperature on the surface of the catalyst pellets Tg is different from the temperature of the reacting fluid and that its variation with time and position is also to be modeled. [Pg.334]

FIGURE 3.6 Schematic diagram of a membrane reactor with lipase-coated hollow fiber 1, buffer solution 2, triglycerides 3, lumen 4, hollow fiber wall 5, shell side 6, lipase coated hollow fiber 7, hollow fiber reactor 8, product 1 collection 9, product 2 collection. (From Malcata, F. X., C. G. Hill, and C. H. Amundson, 1992, Biotechnology and Bioengineering 39 (10) 1002-1012. With permission.)... [Pg.52]

A schematic diagram of a typical hollow fiber dense membrane reactor is shown in Figure 37.5a. The hollow fibers (Figure 37.5b) are manufactured by a phase inversion process (OD = l.1-1.5 mm ID = 0.75-1 mm) [63,64]. The oxidant gas (O2, H2O, CO2, N2O) mixture is fed to the core side, while a fuel (CH4, CO, or H2) mixture is fed to the shell side. A catalyst can be packed on the shell side. Both exit hnes are continuously monitored by onhne gas chromatography or mass spectrometry. [Pg.850]

Figure 37.S (a) Schematic diagram of a hollow fiber dense membrane reactor. (Reproduced from Ref. [60] with permission from Elsevier.) (b) SEM image of the cross... Figure 37.S (a) Schematic diagram of a hollow fiber dense membrane reactor. (Reproduced from Ref. [60] with permission from Elsevier.) (b) SEM image of the cross...
Figure A1.29 (a) Simplified schematic diagram of an AGR Author Messer Woland, https // commons.wikimedia.org/wiki/File AGR reactor schematic.svg, website approached on January 28, 2016) (1) charge tubes (2) control rods (3) graphite moderator (4) fuel assemblies (5) concrete pressure vessel and radiation shielding (6) gas circulator (7) water (8) water circulator (9) heat exchanger and (10) steam. Heat exchanger is contained within steel-reinforced concrete combined pressure vessel and radiation shield and (b) AGR ribbed fuel element with hollow fuel pellet (Hewitt and Collier, 2000). Figure A1.29 (a) Simplified schematic diagram of an AGR Author Messer Woland, https // commons.wikimedia.org/wiki/File AGR reactor schematic.svg, website approached on January 28, 2016) (1) charge tubes (2) control rods (3) graphite moderator (4) fuel assemblies (5) concrete pressure vessel and radiation shielding (6) gas circulator (7) water (8) water circulator (9) heat exchanger and (10) steam. Heat exchanger is contained within steel-reinforced concrete combined pressure vessel and radiation shield and (b) AGR ribbed fuel element with hollow fuel pellet (Hewitt and Collier, 2000).
Figure 1.16 Schematic diagram of the hollow fiber membrane reactor. Reproduced with permission from [16], Copyright (2013), Woodhead Publishing (Elsevier). Figure 1.16 Schematic diagram of the hollow fiber membrane reactor. Reproduced with permission from [16], Copyright (2013), Woodhead Publishing (Elsevier).

See other pages where Hollow reactor, schematic diagram is mentioned: [Pg.296]   
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