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Capacity comparison

Capacity comparison at flooding is shovm on Figure 9-59 as a function of the vapor and liquid capacity factors Gy and Cl- Koch developed correlations, used by permission [106] ... [Pg.335]

Figures 12-99, 12-100, and 12-101 show approximate speed-capacity comparisons with the centrifugal machine. Each stage consists of one stationary plus one rotating blade row. Figure 12-101 shows an axial compressor performance handling 100 psia air. Figures 12-99, 12-100, and 12-101 show approximate speed-capacity comparisons with the centrifugal machine. Each stage consists of one stationary plus one rotating blade row. Figure 12-101 shows an axial compressor performance handling 100 psia air.
PRIOR R L and CAO G (1999) "In vivo total antioxidant capacity Comparison of different analytical methods, Free Rad Biol Med, 27, 1173-81. [Pg.344]

Jl. Janaszewska, A., and Bartosz, G., Assay of total antioxidant capacity Comparison of four methods as applied to human blood plasma. Scand. J. Clin. Lab. Invest. 62, 231-236 (2002). [Pg.280]

Prior RL, Cao G. In vivo total antioxidant capacity comparison of different analytical methods. Free Radic Biol Med 1999 27 1173-81. [Pg.1158]

Reuse of Chromatography Resin, It is necessary to demonstrate that chromatographic media can be reused, cleaned, and sanitized [61]. Used resins receive additional analysis not required with new resins such as the titration of small ion binding capacity, measurement of total protein capacity, comparison of flow versus... [Pg.338]

These factors are a compromise between estimated costs fr.om se.ver.al s.our.ces. aiid are milar to relative costs given by Nichols and Houin [52]. The factor for naphtha-based plants presumably can be applied with some degree of confidence to standardized plant sizes that are lower and higher than the base case. For other feedstocks there is insufficient data to indicate how the plant cost would vary with capacity. Comparisons of the estimated production costs as affected by factors other than the scale of operation will be based on 1,500-tpd capacity. [Pg.189]

Fig. 3.9 Discharge capacity comparison in three developmental cell lots of the 1NCP26/72/112 model... Fig. 3.9 Discharge capacity comparison in three developmental cell lots of the 1NCP26/72/112 model...
Fractionation efficiency, 6,11,195-196, 209, 365 fractionator problems, 195-196, 209 Fractionator problems (FCCU product fractionation), 18f3-200 flooding, 188-189 load observation, 189-191 liquid loading sensitivity, 189 capacity comparison, 189,192-193 heattransfer coefficients, 193-194 structured packing heat transfer, 193 height equivalent to theoretical stage,... [Pg.263]

PCC6803 capacity comparisons and physiological function. J Bacteriol. 2001 183 4251-4248. [Pg.130]

Fig. 18.16 (a-b) Electrospun PS nanofibers with porous surface structures (Reprinted with the permission from Ref. [32], Copyright 2009 American Chemical Society), (c) The oil adsorption capacity comparison between smooth nanofibers and porous structured nanofibers with similar diameters the nanofibers with porous surface stmctuies show better absorption capacity. The adsorption capacity of peanut oil, silicon oil, motor oU, and diesel oil is 112.3, 81.4, 131.6, and 7.13 g/g, respectively, (d) Process of removing oil from water by porous nanofibers (Reprinted from Ref. [59], Copyright 2013, with permission from Elsevier)... [Pg.467]


See other pages where Capacity comparison is mentioned: [Pg.146]    [Pg.97]    [Pg.364]    [Pg.83]    [Pg.212]    [Pg.1543]   
See also in sourсe #XX -- [ Pg.189 , Pg.192 ]




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