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A Numerical and Graphical Review of Energy Storage Technologies

Energies · 2014 · Vol. 8(1) · pp. 172–216
Siraj SabihuddinAristides KiprakisMarkus Mueller

Abstract

More effective energy production requires a greater penetration of storage technologies. This paper takes a looks at and compares the landscape of energy storage devices. Solutions across four categories of storage, namely: mechanical, chemical, electromagnetic and thermal storage are compared on the basis of energy/power density, specific energy/power, efficiency, lifespan, cycle life, self-discharge rates, capital energy/power costs, scale, application, technical maturity as well as environmental impact. It’s noted that virtually every storage technology is seeing improvements. This paper provides an overview of some of the problems with existing storage systems and identifies some key technologies that hold promise.

Advanced Battery Technologies ResearchAdvanced battery technologies researchSupercapacitor Materials and FabricationEnergy storageThermal energy storageCapital costPumped-storage hydroelectricityComputer scienceProcess engineeringComputer data storageReliability engineeringEnvironmental scienceRenewable energy
Citations
317
FWCI
10.32
field-weighted impact
References
68
Percentile
98%
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References
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The role of compressed air energy storage (CAES) in future sustainable energy systems
Energy Conversion and Management · 2009 · 539 citations
Metal–Air Batteries with High Energy Density: Li–Air versus Zn–Air
Advanced Energy Materials · 2010 · 2,229 citations
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