PL EN
PRACA ORYGINALNA
Wodór w bilansie energetycznym – wybrane zagadnienia
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Więcej
Ukryj
1
Instytut Gospodarki Surowcami Mineralnymi i Energią PAN, Kraków
 
2
AGH Akademia Górniczo-Hutnicza, Wydział Wiertnictwa, Nafty i Gazu, Kraków
 
 
Zeszyty Naukowe Instytutu Gospodarki Surowcami Mineralnymi i Energią Polskiej Akademii Nauk 2018;102:51-64
 
 
REFERENCJE (13)
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2.
Grond et al. 2013 – Grond, L., Schulze, P. and Holstein, J. 2013. Systems analyses Power to Gas: A technology review. Part of TKI project TKIG01038 – Systems analyses Power-to-Gas pathways. Deliverable 1: Technology Review, KEMA Nederland B.V. Groningen, pp. 16–18.
 
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Mostafaeipour et al. 2016 – Mostafaeipour, A., Khayyami, Sedaghat. A., Mohammadi, K., Shamshirband. Sh., Sehati, M.-Ali and Gorakifard, E. 2016. Evaluating the wind energy potential for hydrogen production: A case study. International journal of hydrogen energy 41, pp. 6200–6210.
 
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Mokrzycki et al. 2008 – Mokrzycki, E., Ney, R. and Siemek, J. 2008. Światowe zasoby surowców energetycznych – wnioski dla Polski. Rynek Energii nr 6, pp. 2–13 (in Polish).
 
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Nowacki, P.J. 1983. Wodór jako nowy nośnik energii. Wyd. PAN Ossolineum (in Polish).
 
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Schneider, L. and Kotter, E. 2015. The geographic potential of Power-to-Gas in a German model region – Trier- -Amprion 5. Journal of Energy Storage vol. 1, pp. 1–6.
 
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Study on Hydrogen and methanation as means to give value to electricity surpluses Executive summary, E&E Consultant, Hespul, Solagro September 2014, p. 7.
 
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Zittel, W. and Wurster, R. 1996. Hydrogen in the energy sector. Laudwig-Bolkow Systemtechnik GmbH, 7, Aug.
 
ISSN:2080-0819
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