Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Gases energy

Weir, G. J., White, S. P. Kissling, W. M. 1995. Reservoir storage and containment of greenhouse gases. Energy Conversion and Management, 36, 531-534. [Pg.296]

It is interesting that vibration-translation relaxation phenomena in liquids, where the molecules can be regarded as in continual close association, show the same general features as for the corresponding gases energy transfer would appear to occur in binary collisions with the same transfer probability per collision... [Pg.215]

It is correct to state that according to the Theory of Gases energy can be expressed as temperature. However, this is advantageous and reasonable only if the physical process is governed by molecular events. For macroscopic interrelations like the Boussinesq s problem, the molecular nature of the gas is irrelevant. Here, the microscopic parameters are replaced by mean values of the macroscopic ones, these appearing in measurable physical properties such as specific heat and heat conductivity. To equate energy with temperature as Riabouchinsky did, introduced irrelevant physics to the problem. See also the remarks of L.I. Sedov [48, p. 40+]. [Pg.79]

In single atoms, such as in H and noble gases, energy states of electrons can be determined from the Coulomb potential of the nucleus. Some of these states are empty (Rydberg states) and differences in their energy states becomes smaller and smaller with... [Pg.486]

Renewable supply / rural development Reduced greenhouse gases Energy security... [Pg.8]

J. Van Der Sluijs, Feasibility of polymer membranes for carbon dioxide recovery from flue gases. Energy Conversion Manage, 1992, 33, 429-436. [Pg.76]

Neir Directions Natural Gas Energy, Natural Gas Council (American Gas Association, Independent Petroleum Association of America, Interstate Natural Gas Association of America, Natural Gas Supply Association), 1992. [Pg.177]

Aeroderivative gas turbines eonsist of two basie eomponents an aireraft-derivative gas generator, and a free-power turbine. The gas generator serves as a produeer of gas energy or gas horsepower. The gas generator is derived... [Pg.18]

Sodium atoms must be removed from the solid to form sodium gas. Energy must be supplied to do this because, as we describe in Chapter 11. interatomic forces hold the atoms together in the solid metal. The tabulated value for the enthalpy of vaporization of Na is 107.5 kJ/mol. As described in Chapter 6, at 298 K the energy of vaporization is 2.5 kJ/mol less than this ... [Pg.545]

Radon gas is the result of the radioactive decay of radium-226, an element that can be found in varying concentrations throughout many soils and bedrock. Figure 31.1 shows the series of elements that begins with uranium-238, and, after undergoing a series of radioactive decays, leads eventually to lead-210. At the time radium decays to become radon gas, energy is released.9 Of all the elements... [Pg.1255]

The reaction is producing 2 moles of gas from 1 mole of gas. Energy is more dispersed in a system with 2 moles of gas than in a system with 1 mole of gas. [Pg.249]

Since pyrolysis converts waste into CO, CH4, and H2, the product gases can be processed in an atmospheric pressure non-equilibrium plasma reformer to improve the energy-recovery potential of the product gas. Energy-recovery options include heat and chemical energy recovery. [Pg.163]

Thomas, S. Dawe, R.A. (2003). Review of ways to transport natural gas energy from countries which do not need the gas for domestic use. Energy, 28 (14), 1461-1477. [Pg.57]

Modeling of the packed bed catalytic reactor under adiabatic operation simply involves a slight modification of the boundary conditions for the catalyst and gas energy balances. A zero flux condition is needed at the outer reactor wall and can be obtained by setting the outer wall heat transfer coefficients /iws and /iwg (or corresponding Biot numbers) equal to zero. Simulations under adiabatic operation do not significantly alter any of the conclusions presented throughout this work and are often used for verification... [Pg.149]

The gas energy and mass balance equations, unlike the corresponding solid balances, do not have a term for accumulation. This is because the high convective flow of gas through the channels of the monolith makes accumulation of heat or reactants in the gas phase negligible. In practice, the accumulation term in the solid mass balance could also be removed as, in general, it also tends to be small. However, it is included in our models as it enables the equations to be solved numerically more easily. [Pg.58]

T. Bhaskar, T. Matsui, K. Nitta, M.A. Uddin, A. Muto, and Y. Sakata, Laboratory evaluation of calcium-, iron-, and potassium-based carbon composite sorbents for capture of hydrogen chloride gas, Energy Fuels, 16(6) 1533-1539, November 2002. [Pg.266]

Specific Gas Energy. Gmelins Handbuch (Ref 56) gives 5575 kg/1 for complete deton and 3840 kg/1 for partial deton... [Pg.332]

We turn to the energy of the gas, calculated according to the self-similar solution as the volume integral of the kinetic and thermal gas energies. The... [Pg.110]

Fig. A9.12 Simulink Tan submodel page (anode gas energy conservation a similar form exists for the cathode). Fig. A9.12 Simulink Tan submodel page (anode gas energy conservation a similar form exists for the cathode).
Utilities-Electricity Natural Gas Energy Trading Marketing Nuclear Power Generation... [Pg.178]


See other pages where Gases energy is mentioned: [Pg.57]    [Pg.41]    [Pg.150]    [Pg.167]    [Pg.148]    [Pg.94]    [Pg.293]    [Pg.88]    [Pg.973]    [Pg.24]    [Pg.422]    [Pg.582]    [Pg.50]    [Pg.174]    [Pg.836]    [Pg.1635]    [Pg.134]    [Pg.184]    [Pg.206]    [Pg.775]    [Pg.154]    [Pg.130]    [Pg.270]    [Pg.89]    [Pg.145]    [Pg.943]    [Pg.943]    [Pg.30]    [Pg.205]    [Pg.322]    [Pg.137]    [Pg.169]    [Pg.57]    [Pg.58]    [Pg.716]    [Pg.50]    [Pg.600]    [Pg.209]    [Pg.171]    [Pg.292]    [Pg.297]    [Pg.185]    [Pg.207]   
See also in sourсe #XX -- [ Pg.58 , Pg.59 , Pg.68 ]




SEARCH



Applications in Landfill Gas Energy Recovery

Average energy consumption for off-gas treatment and holding

Bond dissociation energy noble-gas cations

Diatomic gases, energy comparisons

Electron energy distribution etch gases

Energies of Gas-Phase Molecules

Energy Conservation by Heat Recovery from Flue Gases

Energy Levels of an Ideal Gas Molecule

Energy conservation stack gas dew point

Energy natural gas

Energy of an ideal gas

Energy of ideal gas

Energy of the Ideal Gas from State Functions

Energy recovery from vent gases

Energy requirements for adsorption of gases

Energy sources natural gas

Energy states of an electron gas

First ionization energy noble gases

Free energy of an ideal gas

Free energy solid inert gases

Gas Phase Energy Balance

Gas chromatography-thermal energy

Gas chromatography-thermal energy analysis

Gas kinetic energy

Gas phase energies

Gas phase energy surface

Gas-Surface energy transfer

Gas-phase energy equation

Gases ignition energy

Gases internal energy

Gases ionization energy

Gibbs energy for ideal gas

Gibbs energy or chemical potential of a real gas

Greenhouse gases, regulated emissions and energy use

Ideal gas energy

Ideal gas free energy

Ideal gas internal energy

Industrial gases industry energy-efficient process

Interaction energies in lattice-gas models

Internal Energy of Ideal Gases Microscopic View

Internal energy of an ideal gas

Internal energy of ideal gas

Internal energy of the van der Waals gas

Ionization Energies of Gas-Phase Molecules

Kinetic energy of gas molecules

Lattice, gases energy

Low-energy gases

Mixing, entropy, gases free energy

Natural gas energy aspects

Natural gas energy density

Noble gases ionization energy

Noble gases, energy comparisons

Rate of Vibrational Energy Transfer between Gas Molecules

Real gases Gibbs energy

Real gases total internal energy

Site energies in lattice-gas models

Stack gases, available energy

The Gibbs energy of real gases

The internal energy of an ideal gas

Velocity Distribution and Average Energy of Gases

© 2024 chempedia.info