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Prototype unit, description

Description of the Prototype Unit. As proof of concept, a facility was constructed in association with a conventional refuse transfer station. The plant is comprised of two modules, a 15 TPH RDF system in conjunction with a 1 TPH fluidized bed gasifier. A flow diagram is shown in Figure 1. [Pg.341]

A detailed example of the alternative descriptions of a given compound, both in terms of its hexagonal unit cell and of the corresponding rhombohedral primitive cell is presented in Chapter 4 the rhombohedral compound Mo6PbSx (the prototype of the family of the so-called Chevrel phases) is described and unit cell constants and atomic positions are listed for its conventional hexagonal cell and for the rhombohedral primitive cell. [Pg.107]

Full-scale processes of this type are operating in the United Kingdom and the United States. Full descriptions of these plants have not been published, but details of the American large-scale pilot plant are avail-able 19. 20,21, 22, 23 and some information has been published regarding the operation of a production prototype plant in the United Kingdom. ... [Pg.208]

Life cycle assessment of SOFC technology is still uncommon due to the relatively early stage in technical development. However, several studies have been performed since the end of the 1990s. Since there is a lack of standard commercial equipment that could serve as a basis and reference point for analysis, LCA studies mostly refer to hypothetical concepts and/or extrapolate from laboratory and early market prototypes to commercial units. While the first studies had only little access to operation data at aU (for the fuel cell system itself but also for production processes), the main effort was set in the assessment of inventory data using assumptions, simplifications, and correlations [79, 80]. The main outcomes of these studies were the identification of weak points and the setting of benchmarks for further development. With more information about fuel cells available today and a simultaneous advancement in LCA methodology, the studies became more reliable and detailed, regarding system description [81] as well as the assessment of environmental impacts coimected with inputs and outputs [82]. Especially the extensive data of these two studies found their way to commercial databases for LCA [83] and thereby became available to LCA practitioners. In 2005, the Federal Ministry for the Environment, Nature Conservation and Nuclear Safety (BMU)... [Pg.775]

In Table 2.5 we give general information about all the cubic structures under consideration prototype name, Pearson and strukturbericht designations, space group and Wyckoff positions occupations, and possible equivalent description of the structure. All these structures contain one formula unit in the primitive unit cell Z=l). For the structures cF with a face-centered cubic lattice the number of atoms is given for the cubic unit cell consisting of four primitive unit cells (this is traditional for crystal-structure databases). In computer calculations only the atoms inside the primitive unit cell have to be included two atoms for diamond, rocksalt, zincblende and cesium... [Pg.28]

The present edition is not only updated, but modernized and renewed. This is also indicated by the fact that only six of the old authors are still involved, and there are new chapters such as micro injection molds, molds for the rubber industry, or rapid prototyping, while others are no longer applicable. Otherwise, as it was already stated in the preface of the 4th German edition, it still applies that this compilation does not intend to serve as a textbook for the detailed design of an injection mold or to replace the catalogue of a manufacturer of standard mold units, and it is also not the long version of a lecture manuscript either. Rather, the brief description of the basic facts and the latest state of the art for the individual mold types and their manufacture allow a direct comparison in a compact form. [Pg.8]

In view of this discussion, it is clear that even the detailed model of eqs (1.1)-(1,3) should not be taken as a faithful description of polyethylene (PE), but rather as a prototypical schematic model of linear polymers. In the context of simulations of lipid monolayers,it has been suggested that it is necessary to shift the center of gravity of the united atom off the position of the carbon atom at the chain backbone (anisotropic united atom model). Very recent work " (see also Chapter 8) suggests that it is more satisfactory to include the hydrogen atoms explicitly, if one wishes to describe PE properly. For the reasons quoted above, such work is restricted to relatively... [Pg.6]


See other pages where Prototype unit, description is mentioned: [Pg.10]    [Pg.160]    [Pg.627]    [Pg.112]    [Pg.633]    [Pg.753]    [Pg.183]    [Pg.8]    [Pg.401]    [Pg.535]    [Pg.188]    [Pg.64]    [Pg.2]    [Pg.121]    [Pg.56]    [Pg.101]    [Pg.26]    [Pg.2]    [Pg.506]    [Pg.27]    [Pg.294]   
See also in sourсe #XX -- [ Pg.352 ]




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