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Electrical energy production

The use of hydrogen for electric energy production from fossil fuels in large centralised plants will contribute positively to achieve important reductions of C02... [Pg.496]

Advanced technologies for electric energy production IGCC Concentiation of the production of C02 via decarbonization of fossil fuels. C02 can be either disposed of or used... [Pg.5]

Fixed cost indicator is derived form the total capital cost of the system. It defined as 5% of capital cost. It comprise operational and maintenance cost for whole system, including hydrogen production and its utilization for the electric energy production. [Pg.199]

The simulation of the existing PV-diesel power system showed that it has a total annual electricity production of 24,147 kWh, 65% of which is produced by the PV array. All parameters related to electric loads and electrical energy production of this system are summarised in Table 5.2. One of the most important findings of the simulation process is that a significant amount of electrical energy... [Pg.107]

Table 5.2. Electrical energy production and demand for the PV-diesel system... Table 5.2. Electrical energy production and demand for the PV-diesel system...
Moreover, the diesel generator operates frequently (3501 h/yr) in order to serve electric loads at periods of low wind resource and has an annual diesel fuel consumption of 24,407 L/yr. The monthly average electrical energy production of the existing wind-diesel system of Fair Isle is demonstrated in Figure 5.7. [Pg.116]

G. Tindell, Electrical energy production apparatus, U.S. Patent 4,841,731, June 27, 1989. [Pg.120]

Simon, G. de, Parodi, F., Fermeglia, M., Taccani, R. (2003). Simulation of process for electrical energy production based on molten carbonate fuel cells. /. Power Sources 115, 210-218. [Pg.432]

What are the major disadvantages of a fission reactor for electrical energy production ... [Pg.292]

Heat flow Electrical energy Electrical energy Product of voltage. Temperature rise of... [Pg.16]

The total costs for the electric energy production in nuclear power plants are lower than those in power plants burning fossil fuels. The cost of the fuel represents only 33% in the case of nuclear power plants, 80% in the case of power plants burning fossil fuels [3]. [Pg.518]

Fuel cells and metal/air batteries offer an attractive and viable alternative source of electric energy, both for large electric energy production and for transportation applications. The systems are not aggressive to the environment and are also, very flexible, quiet and have high efficiency. [Pg.220]

Kirillin, VA, Sheindlin, A.E. (1971), MHD - Generators as a Method of Electric Energy Production, Energia (Energy), Moscow. [Pg.936]

The lead—acid battery was gradually deployed in various sectors of the industry and became an important means of electric energy production and storage. Thus, the first stage in the development of the lead—acid battery system and the technology for its manufacture was completed. [Pg.12]

If the electrochemical system generates a current (galvanic cell), then the experimentally observed cell potential decreases with the passage of current. In this case, the resistance in the galvanic cell controls the voltage drop, which compensates for the resistance inside the cell and introducing a loss in electrical energy production. When a net current... [Pg.94]

The field of chemistry concerned with the interrelation of electrical and chemical effects, especially the study of chemical changes caused by an electric current and the electrical energy production by chemical reactions, is termed electrochemistry [5]. While electrochemistry encompasses a huge array of different phenomena applied in a variety of technologies, applications, and characterization techniques, such as the surface area measurement by hydrogen adsorption discussed in Sect. 4.3.8, the main emphasis here will be focused on electrodeposition and devices based on electrochemistry, such as electrochemical supercapacitors and electrochromic displays. [Pg.86]

NP situation may be improved in more distant future when the resources of cheap natural gas have to be exhausted (the share of natural gas is the dominant one in electric energy production), quotas on releasing the greenhouse es, significant increasing the cost of electric energy produced by HPP, controlling the environment have to be introduced. [Pg.147]


See other pages where Electrical energy production is mentioned: [Pg.391]    [Pg.167]    [Pg.385]    [Pg.29]    [Pg.645]    [Pg.271]    [Pg.467]    [Pg.55]    [Pg.355]    [Pg.79]    [Pg.30]    [Pg.71]    [Pg.61]    [Pg.118]    [Pg.44]    [Pg.350]    [Pg.470]    [Pg.7]    [Pg.840]    [Pg.516]    [Pg.179]    [Pg.165]    [Pg.84]   


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ELECTRICAL ENERGY

Electricity production

Energy electricity production

Energy product

Energy production

Productive energy

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