Big Chemical Encyclopedia

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

Articles Figures Tables About

Product energy

Pasteur effect Yeast and other cells can break down sugar in the presence of oxygen (eventually to CO2 and H2O) or in its absence (to CO2 and ethanol). The decomposition of sugar is often greater in the absence of oxygen than in its presence, i.e. the Pasteur effect. With oxygen, less toxic products (alcohol) are produced and the breakdown is more efficient in terms of energy production. [Pg.297]

All petroleum energy products, as distinct and dissimilar as they can be, are subjected to the process of flame combustion. It is helpful at this point to bring to mind some definitions and general laws of thermochemistry. [Pg.178]

Energy products Energy recovery Energy Security Act Energy storage Energy value Enflurane [13838-16-9]... [Pg.362]

J. W. ShiUer, "The Automobile and the Atmosphere" in Energy Production, Consumption and Consequences, National Academy Press, Washington,... [Pg.434]

Table 31. Net Energy Production Ratios for Ethanol Production from Com in Integrated System ... Table 31. Net Energy Production Ratios for Ethanol Production from Com in Integrated System ...
Ref. 98. These values are from 1987 and 1988. Energy products are steam and/or electric power. [Pg.39]

Chemical iajections iato piae trees have been reported to have stimulatory effects on the natural production of resias and terpenes and may result ia high yields of these valuable chemicals. Combiaed oleoresin—timber production ia mixed stands of piae and timber trees is under development, and it appears that when short-rotation forestry is used, the yields of energy products and timber can be substantially higher than the yields from separate operations. [Pg.45]

R. A. Buchaiman and F. O. Otey, "Multi-Use OH- and Hydrocarbon-Producing Crops in Adaptive Systems for Food, Material, and Energy Production," paper presented at 19 th Annual Meeting, Societyfor Economic Botany, St. Louis, Mo., June 11—14,1978. [Pg.48]

L. L. Wright, in L. L. Wright and W. G. Hohenstein, eds.. Biomass Energy Production in the United States Situation and Outlook, Oak Ridge National Laboratory, Oak Ridge, Term., Aug. 1992, Chapt. 2. [Pg.50]

Because the energy production and storage 2one is far underground, HDR plants should occupy only a minimal space on the surface. In addition, siting opportunities are predicted to be extremely versatile, and the locations of faciHties can be chosen for minimal visual impact or to eliminate the need for long mns of high tension lines. [Pg.273]

H, for which J = 0, is the intrinsic coercivity whereas the usual coercivity, for which S = 0, is denoted by H or H. For permanent magnets, the value (BH), the maximum energy product, is an important measure of quaHty. The value (BH), iadicated ia the secoad quadrant of Figure 1, represents the poiat of maximum efficieacy where a givea amouat of magnetic flux is produced by the smallest amouat of material. [Pg.367]


See other pages where Product energy is mentioned: [Pg.1022]    [Pg.171]    [Pg.2]    [Pg.2]    [Pg.3]    [Pg.5]    [Pg.6]    [Pg.7]    [Pg.9]    [Pg.10]    [Pg.13]    [Pg.14]    [Pg.25]    [Pg.28]    [Pg.28]    [Pg.32]    [Pg.33]    [Pg.35]    [Pg.36]    [Pg.37]    [Pg.37]    [Pg.37]    [Pg.38]    [Pg.38]    [Pg.38]    [Pg.38]    [Pg.38]    [Pg.39]    [Pg.39]    [Pg.45]    [Pg.150]    [Pg.265]    [Pg.266]    [Pg.269]    [Pg.271]    [Pg.271]    [Pg.272]    [Pg.128]    [Pg.547]    [Pg.548]   
See also in sourсe #XX -- [ Pg.3 , Pg.27 , Pg.32 , Pg.64 , Pg.83 , Pg.255 , Pg.257 , Pg.356 , Pg.358 , Pg.491 , Pg.492 ]

See also in sourсe #XX -- [ Pg.70 , Pg.134 ]

See also in sourсe #XX -- [ Pg.72 , Pg.110 ]

See also in sourсe #XX -- [ Pg.198 , Pg.203 ]




SEARCH



336 / Biochemistry energy production

A review of measured product energy distributions for some simple chemical reactions

Activation energies product distribution

Activation energy ethylene oxide production

Adenosine triphosphate energy production

Agricultural production energy efficiency

Amino acids energy production

Ammonia production energy consumption

Animal calorimetry methods for measuring heat production and energy retention

Aspartic acid energy production

Average product translation energies

Bimodal product energy distribution

Biomass energy production from

CH3I+ product energy distribution

CO product vibrational energies

Canonical product energy distribution

Catalysis for Renewables: From Feedstock to Energy Production

Catalysis for Sustainable Energy Production. Edited by P. Barbaro and C. Bianchini

Combustion for the Production of Energy

Crop production, energy

Distribution of reaction products over internal energy states

Electrical energy production calculation

Electrical energy production economic assumptions

Electrical energy production power plants

Electrical energy production reference cases

Electrical energy production system economical analysis

Electrical energy, production

Electricity production from nuclear energy

Energies motion production

Energy Balance for Aluminum Production

Energy Distribution in Products of Ion-Molecule Reactions

Energy Production Respiration and Fermentation

Energy Production by Nuclear Radiation

Energy Production in Glycolysis

Energy Sources and Production

Energy acrylonitrile production

Energy analysis of product ions

Energy and Environmental Issues Related to Binder Production

Energy balance feed/product heat exchanger

Energy conservation production

Energy consumption global electricity production

Energy consumption of ammonia production

Energy consumption sugar production

Energy consumption, chlor-alkali production

Energy continued) product/feed ratios

Energy distribution in products

Energy electricity production

Energy footprints products

Energy for food production and processing

Energy from fission products

Energy production

Energy production

Energy production and storage

Energy production by nuclear fission

Energy production coal combustion

Energy production from fossil fuels

Energy production from nuclear power

Energy production from petroleum products

Energy production materials

Energy production nuclear power

Energy production sustainable

Energy production technologies

Energy production waste

Energy production, cellular

Energy production, oxygen consumption

Energy production, radiation emission, induced radioactivity and irradiation damage

Energy requirements for production

Energy wool production

Energy-distribution product

Energy-selected metal clusters, production

Environmental Health Aspects of Energy Production and Utilization

Fission products energy release from

Fusion energy production

Future merchant plants for non-electric energy products

Gates Energy Products

Glycolysis energy production

Grain plant, energy production from

High energy radiation, production

High-energy electron transfer products

High-energy-product magnets

Hydrogen energy production

Hydrogen production energy conversion efficiency

Hydrogen, energy conversion production

Kinetic product distribution activation energy

Laser diagnostics, of reaction product energy distributions

Linear energy transfer , production

Low Energy Productivity Beam Transport

Low Energy Productivity Beam Utilization

Magnetic energy product

Maximum energy product

Membrane transport energy production

Metabolic pathways and energy production

Metabolisable energy milk production

Metabolism energy production from

Methanol, production energy requirement

Minimum energy path single-product channels

Model Predicting Energy Requirement and Product Size Distribution

Molecular energy product

Motion chemical energy production

Motion light energy production

Motion thermal energy production

Nuclear energy hydrogen production from

Nuclear energy production

Nuclear fission energy production

Nuclear fission energy production from

Nuclear fusion energy production from

Pair production, from high energy radiation

Pathways and Energy Production

Pesticides energy production enzymes

Petroleum energy production from

Poly production energy requirements

Polyethylene production energy requirements

Polystyrene production energy requirements

Potential alpha energy of unattached decay products

Potential energy surface single-product channels

Power plants energy production from

Process energy, metal production

Product Drying, Energy Use and Pollution Control

Product energy consumption

Product energy distribution heat bath

Product energy distribution impulsive model

Product energy distribution prior

Product energy distribution trajectory studies

Product kinetic energy distributions

Product kinetic energy release distributions

Product recoil energy distribution

Product translational energies

Production energy used

Production of Energy from Biomass

Production of energy

Productive energy

Productive energy

Reactant/product energy difference

Reaction product energy distributions

Reactors Using Alternative Energy Forms for Green Synthetic Routes and New Functional Products

Regional distribution of energy production in

Regulation of Energy Flow and Heat Production

Related Energy Application of FRRPP Products

Reliable electric energy production

Renewable Energy for Hydrogen Production

Renewable energy production

Renewable energy production breakdown

Solar energy biomass production

Solar energy production

Solar energy, hydrogen production from

Some factors governing the disposal of energy in reaction products

Sustainable energy production key material requirements

The production of energy by nuclear fission

Theoretical energy product

Transition states product energies

Translational energies, average product

Turbulent energy production

Turbulent kinetic energy production term

Typical Gross Energies for Polymer Production

Virgin biomass production energy potential

Wind turbines Renewable energy production

World energy production

© 2024 chempedia.info