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Energy storage chemical

R. H. SchaUenberg, Bottled Energy Electrical Engineering and the Evolution of Chemical Energy Storage, American Philosophical Society, Philadelphia, Pa., 1982. [Pg.579]

In addition, there are soine requirements which apply particularly to chemical energy storage reactions ... [Pg.203]

For photochemical reactions leading to chemical energy storage, there will be a maximum wavelength r called the... [Pg.212]

ATP synthase is a complex enzyme, a molecular motor, an ion pump, and another molecular motor all wrapped together in one amazing machine. It plays a very important role in cells, synthesizing the chemical energy-storage compound called adenosine... [Pg.38]

Figure 4.3 The enzyme ATP synthase synthesizes the chemical energy-storage compound known as ATP. One of this complex enzyme s two rotary motors is the FI motor (shown in the image above), a chemical motor that creates the ATP. Figure 4.3 The enzyme ATP synthase synthesizes the chemical energy-storage compound known as ATP. One of this complex enzyme s two rotary motors is the FI motor (shown in the image above), a chemical motor that creates the ATP.
Chemical Energy Storage One Long-Term Solution... [Pg.20]

It is now obvious that we have to refrain from irreversible C02 emission as fast as we possibly can. All classes of influences indicated in Figure 1.1.4 point in this direction [1, 78, 79]. This is a long-term trend and not a shorthand political wave. As the dimension of this challenge is so large, we are advised best if we use all options that fulfill the conditions of scalability and sustainability in order not to create a new energy system with a similar flaw in it as our present fossil system. In this sense, chemical energy storage is one important option but certainly not the only solution. [Pg.20]

Figure 3.1.2 The concept of (electro-)chemical energy storage [2]. The indicated energy value corresponds to AG° for the decomposition of 1 mol gaseous H20 according to Equation (3). Figure 3.1.2 The concept of (electro-)chemical energy storage [2]. The indicated energy value corresponds to AG° for the decomposition of 1 mol gaseous H20 according to Equation (3).
To underline the variety of in situ studies and their potential in energy-related and chemical energy storage processes, several case studies are given in this chapter. They are intended to underline the present status, but it should be kept in mind that these are only facets of recent possibilities. [Pg.318]

Reilly, J. J. and Johnson, J. R., Metal Hydride Materials Program at BNL - Current Status and Future Plans, "Proc. ERDA Contractors Review Meeting on Chemical Energy Storage and Hydrogen Energy Systems", ERDA Report CONF-761134, 1976, 129. [Pg.328]

Long-term chemical energy storage resides mainly in carbohydrates, fats, and proteins. Liberation of energy accompanies oxidation of these compounds. [Pg.139]

Murphy, S., Kanani, D., Zydney, A. (2010). Polymeric microfiltration membranes for biodiesel production. In Chemical energy storage and conversion. University Park, PA 16802 Department of Chemical Engineering, The Pennsylvania State University. Department of Chemical Engineering, University of Florida. [Pg.310]

Chadda D, Ford JD, Fahim MA. Chemical energy storage by the reaction cycle CuO/ CU2O. Int J Energy Res 1989 13 63. [Pg.277]


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See also in sourсe #XX -- [ Pg.2 ]




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