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Design aspects of TGC schemes in the 2030 framework The Federation of Finnish Technology Industries Executive summary 26.10.2015 Juha Ollikainen Roland.

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Presentation on theme: "Design aspects of TGC schemes in the 2030 framework The Federation of Finnish Technology Industries Executive summary 26.10.2015 Juha Ollikainen Roland."— Presentation transcript:

1 Design aspects of TGC schemes in the 2030 framework The Federation of Finnish Technology Industries Executive summary 26.10.2015 Juha Ollikainen Roland Magnusson

2 Background and objective  EU countries have agreed on a new renewable energy targets; the aim is that at least 27% of final energy consumption in the EU is from renewable sources by 2030. Means for achieving the target are under development  The European Commission will propose a new renewable energy package in 2016-2017 including:  Renewable Energy Directive for 2030  Best practices in renewable energy support schemes and bioenergy sustainable policy  Also the guidelines on state aid for environmental protection and energy will be reviewed in 2017- 2019  The commission’s summer package released in July 2015 launched a public consultation that on its part relates to the renewable energy support schemes  The general purpose of the study was to support the Federation of Finnish Technology Industries in forming its position on the future RES-E support schemes that will be used in achieving the 2030 targets  The specific subject of the study was selected aspects of Tradable Green Certificates (TGC) as on the context of the EU and the 2030 targets © GreenStream 2

3 Conclusions  As shown by past experiences, RES-E support can cause very significant cost to the financiers of the scheme, typically the either tax payers or electricity users  To avoid distortions in global market, the new RES-E support schemes should be designed so that the cost burden for the export industry is predictable and remains in all scenarios on level that does not jeopardise the industry’s international competitiveness  First requirement is that the scheme meets its primary target, the expansions of RES-E, cost efficiently. Cost efficiency translates into lower costs for all financers of the scheme. Theory and past experiences support the assumption that market based mechanisms with wide geographical scope and uniform support across technologies promote cost efficiency  Even if scheme is cost effective, the cost may be detrimental for the competitiveness of the export industry. Furthermore, the costs of meeting a RES target cannot be known beforehand, which creates uncertainty for the industry. To avoid distortions in global market, additional measures must be introduced to secure competitiveness of the export industry that is subject to international competition  In addition to the direct costs, which are typically levied on electricity users or tax payers, RES-E support schemes distort other market prices, - wood raw material of the pulp and paper industry being the primary concern. However, a TGC scheme can be designed in a way to minimise such distortions © GreenStream 3

4 Main characteristics of the proposed scheme © GreenStream 4 Design elementsWhatWhyDownside Geographical scopeEU-wideLow cost, low distortionsDistribution of investments out of control of regulator Technology bandingNo or little (impacts on biomass raw material market to be limited) Low cost, low distortionsDistribution of technologies out of control of regulator Investmets directed to mature low cost technologies. Early phase techology development supported through other channels Exceptions for the export industry Combined cost of RES support and EU ETS capped on sustainable level for export indusry Low distortions to competitiveness of export industry in global market Higher costs for the non- excempted ones Price controlLeave room for the market (moderate floor and relative high cap could be considered) Risk of oversized support not addressed to the financiers of the scheme Higher investor risk premiums than in fixed priced schemes

5 Beijing office: 北京市朝阳区望京 Soho, 邮编 100102 Wangjing Soho, Chaoyang District, 100102 Beijing, China Helsinki office: Lapinlahdenkatu 3, FI-00180 Helsinki, Finland www.greenstream.net Twitter@GreenStreamNet


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