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Erschienen in: The International Journal of Life Cycle Assessment 9/2016

28.01.2014 | THE ECOINVENT DATABASE V3

Life cycle inventories of electricity generation and power supply in version 3 of the ecoinvent database—part II: electricity markets

verfasst von: Karin Treyer, Christian Bauer

Erschienen in: The International Journal of Life Cycle Assessment | Ausgabe 9/2016

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Abstract

Purpose

Representative, consistent and up-to-date life cycle inventories (LCI) of electricity supply are key elements of ecoinvent as an LCI background database since these are often among the determining factors with regard to life cycle assessment (LCA) results. ecoinvent version 3 (ev3) offers new LCI data of power supply (electricity markets) in 71 geographies. This article gives an overview of these electricity markets and discusses new ecoinvent features in the context of power supply.

Methods

The annual geography- and technology-specific electricity production for the year 2008 specifies the technology shares on the high-, medium- and low-voltage level electricity markets. Data are based on IEA statistics. Different voltage levels are linked by transformation activities. Region-specific electricity losses due to power transmission and voltage transformation are considered in the market and transformation activities. The majority of the 71 power markets are defined by national boundaries. The attributional ecoinvent system model in ev3 with linking to average current suppliers results in electricity markets supplied by all geography-specific power generation technologies and electricity imports, while the consequential system model generates markets only linked to unconstrained suppliers.

Results and discussion

The availability of LCI data for 71 electricity markets in ev3 covering 50 countries reduces the “Rest-of-the-World” electricity supply not covered by country- or region-specific inventories to 17 % for the year 2008. Specific power supply activities for all countries contributing more than 1 % to global electricity production are available. The electricity markets show large variations concerning contributions from specific technologies and energy carriers. Imports can substantially change the national/regional power mix, especially in small markets. Large differences can also be observed between the electricity markets in the attributional and the consequential database calculation. Region-specific total power losses between production on the high voltage level and consumer on the low voltage level are on the order of 2.5–23 %.

Conclusions

Electricity supply mixes (electricity markets) in the ecoinvent database have been updated and substantially extended for v3. Inventories for electricity supply in all globally important economies are available with geography-specific technology and market datasets which will contribute to increasing quality and reducing uncertainties in LCA studies worldwide and to allow more accurate estimation of environmental burdens from global production chains. Future work should focus on improving the details of country-specific data, implementation of more countries into the database, splitting of large countries into smaller regions and on developing a more sophisticated approach specifying country-specific electricity mixes in consequential system models.

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Fußnoten
1
The term “annual production volume” has to be used for the amount of electricity produced per year according to the official ecoinvent terminology despite of the fact that electricity does not have a “physical” volume.
 
2
Because of a special linking mode for the production mixes in the database, this rule does not apply to them and overlapping is possible according to Weidema et al. (2013).
 
3
Argentina, Paraguay, Venezuela, Uruguay, Estonia, Bhutan, Azerbaidjan, Georgia, Turkmenistan
 
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Metadaten
Titel
Life cycle inventories of electricity generation and power supply in version 3 of the ecoinvent database—part II: electricity markets
verfasst von
Karin Treyer
Christian Bauer
Publikationsdatum
28.01.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
The International Journal of Life Cycle Assessment / Ausgabe 9/2016
Print ISSN: 0948-3349
Elektronische ISSN: 1614-7502
DOI
https://doi.org/10.1007/s11367-013-0694-x

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