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Multi-plate-stack reactor

Reactor 2 [R 2] Steel Multi-plate-stack Reactor with Micro Mixer... [Pg.263]

Figure 3.4 Magnified view inside a steel multi-plate-stack reactor. Figure 3.4 Magnified view inside a steel multi-plate-stack reactor.
Reactor 3 [R 3] Modular Multi-plate-stack Reactor... [Pg.264]

Figure 3.5 Schematic of the modular multi-plate-stack reactor [43. ... Figure 3.5 Schematic of the modular multi-plate-stack reactor [43. ...
Figure 3.6 Multi-plate-stack reactor with diffusers. Figure 3.6 Multi-plate-stack reactor with diffusers.
Figure 3.11 Photograph of the multi-plate stack reactor, originally designed as a counter-flow heat exchanger this type of reactor was also used for periodic operation [13]. Figure 3.11 Photograph of the multi-plate stack reactor, originally designed as a counter-flow heat exchanger this type of reactor was also used for periodic operation [13].
Modular multi-plate stack reactor [46-48] This modular reactor concept was developed for flexibility, ease of handling and fast change of parameters. It contains five assembly groups, which are microstruc-tured platelets, a cylindrical inner housing, two diffusers and a cylindrical outer shell with a flange. The reactor module can be equipped with a fixed-bed catalyst or with a stack of microstructured wafers... [Pg.1061]

Reactor type Multi-plate-stack micro reactor with outer module Catalyst No. 1 material formation Pt, impregnated... [Pg.262]

Reactor type Multi-plate-stack with mixer-reactor sections Diffusion zone length 1 mm... [Pg.264]

Reactor type Multi-plate-stack in cylindrical housing Outer platelet dimensions (length No. I No. II No. Ill) = reaction channel length 12.5 mm 37.5 mm 50 mm... [Pg.266]

Reactor 4 [R 4] Multi-plate-stack Micro Reactor with Diffusers... [Pg.266]

Micro Reactors for Gas-phase Reaaions The multi-plate stack micro reactor was made in two versions (a) ... [Pg.267]

Reactor 5 [R 5] Cross-flow Multi-Plate Stack Micro Reactor... [Pg.268]

Figure 3.7 Alternated 90° turned adjacent platelets forming a stacked cross-flow configuration. Image of thermally bonded devices (top). Complete mounted multi-plate stack micro reactors (bottom) [45]. Figure 3.7 Alternated 90° turned adjacent platelets forming a stacked cross-flow configuration. Image of thermally bonded devices (top). Complete mounted multi-plate stack micro reactors (bottom) [45].
Reactor type Multi-plate-stack, cross-flow Operating pressure -... [Pg.270]

Reactor 7 [R 7] Multi-Plate Stack Micro Reactor in Heatable Holding Unit... [Pg.272]

Investigations with the modular multi-channel [28,98] and silicon chip [19, 56-62] micro reactors demonstrate that by exact temperature control the oxidation of ammonia can be run with increased and deliberately steered selectivity. A major application is provided by carrying out former high-temperature reactions in the low-temperature regime. In the case of ammonia oxidation in the chip micro reactor, the yield of the value product NO was actually lower in that regime. In the case of the multi-plate-stack micro reactor, higher yields of the value product NO2 were achieved. [Pg.298]

GP 2] [R 2] Initial work with a steel multi-plate-stack micro reactor with micro-structured platelets made of polycrystalline silver (OAOR modified) confirmed a selectivity of up to 49% at conversions of about 12% (3 vol.-% ethylene, 50 vol.-% oxygen, balance nitrogen 5 bar 41 h 277 °C) [4, 26, 40]. [Pg.300]

Reactor type Multi-plate-stack in cylindrical housing Platelet material Aluminum... [Pg.588]


See other pages where Multi-plate-stack reactor is mentioned: [Pg.273]    [Pg.10]   
See also in sourсe #XX -- [ Pg.587 ]




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