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Titlebook: Energy Storage; Fundamentals, Materi Robert Huggins Textbook 2016Latest edition Springer International Publishing Switzerland 2016 Electroc

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Introduction,pment of fracking technology, as described in the Preface, and which will be further discussed in Chap. .. However, there is another matter that is very important in considering the effective use of the energy that is available. This involves the relationships between the several types of energy, and also the various different uses of energy.
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Thermal Energy Storage,nergy use for lighting purposes comprises between 20 and 50 % of the total energy used in homes, and varies appreciably with both location and time of the year, of course. This is expected to decrease substantially as the result of the use of fluorescent and light-emitting-diode (LED) devices in the future.
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Mechanical Energy Storage,ial energy, and the other involves changes in the motion of mass, and thus kinetic energy. This chapter focuses upon the major types of potential energy and kinetic energy storage. It will be seen that it is possible to translate between these two types of energy, as well as to convert these energies to heat or work.
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Hydrogen Storage,nd their derivatives. It has the potential to be a clean, reliable and affordable energy source, and has the major advantage that the product of its combustion with oxygen is water, rather than CO and CO., which contain carbon and are considered greenhouse gases. It is expected to play a major role in future energy systems.
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Binary Electrodes Under Equilibrium or Near-Equilibrium Conditions,ement) and ternary (three element) alloys has now been established. The relevant principles are discussed for the case of binary systems in this chapter. Ternary systems will be treated in the next chapter.
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