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Domination

As discussed in Chapter 3, at moderate pressures, vapor-phase nonideality is usually small in comparison to liquid-phase nonideality. However, when associating carboxylic acids are present, vapor-phase nonideality may dominate. These acids dimerize appreciably in the vapor phase even at low pressures fugacity coefficients are well removed from unity. To illustrate. Figures 8 and 9 show observed and calculated vapor-liquid equilibria for two systems containing an associating component. [Pg.51]

There are two enthalpy corrections for strongly associating vapors. The dominant term is due to the combined enthalpies of reaction of the stoichiometric species, Ah, to form the true... [Pg.136]

Raw materials costs dominate the operating costs of most processes (see App. A). Also, if raw materials are not used efficiently, this creates waste, which then becomes an environmental problem. It is therefore important to have a measure of the efficiency of raw materials use. The process yield is defined as... [Pg.122]

If the feed is dominated by the middle product (typically more than 50 percent) and the lightest product is present in small quantities (typically less than 5 percent), then the arrangement shown in Fig. 5.106 can be an attractive option. This time the light product must find its way up the column past the sidestream. Again, unless the light product is a small flow and the middle product a high flow, a... [Pg.147]

If the problem is dominated by equipment with a single specification (i.e., a single material of construction, equipment type, and pressure rating), then the capital cost target can be calculated from Eq. (7.21) with the appropriate cost coefficients. However, if there is a mix of specifications, such as different streams requiring different materials of construction, then the approach must be modified. [Pg.229]

Figure 8.4 shows the cost tradeoffs for the present case. At high conversions, the raw materials costs due to byproduct formation are dominant. This is so because the reaction to the undesired... [Pg.244]

The dominant heating and cooling duties associated with a distillation column are the reboiler and condenser duties. In general, however, there will be other duties associated with heating and cooling of feed and product streams. These sensible heat duties usually will be small in comparison with the latent heat changes in reboilers and condensers. [Pg.341]

The composite curves for this flowsheet are shown in Fig. 14.86. The composite curves are dominated by the reboilers and condensers of the two distillation columns and the feed vaporizer for the acetone feed. It is immediately apparent that the two distillation columns are both inappropriately placed across the pinch. Linnhoflf and Parker ... [Pg.350]

Preliminary process optimization. Dominant process variables such as reactor conversion can have a major influence on the design. Preliminary optimization of these dominant variables is often required. [Pg.405]

We have paid particular attention to industrial processes and have tried to give some indication of the use of particular chemicals. In order to give some idea of the relative magnitudes of production we have included data on annual production. In this, because of availability of data, we have not been entirely consistent in including common data or common units. (World, U.S. or European production figures are used as seem most appropriate or up-to-date - and it must be remembered that for most speciality chemicals U.S. production is dominant.)... [Pg.5]

Characterization of Crude Oils According to Dominant Characteristics Based on Overall Physical Properties... [Pg.39]

Experience has shown that certain carefully selected physical properties could be correlated with the dominant composition of a petroleum cut or crude oil. [Pg.40]

Table 4.19 gives the Henry constants for a few common gaseous components. The chemical nature is also a dominant factor. The effect of temperature is moderate note that the solubility passes through a minimum that depends on the hydrocarbon in question and that it is around 100°C. [Pg.170]

The development of a line of lubricant additives is an expensive and slow undertaking the market for these products —on the order of 10 billion dollars in 1992— is very large and is dominated by a few companies. [Pg.354]

Solution gas drive occurs in a reservoir which contains no initial gas cap or underlying active aquifer to support the pressure and therefore oil is produced by the driving force due to the expansion of oil and connate water, plus any compaction drive.. The contribution to drive energy from compaction and connate water is small, so the oil compressibility initially dominates the drive energy. Because the oil compressibility itself is low, pressure drops rapidly as production takes place, until the pressure reaches the bubble point. [Pg.186]

Gas reservoirs are produced by expansion of the gas contained in the reservoir. The high compressibility of the gas relative to the water in the reservoir (either connate water or underlying aquifer) make the gas expansion the dominant drive mechanism. Relative to oil reservoirs, the material balance calculation for gas reservoirs is rather simple. A major challenge in gas field development is to ensure a long sustainable plateau (typically 10 years) to attain a good sales price for the gas the customer usually requires a reliable supply of gas at an agreed rate over many years. The recovery factor for gas reservoirs depends upon how low the abandonment pressure can be reduced, which is why compression facilities are often provided on surface. Typical recovery factors are In the range 50 to 80 percent. [Pg.193]

Within the project box, the cashflow oi the project (or other investment opportunity) is the forecast of the funds absorbed and the money generated during the project lifetime. Take, for example, the development of an oil field as the investment opportunity. Initially the cashflow will be dominated by the capital expenditure (capex) required to design, construct and commission the hardware for the project (e.g. platform, pipeline, wells, compression facilities). [Pg.305]

If water or gas breakthrough occurs (in an oil well) from a high permeability layer it can dominate production from other intervals. Problems such as this can sometimes be prevented by initially installing a selective completion string, but in single string... [Pg.355]

It has been observed [4], that the effect of mean stress on the damage rate is much smaller than that of the stress range when delamination is the dominant failure mode. [Pg.50]

The isotropic part has not changed. The quasi pressure (qP) curve splits up into a real and an imaginary branch . During this real part the transversal share of the polarization increases until the wave becomes a quasi shear vertical wave. Furthermore, the wave is not anymore a propagating but an evanescent wave in this part. The branch is again only real, it is part of the quasi shear vertical (qSV) curve of the homogeneous case (dotted line), its polarization is dominated by the transversal share and the wave is a propagating one. For the branches (real) and... [Pg.155]

It was found that that in the case of soft beta and X-ray radiation the IPs behave as an ideal gas counter with the 100% absorption efficiency if they are exposed in the middle of exposure range ( 10 to 10 photons/ pixel area) and that the relative uncertainty in measured intensity is determined primarily by the quantum fluctuations of the incident radiation (1). The thermal neutron absorption efficiency of the present available Gd doped IP-Neutron Detectors (IP-NDs) was found to be 53% and 69%, depending on the thicknes of the doped phosphor layer ( 85pm and 135 pm respectively). No substantial deviation in the IP response with the spatial variation over the surface of the IP was found, when irradiated by the homogeneous field of X-rays or neutrons and deviations were dominated by the incident radiation statistics (1). [Pg.507]

The use of air-bome ultrasound for the excitation and reception of surface or bulk waves introduces a number of problems. The acoustic impedance mismatch which exists at the transducer/air and the air/sample interfaces is the dominant factor to be overcome in this system. Typical values for these three media are about 35 MRayls for a piezo-ceramic (PZT) element and 45 MRayls for steel, compared with just 0.0004 MRayls for air. The transmission coefficient T for energy from a medium 1 into a medium 2 is given by... [Pg.840]

Similar behaviour occurs when trying to locate voids in concrete cast behind steel plates, e g. the steel liner in nuclear containment walls. Our own experience has shown that in the case of a steel liner (encast at depth 250 mm) the reflected compression waves are dominant regardless of the condition of the concrete behind the plate. [Pg.1002]


See other pages where Domination is mentioned: [Pg.26]    [Pg.110]    [Pg.112]    [Pg.118]    [Pg.26]    [Pg.147]    [Pg.175]    [Pg.38]    [Pg.81]    [Pg.275]    [Pg.363]    [Pg.205]    [Pg.43]    [Pg.49]    [Pg.50]    [Pg.51]    [Pg.84]    [Pg.85]    [Pg.142]    [Pg.203]    [Pg.405]    [Pg.424]    [Pg.471]    [Pg.998]    [Pg.1058]    [Pg.56]   
See also in sourсe #XX -- [ Pg.313 ]

See also in sourсe #XX -- [ Pg.7 , Pg.11 , Pg.19 , Pg.99 , Pg.279 ]

See also in sourсe #XX -- [ Pg.51 , Pg.59 , Pg.80 , Pg.143 , Pg.152 ]

See also in sourсe #XX -- [ Pg.71 ]

See also in sourсe #XX -- [ Pg.15 , Pg.16 , Pg.21 , Pg.154 , Pg.215 ]




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1.3- dipolar cycloaddition reactions dominant frontier orbitals

Acetic dominant manufacturing process

Active dominance

Aggressive dominance

Airflow in Rooms Dominated by Supply Jets

American agricultural dominance

Anion-dominant

Anode materials dominant

Apical dominance

Apical dominance cytokinins

Apical dominance ethylene

Apical dominance gibberellins

Assay, dominant lethal

Autosomal Dominant Hypocalcemia

Autosomal dominant diseases

Autosomal dominant diseases Charcot-Marie-Tooth disease

Autosomal dominant disorder

Autosomal dominant hypoparathyroidism

Autosomal dominant ichthyosis

Autosomal dominant ichthyosis vulgaris

Autosomal dominant inheritance

Autosomal dominant nocturnal frontal lobe

Autosomal dominant nocturnal frontal lobe epilepsy

Autosomal dominant nocturnal frontal lobe mutations

Autosomal dominant polycystic kidney

Autosomal dominant polycystic kidney disease

Autosomal dominant polycystic kidney disease (ADPKD

Autosomal-dominant nocturnal

Auxin controlled apical dominance -second

Biomass energy combustion dominance

Bond Length and Charge Transfer Dominance

Bond number dominating spreading

CADASIL autosomal dominant

Cation-dominant

Cellular Mobile Telephony as a Dominant Design

Centrifugal dominance

Centrifugal-dominant small-curvature

Cerebral autosomal dominant

Cerebral autosomal dominant arteriopathy

Cerebral autosomal dominant arteriopathy leukoencephalopathy

Cerebral autosomal dominant arteriopathy with

Cerebral autosomal dominant arteriopathy with subcortical infarcts and

Cerebral autosomal dominant leukoencephalopathy

Chemical Kinetics, dominance

Chemical mechanism dominance

Chromosomal Dominant transmission

Co-dominant

Coagulation dominant effects

Collinearly dominant reaction (

Complex dominant loci

Conceptual Overview Hydrate Plug Formation in Oil-Dominated Systems

Control-dominated

Control-dominated circuits

Control-flow-dominated

Convection dominated

Cost-effectiveness dominance

Coulomb dominance

Crack-dominated failure mode

Crystal lamella stack dominant

Data-flow-dominated

Dead-time dominant

Denny K. S. Ng, Raymond R. Tan, Dominic C. Y. Foo. and Mahmoud M. El-Halwagi

Diagonal dominance

Diagonally dominant

Directing without domination

Dissolved inorganic carbon dominant species

Distribution dominant

Domin

Domin

Dominal

Dominance

Dominance

Dominance Bruce effect

Dominance and Number of Genes

Dominance bank voles

Dominance behavioral

Dominance concept

Dominance ecological

Dominance hierarchy

Dominance order

Dominance ratio

Dominance signals

Dominance status

Dominance test

Dominance urine marks

Dominance variance

Dominance, resistance alleles

Dominance/subordination

Dominant

Dominant

Dominant Errors

Dominant Fracture Mechanisms

Dominant Hypothesis

Dominant Mutant Phenotypes

Dominant Partner Effect

Dominant breakup mechanism

Dominant closed-loop poles

Dominant cone dystrophy

Dominant conformers, interconversion

Dominant designs

Dominant effects

Dominant eigenvalue

Dominant exposure

Dominant first-order response

Dominant fluid-solid heat transfer

Dominant fluid-solid mass and heat transfer

Dominant fluid-solid mass transfer

Dominant focus

Dominant gene interactions

Dominant gene, definition

Dominant grasses

Dominant hand

Dominant inheritance

Dominant lamellae

Dominant lethal bioassay

Dominant long period

Dominant males

Dominant models

Dominant motion

Dominant motion relaxation

Dominant mutation

Dominant optic atrophy

Dominant pole

Dominant precursor

Dominant precursor deposition

Dominant reaction pathway

Dominant role in regulating

Dominant singularity

Dominant spotting locus

Dominant technologies

Dominant termination steps

Dominant terms

Dominant use pairs

Dominant variable

Dominant wavelength

Dominant wavelength, color

Dominant wormholes

Dominant, genetic trait

Dominant-eigenvalue method

Dominant-negative mutation

Dominant-negative proteins

Dominant-negatives

Dominant-recessive interactions

Dominants, eleven

Dominate

Dominate

Dominated Alternative

Dominated Ecosystems

Dominating patents

Drift-dominated motion

E-dominance

Effect of dominant species

Efficient, Non-Dominated, or Pareto Optimal Solution

Eigenvalue positive dominant

Elasticity dominantly entropic

Electrode or Cell Models Applied to Ohmic Resistance-Dominated Cells

Entropy-dominated

Equilibrium dominant strategy

Ethylene dominance

Factors Dominating Mechanical Strength

Fibre-dominated properties

Flow regime collision-dominated

Fluctuation-dominated motion

Fluid-dominated regime

Galaxies central-dominant

Genes dominant

Genetic disorders autosomal dominant

Guerin-Domine cycle

HTTP is the Dominant Communication Protocol Today

Hamster dominance

Hand dominance

Hemispheric dominance

Hydrodynamic interactions dominant

Kinetic theory modeling for collision-dominated dense suspensions

Lewis structures dominant

Liquid-dominated geothermal systems

Macroalgal-dominated ecosystems

Male dominance

Mammals dominance

Matrices diagonally dominate

Matrix diagonal dominance

Matrix of Dominant Distances in a Graph

Matrix-dominant fracture

Matrix-dominated failure

Metal dominant

Metals dominating factors

Microporous carbon dominant properties

Mineral dominant species diagrams

Mouse dominance

Multi-Objective Elitist Non-Dominated Sorting GA (NSGA-II) and its JG Adaptations

Mutation harmful dominant

Mutation lethal dominant

Nearest-Neighbor Dominance in Cooperative Luminescence

Negative dominance

Neighborhoods of dominance

Nello Santacroce Dominic Fanelli

Network domination

Non-Dominated Alternatives

Non-dominated solution

Non-dominated sorting genetic

Non-dominated sorting genetic algorithm

Nucleation-dominated regime

Nucleolar dominance

Ocular dominance columns

Oil-dominated

Organic chemistry, dominance

Organic compounds, dominance

Oxidant, dominant, carbon

Oxidant, dominant, carbon combustion

Oxygen-dominant Phosphors

Pareto dominance

Parkinson autosomal dominant

Particle-dominated regime

Perinatal effects and the dominant

Phenotypic analysis, dominant

Pheromone dominance

Phonon wavelength, dominant

Phosphorus dominant groups

Photon-Dominated Regions (PDRs)

Photon-dominated regions

Plants with dominant seed coat band

Point of Zero Charge Adhesion Dominates

Polycystic autosomal dominant

Precipitation dominance

Propylene-dominant component

Protein dominated substrates

Quadrupolar interaction dominates central transition

Rank/status/dominance

Rate Laws, and Dominant Species

Renal disease autosomal dominant polycystic kidney

Resonance dominant, lifetimes

Resonance structures dominant

River-dominated estuaries, primary

River-dominated ocean margins

Rock-dominated chemistry

Rodent dominant lethal test

Rodents dominance

Saccharomyces cerevisiae dominant strains

Scission-dominated crazing

Self-consistency with ground state dominance

Self-consistent calculations state dominance

Sensory profiling temporal dominance sensations

Sequence characterization, dominant

Shelter dominance

Situations of ground state dominance

Social dominance

Special Numerical Methods for Convection-Dominated Problems

Species dominant bleaching

Spoilage symptoms dominant feature fermentation

St. Dominic

Steering-dominated reactions

Stochastic dominance

Storm-Dominated Shelves

Strategy dominant

Substrate dominance

Synthesis for control-flow-dominated machines

Temporal dominance of sensations

Temporal dominance of sensations (TDS) as a sensory profiling technique

Temporal dominance of sensations data analysis and representation

Test, dominant lethal

Tests for Dominant Lethals

The Dominant Parameter is Electronic

The Dominant Parameter is Structural

The Road Beyond CPFR Can Lead to Market Dominance

The dominant nucleation mode

Time scale dominant

Transfer dominated regime

Vapor-dominated system

Vapour-dominated geothermal fields

Vector meson dominance

Viscous dominated flow

Water-dominated chemistry

What Happens When One Rate-Determining Step Is Not Dominant

Yeast strains dominant

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