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Solid performance

In the case of ethanol, extraction with water is undesirable due to the dilution of the ethanol, whereas direct pressing gives poor yields [184]. Direct distillation from the fermented solids performs relatively poorly, although distillation is economically feasible if combined with animal feed production from the solid wastes [217,218]. As an alternative, forced gas circulation can be used to strip ethanol from the substrate. This has been shown for a gas-solid fluidized bed and for a stirred bed [90, 219, 220]. A further advantage is that continuous stripping during the fermentation, rather than simply recovering the ethanol at the end of the fermentation, avoids the product inhibition... [Pg.129]

Lewis, C. F., Silicon Nitride, the Rock-Solid Performer, ME 30-33 (May 1989)... [Pg.274]

Norbornene is a volatile solid. Perform all weighings in a hood if possible. [Pg.385]

The majority of the world s gas detector manufacturers use City Technology gas sensors because of their stability, sensitivity and reliability. Whatever the environmental conditions hot, cold, dry or humid, CityS sensors deliver the rock-solid performance you would expect from the industry leader. [Pg.36]

The performance of fluidized-bed reactors is not approximated by either the well-stirred or plug-flow idealized models. The solid phase tends to be well-mixed, but the bubbles lead to the gas phase having a poorer performance than well mixed. Overall, the performance of a fluidized-bed reactor often lies somewhere between the well-stirred and plug-flow models. [Pg.58]

Radiographic inspection is performed to reach a decision about the acceptability of the component or product being tested. Before any evaluation can be made, the interpreter must be certain that the images are satisfactory. In addition, the interpreter must have a solid understanding of the following in order to be successful with the interpretation of the radiographic film for welding quality. [Pg.181]

Ewald summation was invented in 1921 [7] to permit the efl5.cient computation of lattice sums arising in solid state physics. PBCs applied to the unit cell of a crystal yield an infinite crystal of the appropriate. symmetry performing... [Pg.462]

Chapter 2 we worked through the two most commonly used quantum mechanical models r performing calculations on ground-state organic -like molecules, the ab initio and semi-ipirical approaches. We also considered some of the properties that can be calculated ing these techniques. In this chapter we will consider various advanced features of the ab Itio approach and also examine the use of density functional methods. Finally, we will amine the important topic of how quantum mechanics can be used to study the solid state. [Pg.128]

I be second important practical consideration when calculating the band structure of a malericil is that, in principle, the calculation needs to be performed for all k vectors in the Brillouin zone. This would seem to suggest that for a macroscopic solid an infinite number of ectors k would be needed to generate the band structure. However, in practice a discrete saaipling over the BriUouin zone is used. This is possible because the wavefunctions at points... [Pg.175]

Iditional importance is that the vibrational modes are dependent upon the reciprocal e vector k. As with calculations of the electronic structure of periodic lattices these cal-ions are usually performed by selecting a suitable set of points from within the Brillouin. For periodic solids it is necessary to take this periodicity into account the effect on the id-derivative matrix is that each element x] needs to be multiplied by the phase factor k-r y). A phonon dispersion curve indicates how the phonon frequencies vary over tlie luin zone, an example being shown in Figure 5.37. The phonon density of states is ariation in the number of frequencies as a function of frequency. A purely transverse ition is one where the displacement of the atoms is perpendicular to the direction of on of the wave in a pmely longitudinal vibration tlie atomic displacements are in the ition of the wave motion. Such motions can be observed in simple systems (e.g. those contain just one or two atoms per unit cell) but for general three-dimensional lattices of the vibrations are a mixture of transverse and longitudinal motions, the exceptions... [Pg.312]

One application of the grand canonical Monte Carlo simulation method is in the study ol adsorption and transport of fluids through porous solids. Mixtures of gases or liquids ca separated by the selective adsorption of one component in an appropriate porous mate The efficacy of the separation depends to a large extent upon the ability of the materit adsorb one component in the mixture much more strongly than the other component, separation may be performed over a range of temperatures and so it is useful to be to predict the adsorption isotherms of the mixtures. [Pg.457]

Reduction of a nitro compound to a hydroxylamine. Dissolve 0-5 g. of the compound in 10 ml. of 50 per cent, alcohol, add 0-5 g. of solid ammonium chloride and about 0 5 g. of zinc powder. Heat to boiling and allow the ensuing chemical reaction to proceed for 5 minutes. Filter from the excess of zinc powder and test the filtrate with ToUen s reagent see Section III,70,(i). An immediate black or grey precipitate or a silver mirror indicates the presence of a hydroxylamine formed by the reduction of the nitro compound. Alternatively, warm the filtrate with Fehling s solution a hydroxylamine will precipitate red cuprous oxide. (A blank test should be performed with the original compound.)... [Pg.1076]

To a vigorously stirred suspension of 2 mol of lithium amide in 2 1 of liquid atimonia (see II, Exp. 11) was added in 15 min 1 mol of propargyl alcohol (commercial product, distilled in a partial vacuum before use). Subsequently, 1 mol of butyl bromide was added dropwise in 75 min. After an additional 1.5 h, stirring was stopped and the ammonia was allovied to evaporate. To the solid residue were added 500 ml of ice-water. After the solid mass had dissolved, six extractions with diethyl ether were performed. The (unwashed) combined extracts were dried over magnesium sulfate and then concentrated in a water-pump vacuum. Distillation of the residue through a 40-cm Vigreux column afforded 2-heptyn-l-ol, b.p. [Pg.77]

Quantitative studies of solid-state organic reactions were performed by Glazman (267. 268). Equal amounts of acetic anhydride and 2-aminothiazole (grain diameter 0.15 mm) were mixed for 20 rain, and the mixture was heated in a glycerol bath at 0.5°C per minute. Heating curves showed that the reaction starts in the solid phase the use of an eutectic composition of organic reactants increases the yields. [Pg.52]

Memfield successfully automated all the steps m solid phase peptide synthesis and computer controlled equipment is now commercially available to perform this synthesis Using an early version of his peptide synthesizer m collaboration with coworker Bemd Gutte Memfield reported the synthesis of the enzyme ribonuclease m 1969 It took them only SIX weeks to perform the 369 reactions and 11 391 steps necessary to assemble the sequence of 124 ammo acids of ribonuclease... [Pg.1142]


See other pages where Solid performance is mentioned: [Pg.110]    [Pg.426]    [Pg.1020]    [Pg.179]    [Pg.12]    [Pg.2]    [Pg.1406]    [Pg.396]    [Pg.293]    [Pg.283]    [Pg.110]    [Pg.426]    [Pg.1020]    [Pg.179]    [Pg.12]    [Pg.2]    [Pg.1406]    [Pg.396]    [Pg.293]    [Pg.283]    [Pg.55]    [Pg.334]    [Pg.381]    [Pg.114]    [Pg.355]    [Pg.610]    [Pg.834]    [Pg.848]    [Pg.849]    [Pg.160]    [Pg.443]    [Pg.353]    [Pg.496]    [Pg.14]    [Pg.258]    [Pg.263]    [Pg.329]    [Pg.330]    [Pg.353]    [Pg.451]    [Pg.48]    [Pg.487]    [Pg.342]    [Pg.14]    [Pg.589]    [Pg.145]   
See also in sourсe #XX -- [ Pg.884 ]




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High performance liquid solid phase extraction

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High-performance liquid chromatography solid-phase peptide synthesis

Liquid-solid contact performance

Performance thin-film, solid-state batteries

Reactions Catalyzed by Solid-Supported IL Heterogeneous Catalysis with Homogeneous Performance

Solid Oxide Fuel Cell Materials and Performance

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Solid oxide fuel cell performance

Solid-state sensors performance

Unique Performance Parameters and Design Aspects of Solid Electrolyte Cells

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