Densità energetica: differenze tra le versioni
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Riga 127:
|align=left|[[Glucosio]]||15,55||23,9|| ||
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|align=left|[[Sterco]] secco di [[Bos taurus|vacca]] e [[cammello]]||15,5<ref name="home.hccnet.nl">[http://home.hccnet.nl/david.dirkse/math/energy.html energy buffers<!-- Titolo generato automaticamente -->] {{webarchive|url=https://web.archive.org/web/20101126092443/http://home.hccnet.nl/david.dirkse/math/energy.html |data=26 novembre 2010 }}</ref>|| || ||
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|align=left|[[Legno]]||6–17<ref>[http://xtronics.com/reference/energy_density.htm Energy density - Transwiki<!-- Titolo generato automaticamente -->]</ref>|| || ||
Riga 207:
|align=left|[[Economia ad azoto liquido|Azoto liquido]]||0,77<ref name="Knowlen">C. Knowlen, A.T. Mattick, A.P. Bruckner and A. Hertzberg, [http://www.aa.washington.edu/AERP/cryocar/Papers/sae98.pdf "High Efficiency Conversion Systems for Liquid Nitrogen Automobiles"], Society of Automotive Engineers Inc, 1988.</ref>||0,62|| ||
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|align=left|[[Batteria litio-ione]]<ref name="BatteryspaceCom">A typically available lithium ion cell with an Energy Density of 201 wh/kg
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|align=left|[[Batteria litio-solfuro]]|||<span style="display:none">0,54</span>0,54-1,44|| || ||
Riga 221:
|align=left|[[Calore latente di fusione|Liquefazione del ghiaccio]]||0,335||0,335|| ||
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|align=left|[[Zinc-bromine flow battery]]|||<span style="display:none">0,27</span>0,27–0,306 [
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|align=left|[[Stoccaggio di aria compressa|Aria compressa]] a 20 bar (12 °C), without container||0,27||0,01|| ||64%[http://www.kbbnet.de/]
Riga 241:
|align=left|[[Capacitore]]: [[Ultracapacitore]]||0,0206 [http://maxwell.com/ultracapacitors/products/large-cell/bcap3000.asp]||0,050 [http://maxwell.com/ultracapacitors/products/large-cell/bcap3000.asp]|| ||
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|align=left|[[Capacitore]] [[Supercapacitore]]||0,01|| ||98,5%||90%[https://web.archive.org/web/20120722130618/http://
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|align=left|[[Capacitore]]||0,002 [http://www.doc.ic.ac.uk/~mpj01/ise2grp/energystorage_report/node9.html]|| || ||
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