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Renewable Power-to-Gas: A technological and economic review

Renewable Energy · 2015 · Vol. 85 · pp. 1371–1390
Manuel GötzJonathan LefebvreFriedemann MörsAmy McDaniel KochFrank GrafSiegfried BajohrR. ReimertThomas Kolb

Abstract

The Power-to-Gas (PtG) process chain could play a significant role in the future energy system. Renewable electric energy can be transformed into storable methane via electrolysis and subsequent methanation. This article compares the available electrolysis and methanation technologies with respect to the stringent requirements of the PtG chain such as low CAPEX, high efficiency, and high flexibility. Three water electrolysis technologies are considered: alkaline electrolysis, PEM electrolysis, and solid oxide electrolysis. Alkaline electrolysis is currently the cheapest technology; however, in the future PEM electrolysis could be better suited for the PtG process chain. Solid oxide electrolysis could also be an option in future, especially if heat sources are available. Several different reactor concepts can be used for the methanation reaction. For catalytic methanation, typically fixed-bed reactors are used; however, novel reactor concepts such as three-phase methanation and micro reactors are currently under development. Another approach is the biochemical conversion. The bioprocess takes place in aqueous solutions and close to ambient temperatures. Finally, the whole process chain is discussed. Critical aspects of the PtG process are the availability of CO₂ sources, the dynamic behaviour of the individual process steps, and especially the economics as well as the efficiency.

Hybrid Renewable Energy SystemsAmmonia Synthesis and Nitrogen ReductionElectrocatalysts for Energy ConversionMethanationPower to gasElectrolysisPolymer electrolyte membrane electrolysisProcess engineeringHigh-temperature electrolysisRenewable energyEnvironmental scienceWaste managementChemistry

Funding

  • Bundesministerium für Bildung und Forschung
  • Helmholtz Association
Citations
2,454
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References
Photocatalytic Reduction of CO<sub>2</sub> on TiO<sub>2</sub> and Other Semiconductors
Angewandte Chemie International Edition · 2013 · 2,893 citations
Mechanisms of catalyst deactivation
Applied Catalysis A General · 2001 · 2,910 citations
Methanogenic archaea: ecologically relevant differences in energy conservation
Nature Reviews Microbiology · 2008 · 2,106 citations
Electrical energy storage systems: A comparative life cycle cost analysis
Renewable and Sustainable Energy Reviews · 2014 · 1,748 citations
A comprehensive review on PEM water electrolysis
International Journal of Hydrogen Energy · 2013 · 5,100 citations
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