Liquid Air Energy Storage: Analysis and Prospects

[1]  A. Deydier,et al.  A review on high temperature thermochemical heat energy storage , 2014 .

[2]  Dacheng Li,et al.  Load shifting of nuclear power plants using cryogenic energy storage technology , 2014 .

[3]  B. Dunn,et al.  Electrical Energy Storage for the Grid: A Battery of Choices , 2011, Science.

[4]  Kari Alanne,et al.  Distributed energy generation and sustainable development , 2006 .

[5]  Meihong Wang,et al.  Energy storage technologies and real life applications – A state of the art review , 2016 .

[6]  Jiří Jaromír Klemeš,et al.  Total Site Heat Integration planning and design for industrial, urban and renewable systems , 2017 .

[7]  L. Cabeza,et al.  Selection of materials with potential in sensible thermal energy storage , 2010 .

[8]  Fabio Polonara,et al.  State of the art of thermal storage for demand-side management , 2012 .

[9]  M. Manno,et al.  Thermodynamic analysis of a liquid air energy storage system , 2015 .

[10]  W. Blyth,et al.  Energy Security and Climate Change Policy Interactions - An Assessment Framework , 2005 .

[11]  M. A. Rosen,et al.  Appropriate thermodynamic performance measures for closed systems for thermal energy storage , 1992 .

[12]  Martin Koller,et al.  Advanced Adiabatic Compressed Air Energy Storage for the Integration of Wind Energy , 2004 .

[13]  Noam Lior,et al.  Energy, exergy, and Second Law performance criteria , 2007 .

[14]  T. Gundersen,et al.  A new efficiency parameter for exergy analysis in low temperature processes , 2015 .

[15]  Adrian Ilinca,et al.  Energy storage systems—Characteristics and comparisons , 2008 .

[16]  Teuku Meurah Indra Mahlia,et al.  A review of available methods and development on energy storage; technology update , 2014 .

[17]  T. Gundersen,et al.  Development and use of exergy efficiency for complex cryogenic processes , 2018, Energy Conversion and Management.

[18]  R. Hirvonen,et al.  Energy visions 2030 for Finland , 2001 .

[19]  Henk Huisseune,et al.  Thermodynamic analysis of energy storage with a liquid air Rankine cycle , 2013 .

[20]  Romano Giglioli,et al.  Liquid air energy storage: Potential and challenges of hybrid power plants , 2017 .

[21]  Haisheng Chen,et al.  Progress in electrical energy storage system: A critical review , 2009 .

[22]  A.S. Biris,et al.  Use of carbon nanostructures for hydrogen storage for environmentally safe automotive applications , 2004, Conference Record of the 2004 IEEE Industry Applications Conference, 2004. 39th IAS Annual Meeting..