World energy outlook: An assessment of long-term energy developments and related policies

1977 ◽  
Vol 7 (2) ◽  
pp. 31-42
Author(s):  
Klaus Mai
2018 ◽  
pp. 49-75
Author(s):  
I. A. Bashmakov

The analysis of recent trends in the world energy development and of long-term energy development projections helps dispel 10 myths that have been viewed as copybook maxims, yet now are a barrier to forming an adequate vision of the future and effective development strategies. Many of these myths are rooted in the inability to see how the ‘small on small scale’ becomes ‘big on big scale’ , and vice versa. Projection horizon to 2050 allows to see these metamorphoses, formulate the ‘lessons of the future’ for Russia’s economic development, and to show why Russia needs to change its economic model and switch to low-carbon development path.


2013 ◽  
Author(s):  
Sara Zgheib ◽  
Stephanie Lucas ◽  
Mathieu Mequinion ◽  
Odile Broux ◽  
Damien Leterme ◽  
...  

2013 ◽  
Vol 2 (2) ◽  
pp. 158-177 ◽  
Author(s):  
Maurizio Gargiulo ◽  
Brian Ó Gallachóir
Keyword(s):  

Energy ◽  
2020 ◽  
Vol 212 ◽  
pp. 118737
Author(s):  
Kristina Govorukha ◽  
Philip Mayer ◽  
Dirk Rübbelke ◽  
Stefan Vögele
Keyword(s):  

Energies ◽  
2021 ◽  
Vol 14 (4) ◽  
pp. 1109
Author(s):  
Robert Bock ◽  
Björn Kleinsteinberg ◽  
Bjørn Selnes-Volseth ◽  
Odne Stokke Burheim

For renewable energies to succeed in replacing fossil fuels, large-scale and affordable solutions are needed for short and long-term energy storage. A potentially inexpensive approach of storing large amounts of energy is through the use of a concentration flow cell that is based on cheap and abundant materials. Here, we propose to use aqueous iron chloride as a reacting solvent on carbon electrodes. We suggest to use it in a red-ox concentration flow cell with two compartments separated by a hydrocarbon-based membrane. In both compartments the red-ox couple of iron II and III reacts, oxidation at the anode and reduction at the cathode. When charging, a concentration difference between the two species grows. When discharging, this concentration difference between iron II and iron III is used to drive the reaction. In this respect it is a concentration driven flow cell redox battery using iron chloride in both solutions. Here, we investigate material combinations, power, and concentration relations.


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